pr Mouse Ifit1b is a cap1-RNA-binding protein that inhibits mouse coronavirus translation and is regulated by complexing with Ifit1c [RNA] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Knockout mouse models have been extensively used to study the antiviral activity of IFIT (interferon-induced protein with tetratricopeptide repeats). Human IFIT1 binds to cap0 (m7GpppN) RNA, which lacks methylation on the first and second cap-proximal nucleotides (cap1, m7GpppNm, and cap2, m7GpppNmNm, respectively). These modifications are signatures of “self” in higher eukaryotes, whereas unmodified cap0-RNA is recognized as foreign and, therefore, potentially harmful to the host cell. IFIT1 inhibits translation at the initiation stage by competing with the cap-binding initiation factor complex, eIF4F, restricting infection by certain viruses that possess “nonself” cap0-mRNAs. However, in mice and other rodents, the IFIT1 orthologue has been lost, and the closely related Ifit1b has been duplicated twice, yielding three paralogues: Ifit1, Ifit1b, and Ifit1c. Although murine Ifit1 is similar to human IFIT1 in its cap0-RNA–binding selectivity, the roles of Ifit1b and Ifit1c are unknown. Here, we found that Ifit1b preferentially binds to cap1-RNA, whereas binding is much weaker to cap0- and cap2-RNA. In murine cells, we show that Ifit1b can modulate host translation and restrict WT mouse coronavirus infection. We found that Ifit1c acts as a stimulatory cofactor for both Ifit1 and Ifit1b, promoting their translation inhibition. In this way, Ifit1c acts in an analogous fashion to human IFIT3, which is a cofactor to human IFIT1. This work clarifies similarities and differences between the human and murine IFIT families to facilitate better design and interpretation of mouse models of human infection and sheds light on the evolutionary plasticity of the IFIT family. Full Article
pr Development of a novel mammalian display system for selection of antibodies against membrane proteins [Immunology] By www.jbc.org Published On :: 2020-12-25T00:06:31-08:00 Reliable, specific polyclonal and monoclonal antibodies are important tools in research and medicine. However, the discovery of antibodies against their targets in their native forms is difficult. Here, we present a novel method for discovery of antibodies against membrane proteins in their native configuration in mammalian cells. The method involves the co-expression of an antibody library in a population of mammalian cells that express the target polypeptide within a natural membrane environment on the cell surface. Cells that secrete a single-chain fragment variable (scFv) that binds to the target membrane protein thereby become self-labeled, enabling enrichment and isolation by magnetic sorting and FRET-based flow sorting. Library sizes of up to 109 variants can be screened, thus allowing campaigns of naïve scFv libraries to be selected against membrane protein antigens in a Chinese hamster ovary cell system. We validate this method by screening a synthetic naïve human scFv library against Chinese hamster ovary cells expressing the oncogenic target epithelial cell adhesion molecule and identify a panel of three novel binders to this membrane protein, one with a dissociation constant (KD) as low as 0.8 nm. We further demonstrate that the identified antibodies have utility for killing epithelial cell adhesion molecule–positive cells when used as a targeting domain on chimeric antigen receptor T cells. Thus, we provide a new tool for identifying novel antibodies that act against membrane proteins, which could catalyze the discovery of new candidates for antibody-based therapies. Full Article
pr Quantitative phosphoproteomic analysis reveals involvement of PD-1 in multiple T cell functions [Signal Transduction] By www.jbc.org Published On :: 2020-12-25T00:06:30-08:00 Programmed cell death protein 1 (PD-1) is a critical inhibitory receptor that limits excessive T cell responses. Cancer cells have evolved to evade these immunoregulatory mechanisms by upregulating PD-1 ligands and preventing T cell–mediated anti-tumor responses. Consequently, therapeutic blockade of PD-1 enhances T cell–mediated anti-tumor immunity, but many patients do not respond and a significant proportion develop inflammatory toxicities. To improve anti-cancer therapy, it is critical to reveal the mechanisms by which PD-1 regulates T cell responses. We performed global quantitative phosphoproteomic interrogation of PD-1 signaling in T cells. By complementing our analysis with functional validation assays, we show that PD-1 targets tyrosine phosphosites that mediate proximal T cell receptor signaling, cytoskeletal organization, and immune synapse formation. PD-1 ligation also led to differential phosphorylation of serine and threonine sites within proteins regulating T cell activation, gene expression, and protein translation. In silico predictions revealed that kinase/substrate relationships engaged downstream of PD-1 ligation. These insights uncover the phosphoproteomic landscape of PD-1–triggered pathways and reveal novel PD-1 substrates that modulate diverse T cell functions and may serve as future therapeutic targets. These data are a useful resource in the design of future PD-1–targeting therapeutic approaches. Full Article
pr Importance of endothelial Hey1 expression for thoracic great vessel development and its distal enhancer for Notch-dependent endothelial transcription [Gene Regulation] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Thoracic great vessels such as the aorta and subclavian arteries are formed through dynamic remodeling of embryonic pharyngeal arch arteries (PAAs). Previous work has shown that loss of a basic helix-loop-helix transcription factor Hey1 in mice causes abnormal fourth PAA development and lethal great vessel anomalies resembling congenital malformations in humans. However, how Hey1 mediates vascular formation remains unclear. In this study, we revealed that Hey1 in vascular endothelial cells, but not in smooth muscle cells, played essential roles for PAA development and great vessel morphogenesis in mouse embryos. Tek-Cre–mediated Hey1 deletion in endothelial cells affected endothelial tube formation and smooth muscle differentiation in embryonic fourth PAAs and resulted in interruption of the aortic arch and other great vessel malformations. Cell specificity and signal responsiveness of Hey1 expression were controlled through multiple cis-regulatory regions. We found two distal genomic regions that had enhancer activity in endothelial cells and in the pharyngeal epithelium and somites, respectively. The novel endothelial enhancer was conserved across species and was specific to large-caliber arteries. Its transcriptional activity was regulated by Notch signaling in vitro and in vivo, but not by ALK1 signaling and other transcription factors implicated in endothelial cell specificity. The distal endothelial enhancer was not essential for basal Hey1 expression in mouse embryos but may likely serve for Notch-dependent transcriptional control in endothelial cells together with the proximal regulatory region. These findings help in understanding the significance and regulation of endothelial Hey1 as a mediator of multiple signaling pathways in embryonic vascular formation. Full Article
pr N-acetylglucosamine drives myelination by triggering oligodendrocyte precursor cell differentiation [Molecular Bases of Disease] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Myelination plays an important role in cognitive development and in demyelinating diseases like multiple sclerosis (MS), where failure of remyelination promotes permanent neuro-axonal damage. Modification of cell surface receptors with branched N-glycans coordinates cell growth and differentiation by controlling glycoprotein clustering, signaling, and endocytosis. GlcNAc is a rate-limiting metabolite for N-glycan branching. Here we report that GlcNAc and N-glycan branching trigger oligodendrogenesis from precursor cells by inhibiting platelet-derived growth factor receptor-α cell endocytosis. Supplying oral GlcNAc to lactating mice drives primary myelination in newborn pups via secretion in breast milk, whereas genetically blocking N-glycan branching markedly inhibits primary myelination. In adult mice with toxin (cuprizone)-induced demyelination, oral GlcNAc prevents neuro-axonal damage by driving myelin repair. In MS patients, endogenous serum GlcNAc levels inversely correlated with imaging measures of demyelination and microstructural damage. Our data identify N-glycan branching and GlcNAc as critical regulators of primary myelination and myelin repair and suggest that oral GlcNAc may be neuroprotective in demyelinating diseases like MS. Full Article
pr Ischemic stroke disrupts the endothelial glycocalyx through activation of proHPSE via acrolein exposure [Molecular Bases of Disease] By www.jbc.org Published On :: 2020-12-25T00:06:31-08:00 Infiltration of peripheral immune cells after blood-brain barrier dysfunction causes severe inflammation after a stroke. Although the endothelial glycocalyx, a network of membrane-bound glycoproteins and proteoglycans that covers the lumen of endothelial cells, functions as a barrier to circulating cells, the relationship between stroke severity and glycocalyx dysfunction remains unclear. In this study, glycosaminoglycans, a component of the endothelial glycocalyx, were studied in the context of ischemic stroke using a photochemically induced thrombosis mouse model. Decreased levels of heparan sulfate and chondroitin sulfate and increased activity of hyaluronidase 1 and heparanase (HPSE) were observed in ischemic brain tissues. HPSE expression in cerebral vessels increased after stroke onset and infarct volume greatly decreased after co-administration of N-acetylcysteine + glycosaminoglycan oligosaccharides as compared with N-acetylcysteine administration alone. These results suggest that the endothelial glycocalyx was injured after the onset of stroke. Interestingly, scission activity of proHPSE produced by immortalized endothelial cells and HEK293 cells transfected with hHPSE1 cDNA were activated by acrolein (ACR) exposure. We identified the ACR-modified amino acid residues of proHPSE using nano LC–MS/MS, suggesting that ACR modification of Lys139 (6-kDa linker), Lys107, and Lys161, located in the immediate vicinity of the 6-kDa linker, at least in part is attributed to the activation of proHPSE. Because proHPSE, but not HPSE, localizes outside cells by binding with heparan sulfate proteoglycans, ACR-modified proHPSE represents a promising target to protect the endothelial glycocalyx. Full Article
pr Molecular architecture and domain arrangement of the placental malaria protein VAR2CSA suggests a model for carbohydrate binding [Glycobiology and Extracellular Matrices] By www.jbc.org Published On :: 2020-12-25T00:06:31-08:00 VAR2CSA is the placental-malaria–specific member of the antigenically variant Plasmodium falciparum erythrocyte membrane protein 1 (PfEMP1) family. It is expressed on the surface of Plasmodium falciparum-infected host red blood cells and binds to specific chondroitin-4-sulfate chains of the placental proteoglycan receptor. The functional ∼310 kDa ectodomain of VAR2CSA is a multidomain protein that requires a minimum 12-mer chondroitin-4-sulfate molecule for specific, high affinity receptor binding. However, it is not known how the individual domains are organized and interact to create the receptor-binding surface, limiting efforts to exploit its potential as an effective vaccine or drug target. Using small angle X-ray scattering and single particle reconstruction from negative-stained electron micrographs of the ectodomain and multidomain constructs, we have determined the structural architecture of VAR2CSA. The relative locations of the domains creates two distinct pores that can each accommodate the 12-mer of chondroitin-4-sulfate, suggesting a model for receptor binding. This model has important implications for understanding cytoadherence of infected red blood cells and potentially provides a starting point for developing novel strategies to prevent and/or treat placental malaria. Full Article
pr The structure of a family 110 glycoside hydrolase provides insight into the hydrolysis of {alpha}-1,3-galactosidic linkages in {lambda}-carrageenan and blood group antigens [Enzymology] By www.jbc.org Published On :: 2020-12-25T00:06:31-08:00 α-Linked galactose is a common carbohydrate motif in nature that is processed by a variety of glycoside hydrolases from different families. Terminal Galα1–3Gal motifs are found as a defining feature of different blood group and tissue antigens, as well as the building block of the marine algal galactan λ-carrageenan. The blood group B antigen and linear α-Gal epitope can be processed by glycoside hydrolases in family GH110, whereas the presence of genes encoding GH110 enzymes in polysaccharide utilization loci from marine bacteria suggests a role in processing λ-carrageenan. However, the structure–function relationships underpinning the α-1,3-galactosidase activity within family GH110 remain unknown. Here we focus on a GH110 enzyme (PdGH110B) from the carrageenolytic marine bacterium Pseudoalteromonas distincta U2A. We showed that the enzyme was active on Galα1–3Gal but not the blood group B antigen. X-ray crystal structures in complex with galactose and unhydrolyzed Galα1–3Gal revealed the parallel β-helix fold of the enzyme and the structural basis of its inverting catalytic mechanism. Moreover, an examination of the active site reveals likely adaptations that allow accommodation of fucose in blood group B active GH110 enzymes or, in the case of PdGH110, accommodation of the sulfate groups found on λ-carrageenan. Overall, this work provides insight into the first member of a predominantly marine clade of GH110 enzymes while also illuminating the structural basis of α-1,3-galactoside processing by the family as a whole. Full Article
pr Structural and biochemical characteristics of two Staphylococcus epidermidis RNase J paralogs RNase J1 and RNase J2 [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-04T00:06:06-08:00 RNase J enzymes are metallohydrolases that are involved in RNA maturation and RNA recycling, govern gene expression in bacteria, and catalyze both exonuclease and endonuclease activity. The catalytic activity of RNase J is regulated by multiple mechanisms which include oligomerization, conformational changes to aid substrate recognition, and the metal cofactor at the active site. However, little is known of how RNase J paralogs differ in expression and activity. Here we describe structural and biochemical features of two Staphylococcus epidermidis RNase J paralogs, RNase J1 and RNase J2. RNase J1 is a homodimer with exonuclease activity aided by two metal cofactors at the active site. RNase J2, on the other hand, has endonuclease activity and one metal ion at the active site and is predominantly a monomer. We note that the expression levels of these enzymes vary across Staphylococcal strains. Together, these observations suggest that multiple interacting RNase J paralogs could provide a strategy for functional improvisation utilizing differences in intracellular concentration, quaternary structure, and distinct active site architecture despite overall structural similarity. Full Article
pr Calreticulin enhances the secretory trafficking of a misfolded {alpha}-1-antitrypsin [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-04T00:06:05-08:00 α1-antitrypsin (AAT) regulates the activity of multiple proteases in the lungs and liver. A mutant of AAT (E342K) called ATZ forms polymers that are present at only low levels in the serum and induce intracellular protein inclusions, causing lung emphysema and liver cirrhosis. An understanding of factors that can reduce the intracellular accumulation of ATZ is of great interest. We now show that calreticulin (CRT), an endoplasmic reticulum (ER) glycoprotein chaperone, promotes the secretory trafficking of ATZ, enhancing the media:cell ratio. This effect is more pronounced for ATZ than with AAT and is only partially dependent on the glycan-binding site of CRT, which is generally relevant to substrate recruitment and folding by CRT. The CRT-related chaperone calnexin does not enhance ATZ secretory trafficking, despite the higher cellular abundance of calnexin-ATZ complexes. CRT deficiency alters the distributions of ATZ-ER chaperone complexes, increasing ATZ-BiP binding and inclusion body formation and reducing ATZ interactions with components required for ER-Golgi trafficking, coincident with reduced levels of the protein transport protein Sec31A in CRT-deficient cells. These findings indicate a novel role for CRT in promoting the secretory trafficking of a protein that forms polymers and large intracellular inclusions. Inefficient secretory trafficking of ATZ in the absence of CRT is coincident with enhanced accumulation of ER-derived ATZ inclusion bodies. Further understanding of the factors that control the secretory trafficking of ATZ and their regulation by CRT could lead to new therapies for lung and liver diseases linked to AAT deficiency. Full Article
pr {alpha}2-Macroglobulin-like protein 1 can conȷugate and inhibit proteases through their hydroxyl groups, because of an enhanced reactivity of its thiol ester [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-04T00:06:05-08:00 Proteins in the α-macroglobulin (αM) superfamily use thiol esters to form covalent conjugation products upon their proteolytic activation. αM protease inhibitors use theirs to conjugate proteases and preferentially react with primary amines (e.g. on lysine side chains), whereas those of αM complement components C3 and C4B have an increased hydroxyl reactivity that is conveyed by a conserved histidine residue and allows conjugation to cell surface glycans. Human α2-macroglobulin–like protein 1 (A2ML1) is a monomeric protease inhibitor but has the hydroxyl reactivity–conveying histidine residue. Here, we have investigated the role of hydroxyl reactivity in a protease inhibitor by comparing recombinant WT A2ML1 and the A2ML1 H1084N mutant in which this histidine is removed. Both of A2ML1s' thiol esters were reactive toward the amine substrate glycine, but only WT A2ML1 reacted with the hydroxyl substrate glycerol, demonstrating that His-1084 increases the hydroxyl reactivity of A2ML1's thiol ester. Although both A2ML1s conjugated and inhibited thermolysin, His-1084 was required for the conjugation and inhibition of acetylated thermolysin, which lacks primary amines. Using MS, we identified an ester bond formed between a thermolysin serine residue and the A2ML1 thiol ester. These results demonstrate that a histidine-enhanced hydroxyl reactivity can contribute to protease inhibition by an αM protein. His-1084 did not improve A2ML1's protease inhibition at pH 5, indicating that A2ML1's hydroxyl reactivity is not an adaption to its acidic epidermal environment. Full Article
pr PFN2 and NAA80 cooperate to efficiently acetylate the N-terminus of actin [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-04T00:06:05-08:00 The actin cytoskeleton is of profound importance to cell shape, division, and intracellular force generation. Profilins bind to globular (G-)actin and regulate actin filament formation. Although profilins are well-established actin regulators, the distinct roles of the dominant profilin, profilin 1 (PFN1), versus the less abundant profilin 2 (PFN2) remain enigmatic. In this study, we use interaction proteomics to discover that PFN2 is an interaction partner of the actin N-terminal acetyltransferase NAA80, and further confirm this by analytical ultracentrifugation. Enzyme assays with NAA80 and different profilins demonstrate that PFN2 binding specifically increases the intrinsic catalytic activity of NAA80. NAA80 binds PFN2 through a proline-rich loop, deletion of which abrogates PFN2 binding. Small-angle X-ray scattering shows that NAA80, actin, and PFN2 form a ternary complex and that NAA80 has partly disordered regions in the N-terminus and the proline-rich loop, the latter of which is partly ordered upon PFN2 binding. Furthermore, binding of PFN2 to NAA80 via the proline-rich loop promotes binding between the globular domains of actin and NAA80, and thus acetylation of actin. However, the majority of cellular NAA80 is stably bound to PFN2 and not to actin, and we propose that this complex acetylates G-actin before it is incorporated into filaments. In conclusion, we reveal a functionally specific role of PFN2 as a stable interactor and regulator of the actin N-terminal acetyltransferase NAA80, and establish the modus operandi for NAA80-mediated actin N-terminal acetylation, a modification with a major impact on cytoskeletal dynamics. Full Article
pr The cation diffusion facilitator protein MamM's cytoplasmic domain exhibits metal-type dependent binding modes and discriminates against Mn2+ [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-04T00:06:05-08:00 Cation diffusion facilitator (CDF) proteins are a conserved family of divalent transition metal cation transporters. CDF proteins are usually composed of two domains: the transmembrane domain, in which the metal cations are transported through, and a regulatory cytoplasmic C-terminal domain (CTD). Each CDF protein transports either one specific metal or multiple metals from the cytoplasm, and it is not known whether the CTD takes an active regulatory role in metal recognition and discrimination during cation transport. Here, the model CDF protein MamM, an iron transporter from magnetotactic bacteria, was used to probe the role of the CTD in metal recognition and selectivity. Using a combination of biophysical and structural approaches, the binding of different metals to MamM CTD was characterized. Results reveal that different metals bind distinctively to MamM CTD in terms of their binding sites, thermodynamics, and binding-dependent conformations, both in crystal form and in solution, which suggests a varying level of functional discrimination between CDF domains. Furthermore, these results provide the first direct evidence that CDF CTDs play a role in metal selectivity. We demonstrate that MamM's CTD can discriminate against Mn2+, supporting its postulated role in preventing magnetite formation poisoning in magnetotactic bacteria via Mn2+ incorporation. Full Article
pr Polydisperse molecular architecture of connexin 26/30 heteromeric hemichannels revealed by atomic force microscopy imaging [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-04T00:06:05-08:00 Connexin (Cx) protein forms hemichannels and gap junctional channels, which play diverse and profound roles in human physiology and diseases. Gap junctions are arrays of intercellular channels formed by the docking of two hemichannels from adjacent cells. Each hexameric hemichannel contains the same or different Cx isoform. Although homomeric Cxs forms have been largely described functionally and structurally, the stoichiometry and arrangement of heteromeric Cx channels remain unknown. The latter, however, are widely expressed in human tissues and variation might have important implications on channel function. Investigating properties of heteromeric Cx channels is challenging considering the high number of potential subunit arrangements and stoichiometries, even when only combining two Cx isoforms. To tackle this problem, we engineered an HA tag onto Cx26 or Cx30 subunits and imaged hemichannels that were liganded by Fab-epitope antibody fragments via atomic force microscopy. For Cx26-HA/Cx30 or Cx30-HA/Cx26 heteromeric channels, the Fab-HA binding distribution was binomial with a maximum of three Fab-HA bound. Furthermore, imaged Cx26/Cx30-HA triple liganded by Fab-HA showed multiple arrangements that can be derived from the law of total probabilities. Atomic force microscopy imaging of ringlike structures of Cx26/Cx30-HA hemichannels confirmed these findings and also detected a polydisperse distribution of stoichiometries. Our results indicate a dominant subunit stoichiometry of 3Cx26:3Cx30 with the most abundant subunit arrangement of Cx26-Cx26-Cx30-Cx26-Cx30-Cx30. To our knowledge, this is the first time that the molecular architecture of heteromeric Cx channels has been revealed, thus providing the basis to explore the functional effect of these channels in biology. Full Article
pr Heme oxygenase-2 is post-translationally regulated by heme occupancy in the catalytic site [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-11T00:06:20-08:00 Heme oxygenase-2 (HO2) and -1 (HO1) catalyze heme degradation to biliverdin, CO, and iron, forming an essential link in the heme metabolism network. Tight regulation of the cellular levels and catalytic activities of HO1 and HO2 is important for maintaining heme homeostasis. HO1 expression is transcriptionally regulated; however, HO2 expression is constitutive. How the cellular levels and activity of HO2 are regulated remains unclear. Here, we elucidate the mechanism of post-translational regulation of cellular HO2 levels by heme. We find that, under heme-deficient conditions, HO2 is destabilized and targeted for degradation, suggesting that heme plays a direct role in HO2 regulation. HO2 has three heme binding sites: one at its catalytic site and the others at its two heme regulatory motifs (HRMs). We report that, in contrast to other HRM-containing proteins, the cellular protein level and degradation rate of HO2 are independent of heme binding to the HRMs. Rather, under heme deficiency, loss of heme binding to the catalytic site destabilizes HO2. Consistently, an HO2 catalytic site variant that is unable to bind heme exhibits a constant low protein level and an enhanced protein degradation rate compared with the WT HO2. Finally, HO2 is degraded by the lysosome through chaperone-mediated autophagy, distinct from other HRM-containing proteins and HO1, which are degraded by the proteasome. These results reveal a novel aspect of HO2 regulation and deepen our understanding of HO2's role in maintaining heme homeostasis, paving the way for future investigation into HO2's pathophysiological role in heme deficiency response. Full Article
pr Representative cancer-associated U2AF2 mutations alter RNA interactions and splicing [Molecular Bases of Disease] By www.jbc.org Published On :: 2020-12-11T00:06:20-08:00 High-throughput sequencing of hematologic malignancies and other cancers has revealed recurrent mis-sense mutations of genes encoding pre-mRNA splicing factors. The essential splicing factor U2AF2 recognizes a polypyrimidine-tract splice-site signal and initiates spliceosome assembly. Here, we investigate representative, acquired U2AF2 mutations, namely N196K or G301D amino acid substitutions associated with leukemia or solid tumors, respectively. We determined crystal structures of the wild-type (WT) compared with N196K- or G301D-substituted U2AF2 proteins, each bound to a prototypical AdML polypyrimidine tract, at 1.5, 1.4, or 1.7 Å resolutions. The N196K residue appears to stabilize the open conformation of U2AF2 with an inter-RNA recognition motif hydrogen bond, in agreement with an increased apparent RNA-binding affinity of the N196K-substituted protein. The G301D residue remains in a similar position as the WT residue, where unfavorable proximity to the RNA phosphodiester could explain the decreased RNA-binding affinity of the G301D-substituted protein. We found that expression of the G301D-substituted U2AF2 protein reduces splicing of a minigene transcript carrying prototypical splice sites. We further show that expression of either N196K- or G301D-substituted U2AF2 can subtly alter splicing of representative endogenous transcripts, despite the presence of endogenous, WT U2AF2 such as would be present in cancer cells. Altogether, our results demonstrate that acquired U2AF2 mutations such as N196K and G301D are capable of dysregulating gene expression for neoplastic transformation. Full Article
pr Characterizing human {alpha}-1,6-fucosyltransferase (FUT8) substrate specificity and structural similarities with related fucosyltransferases [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-11T00:06:20-08:00 Mammalian Asn-linked glycans are extensively processed as they transit the secretory pathway to generate diverse glycans on cell surface and secreted glycoproteins. Additional modification of the glycan core by α-1,6-fucose addition to the innermost GlcNAc residue (core fucosylation) is catalyzed by an α-1,6-fucosyltransferase (FUT8). The importance of core fucosylation can be seen in the complex pathological phenotypes of FUT8 null mice, which display defects in cellular signaling, development, and subsequent neonatal lethality. Elevated core fucosylation has also been identified in several human cancers. However, the structural basis for FUT8 substrate specificity remains unknown.Here, using various crystal structures of FUT8 in complex with a donor substrate analog, and with four distinct glycan acceptors, we identify the molecular basis for FUT8 specificity and activity. The ordering of three active site loops corresponds to an increased occupancy for bound GDP, suggesting an induced-fit folding of the donor-binding subsite. Structures of the various acceptor complexes were compared with kinetic data on FUT8 active site mutants and with specificity data from a library of glycan acceptors to reveal how binding site complementarity and steric hindrance can tune substrate affinity. The FUT8 structure was also compared with other known fucosyltransferases to identify conserved and divergent structural features for donor and acceptor recognition and catalysis. These data provide insights into the evolution of modular templates for donor and acceptor recognition among GT-B fold glycosyltransferases in the synthesis of diverse glycan structures in biological systems. Full Article
pr The heptameric structure of the flagellar regulatory protein FlrC is indispensable for ATPase activity and disassembled by cyclic-di-GMP [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-11T00:06:20-08:00 The bacterial enhancer-binding protein (bEBP) FlrC, controls motility and colonization of Vibrio cholerae by regulating the transcription of class-III flagellar genes in σ54-dependent manner. However, the mechanism by which FlrC regulates transcription is not fully elucidated. Although, most bEBPs require nucleotides to stimulate the oligomerization necessary for function, our previous study showed that the central domain of FlrC (FlrCC) forms heptamer in a nucleotide-independent manner. Furthermore, heptameric FlrCC binds ATP in “cis-mediated” style without any contribution from sensor I motif 285REDXXYR291 of the trans protomer. This atypical ATP binding raises the question of whether heptamerization of FlrC is solely required for transcription regulation, or if it is also critical for ATPase activity. ATPase assays and size exclusion chromatography of the trans-variants FlrCC-Y290A and FlrCC-R291A showed destabilization of heptameric assembly with concomitant abrogation of ATPase activity. Crystal structures showed that in the cis-variant FlrCC-R349A drastic shift of Walker A encroached ATP-binding site, whereas the site remained occupied by ADP in FlrCC-Y290A. We postulated that FlrCC heptamerizes through concentration-dependent cooperativity for maximal ATPase activity and upon heptamerization, packing of trans-acting Tyr290 against cis-acting Arg349 compels Arg349 to maintain proper conformation of Walker A. Finally, a Trp quenching study revealed binding of cyclic-di-GMP with FlrCC. Excess cyclic-di-GMP repressed ATPase activity of FlrCC through destabilization of heptameric assembly, especially at low concentration of protein. Systematic phylogenetic analysis allowed us to propose similar regulatory mechanisms for FlrCs of several Vibrio species and a set of monotrichous Gram-negative bacteria. Full Article
pr Cholesterol sensing by CD81 is important for hepatitis C virus entry [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-11T00:06:20-08:00 CD81 plays a central role in a variety of physiological and pathological processes. Recent structural analysis of CD81 indicates that it contains an intramembrane cholesterol-binding pocket and that interaction with cholesterol may regulate a conformational switch in the large extracellular domain of CD81. Therefore, CD81 possesses a potential cholesterol-sensing mechanism; however, its relevance for protein function is thus far unknown. In this study we investigate CD81 cholesterol sensing in the context of its activity as a receptor for hepatitis C virus (HCV). Structure-led mutagenesis of the cholesterol-binding pocket reduced CD81–cholesterol association but had disparate effects on HCV entry, both reducing and enhancing CD81 receptor activity. We reasoned that this could be explained by alterations in the consequences of cholesterol binding. To investigate this further we performed molecular dynamic simulations of CD81 with and without cholesterol; this identified a potential allosteric mechanism by which cholesterol binding regulates the conformation of CD81. To test this, we designed further mutations to force CD81 into either the open (cholesterol-unbound) or closed (cholesterol-bound) conformation. The open mutant of CD81 exhibited reduced HCV receptor activity, whereas the closed mutant enhanced activity. These data are consistent with cholesterol sensing switching CD81 between a receptor active and inactive state. CD81 interactome analysis also suggests that conformational switching may modulate the assembly of CD81–partner protein networks. This work furthers our understanding of the molecular mechanism of CD81 cholesterol sensing, how this relates to HCV entry, and CD81's function as a molecular scaffold; these insights are relevant to CD81's varied roles in both health and disease. Full Article
pr Identification and biochemical characterization of Asp t 36, a new fungal allergen from Aspergillus terreus [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Aspergillus terreus is an allergenic fungus, in addition to causing infections in both humans and plants. However, the allergens in this fungus are still unknown, limiting the development of diagnostic and therapeutic strategies. We used a proteomic approach to search for allergens, identifying 16 allergens based on two-dimensional immunoblotting with A. terreus susceptible patient sera. We further characterized triose-phosphate isomerase (Asp t 36), one of the dominant IgE (IgE)-reactive proteins. The gene was cloned and expressed in Escherichia coli. Phylogenetic analysis showed Asp t 36 to be highly conserved with close similarity to the triose-phosphate isomerase protein sequence from Dermatophagoides farinae, an allergenic dust mite. We identified four immunodominant epitopes using synthetic peptides, and mapped them on a homology-based model of the tertiary structure of Asp t 36. Among these, two were found to create a continuous surface patch on the 3D structure, rendering it an IgE-binding hotspot. Biophysical analysis indicated that Asp t 36 shows similar secondary structure content and temperature sensitivity with other reported triose-phosphate isomerase allergens. In vivo studies using a murine model displayed that the recombinant Asp t 36 was able to stimulate airway inflammation, as demonstrated by an influx of eosinophils, goblet cell hyperplasia, elevated serum Igs, and induction of Th2 cytokines. Collectively, our results reveal the immunogenic property of Asp t 36, a major allergen from A. terreus, and define a new fungal allergen more broadly. This allergen could serve as a potent candidate for investigating component resolved diagnosis and immunotherapy. Full Article
pr The C-terminal region of the plasmid partitioning protein TubY is a tetramer that can bind membranes and DNA [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Bacterial low-copy-number plasmids require partition (par) systems to ensure their stable inheritance by daughter cells. In general, these systems consist of three components: a centromeric DNA sequence, a centromere-binding protein and a nucleotide hydrolase that polymerizes and functions as a motor. Type III systems, however, segregate plasmids using three proteins: the FtsZ/tubulin-like GTPase TubZ, the centromere-binding protein TubR and the MerR-like transcriptional regulator TubY. Although the TubZ filament is sufficient to transport the TubR-centromere complex in vitro, TubY is still necessary for the stable maintenance of the plasmid. TubY contains an N-terminal DNA-binding helix-turn-helix motif and a C-terminal coiled-coil followed by a cluster of lysine residues. This study determined the crystal structure of the C-terminal domain of TubY from the Bacillus cereus pXO1-like plasmid and showed that it forms a tetrameric parallel four-helix bundle that differs from the typical MerR family proteins with a dimeric anti-parallel coiled-coil. Biochemical analyses revealed that the C-terminal tail with the conserved lysine cluster helps TubY to stably associate with the TubR-centromere complex as well as to nonspecifically bind DNA. Furthermore, this C-terminal tail forms an amphipathic helix in the presence of lipids but must oligomerize to localize the protein to the membrane in vivo. Taken together, these data suggest that TubY is a component of the nucleoprotein complex within the partitioning machinery, and that lipid membranes act as mediators of type III systems. Full Article
pr A structural and kinetic survey of GH5_4 endoglucanases reveals determinants of broad substrate specificity and opportunities for biomass hydrolysis [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Broad-specificity glycoside hydrolases (GHs) contribute to plant biomass hydrolysis by degrading a diverse range of polysaccharides, making them useful catalysts for renewable energy and biocommodity production. Discovery of new GHs with improved kinetic parameters or more tolerant substrate-binding sites could increase the efficiency of renewable bioenergy production even further. GH5 has over 50 subfamilies exhibiting selectivities for reaction with β-(1,4)–linked oligo- and polysaccharides. Among these, subfamily 4 (GH5_4) contains numerous broad-selectivity endoglucanases that hydrolyze cellulose, xyloglucan, and mixed-linkage glucans. We previously surveyed the whole subfamily and found over 100 new broad-specificity endoglucanases, although the structural origins of broad specificity remained unclear. A mechanistic understanding of GH5_4 substrate specificity would help inform the best protein design strategies and the most appropriate industrial application of broad-specificity endoglucanases. Here we report structures of 10 new GH5_4 enzymes from cellulolytic microbes and characterize their substrate selectivity using normalized reducing sugar assays and MS. We found that GH5_4 enzymes have the highest catalytic efficiency for hydrolysis of xyloglucan, glucomannan, and soluble β-glucans, with opportunistic secondary reactions on cellulose, mannan, and xylan. The positions of key aromatic residues determine the overall reaction rate and breadth of substrate tolerance, and they contribute to differences in oligosaccharide cleavage patterns. Our new composite model identifies several critical structural features that confer broad specificity and may be readily engineered into existing industrial enzymes. We demonstrate that GH5_4 endoglucanases can have broad specificity without sacrificing high activity, making them a valuable addition to the biomass deconstruction toolset. Full Article
pr Snapshots during the catalytic cycle of a histidine acid phytase reveal an induced-fit structural mechanism [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Highly engineered phytases, which sequentially hydrolyze the hexakisphosphate ester of inositol known as phytic acid, are routinely added to the feeds of monogastric animals to improve phosphate bioavailability. New phytases are sought as starting points to further optimize the rate and extent of dephosphorylation of phytate in the animal digestive tract. Multiple inositol polyphosphate phosphatases (MINPPs) are clade 2 histidine phosphatases (HP2P) able to carry out the stepwise hydrolysis of phytate. MINPPs are not restricted by a strong positional specificity making them attractive targets for development as feed enzymes. Here, we describe the characterization of a MINPP from the Gram-positive bacterium Bifidobacterium longum (BlMINPP). BlMINPP has a typical HP2P-fold but, unusually, possesses a large α-domain polypeptide insertion relative to other MINPPs. This insertion, termed the U-loop, spans the active site and contributes to substrate specificity pockets underpopulated in other HP2Ps. Mutagenesis of U-loop residues reveals its contribution to enzyme kinetics and thermostability. Moreover, four crystal structures of the protein along the catalytic cycle capture, for the first time in an HP2P, a large ligand-driven α-domain motion essential to allow substrate access to the active site. This motion recruits residues both downstream of a molecular hinge and on the U-loop to participate in specificity subsites, and mutagenesis identified a mobile lysine residue as a key determinant of positional specificity of the enzyme. Taken together, these data provide important new insights to the factors determining stability, substrate recognition, and the structural mechanism of hydrolysis in this industrially important group of enzymes. Full Article
pr Mapping the transition state for a binding reaction between ancient intrinsically disordered proteins [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Intrinsically disordered protein domains often have multiple binding partners. It is plausible that the strength of pairing with specific partners evolves from an initial low affinity to a higher affinity. However, little is known about the molecular changes in the binding mechanism that would facilitate such a transition. We previously showed that the interaction between two intrinsically disordered domains, NCBD and CID, likely emerged in an ancestral deuterostome organism as a low-affinity interaction that subsequently evolved into a higher-affinity interaction before the radiation of modern vertebrate groups. Here we map native contacts in the transition states of the low-affinity ancestral and high-affinity human NCBD/CID interactions. We show that the coupled binding and folding mechanism is overall similar but with a higher degree of native hydrophobic contact formation in the transition state of the ancestral complex and more heterogeneous transient interactions, including electrostatic pairings, and an increased disorder for the human complex. Adaptation to new binding partners may be facilitated by this ability to exploit multiple alternative transient interactions while retaining the overall binding and folding pathway. Full Article
pr Bacterial iron detoxification at the molecular level [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Iron is an essential micronutrient, and, in the case of bacteria, its availability is commonly a growth-limiting factor. However, correct functioning of cells requires that the labile pool of chelatable “free” iron be tightly regulated. Correct metalation of proteins requiring iron as a cofactor demands that such a readily accessible source of iron exist, but overaccumulation results in an oxidative burden that, if unchecked, would lead to cell death. The toxicity of iron stems from its potential to catalyze formation of reactive oxygen species that, in addition to causing damage to biological molecules, can also lead to the formation of reactive nitrogen species. To avoid iron-mediated oxidative stress, bacteria utilize iron-dependent global regulators to sense the iron status of the cell and regulate the expression of proteins involved in the acquisition, storage, and efflux of iron accordingly. Here, we survey the current understanding of the structure and mechanism of the important members of each of these classes of protein. Diversity in the details of iron homeostasis mechanisms reflect the differing nutritional stresses resulting from the wide variety of ecological niches that bacteria inhabit. However, in this review, we seek to highlight the similarities of iron homeostasis between different bacteria, while acknowledging important variations. In this way, we hope to illustrate how bacteria have evolved common approaches to overcome the dual problems of the insolubility and potential toxicity of iron. Full Article
pr Evolving the naturally compromised chorismate mutase from Mycobacterium tuberculosis to top performance [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Chorismate mutase (CM), an essential enzyme at the branch-point of the shikimate pathway, is required for the biosynthesis of phenylalanine and tyrosine in bacteria, archaea, plants, and fungi. MtCM, the CM from Mycobacterium tuberculosis, has less than 1% of the catalytic efficiency of a typical natural CM and requires complex formation with 3-deoxy-d-arabino-heptulosonate 7-phosphate synthase for high activity. To explore the full potential of MtCM for catalyzing its native reaction, we applied diverse iterative cycles of mutagenesis and selection, thereby raising kcat/Km 270-fold to 5 × 105 m−1s−1, which is even higher than for the complex. Moreover, the evolutionarily optimized autonomous MtCM, which had 11 of its 90 amino acids exchanged, was stabilized compared with its progenitor, as indicated by a 9 °C increase in melting temperature. The 1.5 Å crystal structure of the top-evolved MtCM variant reveals the molecular underpinnings of this activity boost. Some acquired residues (e.g. Pro52 and Asp55) are conserved in naturally efficient CMs, but most of them lie beyond the active site. Our evolutionary trajectories reached a plateau at the level of the best natural enzymes, suggesting that we have exhausted the potential of MtCM. Taken together, these findings show that the scaffold of MtCM, which naturally evolved for mediocrity to enable inter-enzyme allosteric regulation of the shikimate pathway, is inherently capable of high activity. Full Article
pr Hydrogen/deuterium exchange memory NMR reveals structural epitopes involved in IgE cross-reactivity of allergenic lipid transfer proteins [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Identification of antibody-binding epitopes is crucial to understand immunological mechanisms. It is of particular interest for allergenic proteins with high cross-reactivity as observed in the lipid transfer protein (LTP) syndrome, which is characterized by severe allergic reactions. Art v 3, a pollen LTP from mugwort, is frequently involved in this cross-reactivity, but no antibody-binding epitopes have been determined so far. To reveal human IgE-binding regions of Art v 3, we produced three murine high-affinity mAbs, which showed 70–90% coverage of the allergenic epitopes from mugwort pollen–allergic patients. As reliable methods to determine structural epitopes with tightly interacting intact antibodies under native conditions are lacking, we developed a straightforward NMR approach termed hydrogen/deuterium exchange memory (HDXMEM). It relies on the slow exchange between the invisible antigen-mAb complex and the free 15N-labeled antigen whose 1H-15N correlations are detected. Due to a memory effect, changes of NH protection during antibody binding are measured. Differences in H/D exchange rates and analyses of mAb reactivity to homologous LTPs revealed three structural epitopes: two partially cross-reactive regions around α-helices 2 and 4 as well as a novel Art v 3–specific epitope at the C terminus. Protein variants with exchanged epitope residues confirmed the antibody-binding sites and revealed strongly reduced IgE reactivity. Using the novel HDXMEM for NMR epitope mapping allowed identification of the first structural epitopes of an allergenic pollen LTP. This knowledge enables improved cross-reactivity prediction for patients suffering from LTP allergy and facilitates design of therapeutics. Full Article
pr Determinants of replication protein A subunit interactions revealed using a phosphomimetic peptide [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-25T00:06:31-08:00 Replication protein A (RPA) is a eukaryotic ssDNA-binding protein and contains three subunits: RPA70, RPA32, and RPA14. Phosphorylation of the N-terminal region of the RPA32 subunit plays an essential role in DNA metabolism in processes such as replication and damage response. Phosphorylated RPA32 (pRPA32) binds to RPA70 and possibly regulates the transient RPA70-Bloom syndrome helicase (BLM) interaction to inhibit DNA resection. However, the structural details and determinants of the phosphorylated RPA32–RPA70 interaction are still unknown. In this study, we provide molecular details of the interaction between RPA70 and a mimic of phosphorylated RPA32 (pmRPA32) using fluorescence polarization and NMR analysis. We show that the N-terminal domain of RPA70 (RPA70N) specifically participates in pmRPA32 binding, whereas the unphosphorylated RPA32 does not bind to RPA70N. Our NMR data revealed that RPA70N binds pmRPA32 using a basic cleft region. We also show that at least 6 negatively charged residues of pmRPA32 are required for RPA70N binding. By introducing alanine mutations into hydrophobic positions of pmRPA32, we found potential points of contact between RPA70N and the N-terminal half of pmRPA32. We used this information to guide docking simulations that suggest the orientation of pmRPA32 in complex with RPA70N. Our study demonstrates detailed features of the domain-domain interaction between RPA70 and RPA32 upon phosphorylation. This result provides insight into how phosphorylation tunes transient bindings between RPA and its partners in DNA resection. Full Article
pr Nitro-fatty acids as activators of hSIRT6 deacetylase activity [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-25T00:06:31-08:00 Sirtuin 6, SIRT6, is critical for both glucose and lipid homeostasis and is involved in maintaining genomic stability under conditions of oxidative DNA damage such as those observed in age-related diseases. There is an intense search for modulators of SIRT6 activity, however, not many specific activators have been reported. Long acyl-chain fatty acids have been shown to increase the weak in vitro deacetylase activity of SIRT6 but this effect is modest at best. Herein we report that electrophilic nitro-fatty acids (nitro-oleic acid and nitro-conjugated linoleic acid) potently activate SIRT6. Binding of the nitro-fatty acid to the hydrophobic crevice of the SIRT6 active site exerted a moderate activation (2-fold at 20 μm), similar to that previously reported for non-nitrated fatty acids. However, covalent Michael adduct formation with Cys-18, a residue present at the N terminus of SIRT6 but absent from other isoforms, induced a conformational change that resulted in a much stronger activation (40-fold at 20 μm). Molecular modeling of the resulting Michael adduct suggested stabilization of the co-substrate and acyl-binding loops as a possible additional mechanism of SIRT6 activation by the nitro-fatty acid. Importantly, treatment of cells with nitro-oleic acid promoted H3K9 deacetylation, whereas oleic acid had no effect. Altogether, our results show that nitrated fatty acids can be considered a valuable tool for specific SIRT6 activation, and that SIRT6 should be considered as a molecular target for in vivo actions of these anti-inflammatory nitro-lipids. Full Article
pr MMP activation-associated aminopeptidase N reveals a bivalent 14-3-3 binding motif [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-25T00:06:31-08:00 Aminopeptidase N (APN, CD13) is a transmembrane ectopeptidase involved in many crucial cellular functions. Besides its role as a peptidase, APN also mediates signal transduction and is involved in the activation of matrix metalloproteinases (MMPs). MMPs function in tissue remodeling within the extracellular space and are therefore involved in many human diseases, such as fibrosis, rheumatoid arthritis, tumor angiogenesis, and metastasis, as well as viral infections. However, the exact mechanism that leads to APN-driven MMP activation is unclear. It was previously shown that extracellular 14-3-3 adapter proteins bind to APN and thereby induce the transcription of MMPs. As a first step, we sought to identify potential 14-3-3–binding sites in the APN sequence. We constructed a set of phosphorylated peptides derived from APN to probe for interactions. We identified and characterized a canonical 14-3-3–binding site (site 1) within the flexible, structurally unresolved N-terminal APN region using direct binding fluorescence polarization assays and thermodynamic analysis. In addition, we identified a secondary, noncanonical binding site (site 2), which enhances the binding affinity in combination with site 1 by many orders of magnitude. Finally, we solved crystal structures of 14-3-3σ bound to mono- and bis-phosphorylated APN-derived peptides, which revealed atomic details of the binding mode of mono- and bivalent 14-3-3 interactions. Therefore, our findings shed some light on the first steps of APN-mediated MMP activation and open the field for further investigation of this important signaling pathway. Full Article
pr Humanin selectively prevents the activation of pro-apoptotic protein BID by sequestering it into fibers [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-25T00:06:31-08:00 Members of the B-cell lymphoma (BCL-2) protein family regulate mitochondrial outer membrane permeabilization (MOMP), a phenomenon in which mitochondria become porous and release death-propagating complexes during the early stages of apoptosis. Pro-apoptotic BCL-2 proteins oligomerize at the mitochondrial outer membrane during MOMP, inducing pore formation. Of current interest are endogenous factors that can inhibit pro-apoptotic BCL-2 mitochondrial outer membrane translocation and oligomerization. A mitochondrial-derived peptide, Humanin (HN), was reported being expressed from an alternate ORF in the mitochondrial genome and inhibiting apoptosis through interactions with the pro-apoptotic BCL-2 proteins. Specifically, it is known to complex with BAX and BID. We recently reported the fibrillation of HN and BAX into β-sheets. Here, we detail the fibrillation between HN and BID. These fibers were characterized using several spectroscopic techniques, protease fragmentation with mass analysis, and EM. Enhanced fibrillation rates were detected with rising temperatures or pH values and the presence of a detergent. BID fibers are similar to those produced using BAX; however, the structures differ in final conformations of the BCL-2 proteins. BID fibers display both types of secondary structure in the fiber, whereas BAX was converted entirely to β-sheets. The data show that two distinct segments of BID are incorporated into the fiber structure, whereas other portions of BID remain solvent-exposed and retain helical structure. Similar analyses show that anti-apoptotic BCL-xL does not form fibers with humanin. These results support a general mechanism of sequestration of pro-apoptotic BCL-2 proteins into fibers by HN to inhibit MOMP. Full Article
pr A combinatorial native MS and LC-MS/MS approach reveals high intrinsic phosphorylation of human Tau but minimal levels of other key modifications [Neurobiology] By www.jbc.org Published On :: 2020-12-25T00:06:31-08:00 Abnormal changes of neuronal Tau protein, such as phosphorylation and aggregation, are considered hallmarks of cognitive deficits in Alzheimer's disease. Abnormal phosphorylation is thought to precede aggregation and therefore to promote aggregation, but the nature and extent of phosphorylation remain ill-defined. Tau contains ∼85 potential phosphorylation sites, which can be phosphorylated by various kinases because the unfolded structure of Tau makes them accessible. However, methodological limitations (e.g. in MS of phosphopeptides, or antibodies against phosphoepitopes) led to conflicting results regarding the extent of Tau phosphorylation in cells. Here we present results from a new approach based on native MS of intact Tau expressed in eukaryotic cells (Sf9). The extent of phosphorylation is heterogeneous, up to ∼20 phosphates per molecule distributed over 51 sites. The medium phosphorylated fraction Pm showed overall occupancies of ∼8 Pi (± 5) with a bell-shaped distribution; the highly phosphorylated fraction Ph had 14 Pi (± 6). The distribution of sites was highly asymmetric (with 71% of all P-sites in the C-terminal half of Tau). All sites were on Ser or Thr residues, but none were on Tyr. Other known posttranslational modifications were near or below our detection limit (e.g. acetylation, ubiquitination). These findings suggest that normal cellular Tau shows a remarkably high extent of phosphorylation, whereas other modifications are nearly absent. This implies that abnormal phosphorylations at certain sites may not affect the extent of phosphorylation significantly and do not represent hyperphosphorylation. By implication, the pathological aggregation of Tau is not likely a consequence of high phosphorylation. Full Article
pr Structural transitions in Orb2 prion-like domain relevant for functional aggregation in memory consolidation [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-25T00:06:30-08:00 The recent structural elucidation of ex vivo Drosophila Orb2 fibrils revealed a novel amyloid formed by interdigitated Gln and His residue side chains belonging to the prion-like domain. However, atomic-level details on the conformational transitions associated with memory consolidation remain unknown. Here, we have characterized the nascent conformation and dynamics of the prion-like domain (PLD) of Orb2A using a nonconventional liquid-state NMR spectroscopy strategy based on 13C detection to afford an essentially complete set of 13Cα, 13Cβ, 1Hα, and backbone 13CO and 15N assignments. At pH 4, where His residues are protonated, the PLD is disordered and flexible, except for a partially populated α-helix spanning residues 55–60, and binds RNA oligos, but not divalent cations. At pH 7, in contrast, His residues are predominantly neutral, and the Q/H segments adopt minor populations of helical structure, show decreased mobility and start to self-associate. At pH 7, the His residues do not bind RNA or Ca2+, but do bind Zn2+, which promotes further association. These findings represent a remarkable case of structural plasticity, based on which an updated model for Orb2A functional amyloidogenesis is suggested. Full Article
pr Molecular characterization of the RNA-protein complex directing -2/-1 programmed ribosomal frameshifting during arterivirus replicase expression [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-25T00:06:30-08:00 Programmed ribosomal frameshifting (PRF) is a mechanism used by arteriviruses like porcine reproductive and respiratory syndrome virus (PRRSV) to generate multiple proteins from overlapping reading frames within its RNA genome. PRRSV employs −1 PRF directed by RNA secondary and tertiary structures within its viral genome (canonical PRF), as well as a noncanonical −1 and −2 PRF that are stimulated by the interactions of PRRSV nonstructural protein 1β (nsp1β) and host protein poly(C)-binding protein (PCBP) 1 or 2 with the viral genome. Together, nsp1β and one of the PCBPs act as transactivators that bind a C-rich motif near the shift site to stimulate −1 and −2 PRF, thereby enabling the ribosome to generate two frameshift products that are implicated in viral immune evasion. How nsp1β and PCBP associate with the viral RNA genome remains unclear. Here, we describe the purification of the nsp1β:PCBP2:viral RNA complex on a scale sufficient for structural analysis using small-angle X-ray scattering and stochiometric analysis by analytical ultracentrifugation. The proteins associate with the RNA C-rich motif as a 1:1:1 complex. The monomeric form of nsp1β within the complex differs from previously reported homodimer identified by X-ray crystallography. Functional analysis of the complex via mutational analysis combined with RNA-binding assays and cell-based frameshifting reporter assays reveal a number of key residues within nsp1β and PCBP2 that are involved in complex formation and function. Our results suggest that nsp1β and PCBP2 both interact directly with viral RNA during formation of the complex to coordinate this unusual PRF mechanism. Full Article
pr Lipid-tuned Zinc Transport Activity of Human ZnT8 Protein Correlates with Risk for Type-2 Diabetes [Molecular Bases of Disease] By www.jbc.org Published On :: 2016-12-30T00:06:37-08:00 Zinc is a critical element for insulin storage in the secretory granules of pancreatic beta cells. The islet-specific zinc transporter ZnT8 mediates granular sequestration of zinc ions. A genetic variant of human ZnT8 arising from a single nonsynonymous nucleotide change contributes to increased susceptibility to type-2 diabetes (T2D), but it remains unclear how the high risk variant (Arg-325), which is also a higher frequency (>50%) allele, is correlated with zinc transport activity. Here, we compared the activity of Arg-325 with that of a low risk ZnT8 variant (Trp-325). The Arg-325 variant was found to be more active than the Trp-325 form following induced expression in HEK293 cells. We further examined the functional consequences of changing lipid conditions to mimic the impact of lipid remodeling on ZnT8 activity during insulin granule biogenesis. Purified ZnT8 variants in proteoliposomes exhibited more than 4-fold functional tunability by the anionic phospholipids, lysophosphatidylcholine and cholesterol. Over a broad range of permissive lipid compositions, the Arg-325 variant consistently exhibited accelerated zinc transport kinetics versus the Trp-form. In agreement with the human genetic finding that rare loss-of-function mutations in ZnT8 are associated with reduced T2D risk, our results suggested that the common high risk Arg-325 variant is hyperactive, and thus may be targeted for inhibition to reduce T2D risk in the general populations. Full Article
pr Emerging Economies: Where is the Debt Problem? By www.chathamhouse.org Published On :: Thu, 16 Jul 2020 20:21:38 +0000 16 July 2020 David Lubin Associate Fellow, Global Economy and Finance Programme @davidlubin Just two months ago it appeared self-evident that emerging economies faced a devastating inability to service their foreign debt, mostly denominated in dollars. That has turned out to be wrong, for now at least. 2020-07-16-India-Banking Yes Bank branch of Malcha Marg, in New Delhi, India. Photo by Vipin Kumar/Hindustan Times via Getty Images. Back in April, nervousness about external debts reached its peak when highly-respected economists Carmen Reinhart and Kenneth Rogoff suggested emerging economies with less than a AAA credit rating be offered a moratorium on all their external debt service payments.Although such a proposal might make sense if emerging economies were actually facing any serious shortage of access to foreign exchange, it is a difficult case to make. What we should worry about is not the external debt of emerging economies, but rather the large increases in government debts denominated in their own currencies.In the first six months of 2020, borrowers from emerging economies issued more than $400 billion of Eurobonds to international investors, up by one-fifth over the same period in 2019. Most of these bonds were sold by borrowers with relatively high credit ratings, but many of the poorest countries do not fear for their access to international capital markets - largely because the US Federal Reserve increased global supply of dollars to a point where their availability is beyond question.Much of the panic about emerging economies’ external debt comes from ‘sticker shock’ - the bald fact that developing countries’ external debt rose by $4.1 trillion in the decade to 2018 generates much hand-wringing.But the increase in gross external debt of developing countries looks a lot scarier than the net increase in debt, which sets off a country’s foreign assets - mostly foreign exchange reserves - against its liabilities. And it is net that counts.At the end of 2018, foreign exchange reserves covered 70% of the external debt of low and middle income developing countries - much lower than a decade ago, when that coverage was above 100%. But in the 1980s and 1990s – two decades of financial instability largely because of excessive foreign debt – the coverage was 15%. By that measure, we are far from crisis territory.Complacency about the external debt burden of developing countries is quite wrong. But, if complacency is misplaced, so is panic.The debt growing most worryingly is the domestic debt of governments. There are large, systemically important emerging economies who will suffer eye-watering increases in public debt this year thanks to a combination of collapsing GDP and the fiscal effort needed to save lives.In Brazil, public debt is rising from 75% GDP last year to a level that could top 100% in 2020. South African public debt is rising from just over 60% last year to something close to 80% GDP. These are truly unprecedented levels of debt.So why worry about a government’s domestic debt? These are debts which are denominated in these countries’ own currency. So surely the central bank can just print the currency needed to repay their obligations if more conventional solutions – such as tax increases – will not work.But it is one thing for the US Federal Reserve to increase supply of dollars on a massive scale, since the world is hungry for them - it is quite another thing if emerging economies do the same with their currencies which almost entirely lack the many attractions of the dollar. That remains the currency of the pre-eminent global superpower whose capital markets offer legal certainty and depth of liquidity. And other highly developed economies have a similar privilege.And yet printing money – in effect, asking the central bank to finance budget deficits – does seem as though it could become a more attractive option for many emerging countries. Importantly, international fund managers have lost interest in buying bonds issued by emerging economy governments in their local currencies. Just a few years ago, foreign investors owned more than 40% of South Africa’s public debt. That has fallen sharply to 30% and is unlikely to rise.Monetising budget deficits was once anathema, since it was routinely associated with uncontrolled rates of inflation - bad news not only for firms trying to decide whether to invest but also for the poor, who suffer disproportionately when inflation accelerates.Right now there are emerging economies – such as Indonesia – whose central banks lend directly to the government, and the sky has not fallen in. The rupiah has been remarkably stable this year. However, there are other examples – Argentina, Turkey – where central bank financing of government deficits has been associated with uncomfortably high inflation rates.This needs careful watching. The biggest risk is the accumulation of public debt threatening longer-term growth. If firms stop investing because they worry about the risks to the value of their currency as domestic public debt explodes, emerging economies will have a tough time growing their way out of these debts.It could be this, rather than the external debt of emerging economies, that is the biggest risk to the post-coronavirus economic environment in the developing world. Full Article
pr Elections in Côte d’Ivoire: President Ouattara’s Dilemma By www.chathamhouse.org Published On :: Mon, 27 Jul 2020 19:08:37 +0000 28 July 2020 Paul Melly Consulting Fellow, Africa Programme @paulmelly2 After the sudden death of Côte d’Ivoire’s Prime Minister Amadou Gon Coulibaly, President Ouattara is now deciding whether to stand for a third term. However, such a move would face challenges internationally, and particularly in West Africa. GettyImages-1227751629.jpg President of Ivory Coast Alassane Ouattara arrives in Bamako on 23 July 2020, where West African leaders gathered in a push to end an escalating political crisis in Mali. Photo: Getty Images. Gon Coulibaly, an economic technocrat and Ouattara loyalist since the 1990s, was earmarked in March as the candidate for the ruling Rassemblement des Houphouëtistes pour la Démocratie et la Paix (RHDP) party in the elections due in October, and represented a handpicked heir, trusted to sustain the strategy established during Ouattara’s nine years in power.Many RDHP parliamentarians and local mayors are now pressing the 78-year-old Ouattara to run again. This was not what he had planned. He hoped to go out on a high – ‘par la grande porte’ – and set a statesmanlike example of retirement by choice, making way for the next generation. His leadership of reform of the regional currency that will see the end of the West African CFA franc would have been the crowning achievement of a presidency that had taken his country from post-war stagnation to sustained growth GDP growth rates around seven per cent before COVID-19 forced a slowdown, as it has worldwide.A profound strategic dilemmaGon Coulibaly had undergone a heart transplant in 2012, and when he hurried to Paris in early May and was fitted with a stent, some wondered whether he would have the energy required for an election campaign. Yet he returned home on 2 July, with his formal nomination by the RHDP pencilled in for early the next month. His sudden death on 8 July, at the age of just 61, was a terrible personal blow for Ouattara, who had regarded him almost as a son, and much more than a purely political protégé. But it also left the president facing a profound strategic dilemma.Names of alternative potential RHDP candidates have been floated – notably the defence minister, and now interim premier, Hamed Bakayoko and the secretary general of the presidency Patrick Achi. Both have solid electoral track records and ample experience of government. But over recent days the impression has grown that they do not command the ultimate confidence of Alassane Ouattara to take on the leadership of the nation.Speculation has grown that the president will conclude that he has no choice but to go back on his promise to retire and stand for yet another term. Although some respected legal experts disagree, he has always made a point of insisting that the constitutional reform of 2016 allows him to run again. And many influential voices within the RHDP are now pressing him to do so.This is not ‘rentacrowd’ fawning. Many members of the governing party have always felt that Ouattara offers the strongest blend of political appeal, governing capability and international profile required to lead a country that likes to see itself as West Africa’s ‘elephant’.A weak opposition, but third term challengesIn electoral terms, Ouattara’s greatest campaign asset might be the unconvincing state of the opposition figures who are actually free to stand, after the Ivorian authorities’ strong-armed the judicial system into blocking the hopes of the of the smooth-talking former parliamentary speaker Guillame Soro, who had great appeal for Cote D’Ivoire’s growing young population. Soro is now exiled in France after conviction in absentia for corruption. Ex-president Laurent Gbagbo remains in Brussels, while the International Criminal Court considers the prosecution appeal against his acquittal on charges of human rights crimes. He is now allowed to travel and has applied for a passport to come home, but it is unclear if this will be granted. That leaves another former head of state, the 86-year old Henri Konan Bédié, as the main opposition challenger.However, even if the RHDP party machine delivers victory for Ouattara, a third term risks hard questions from those who dispute its legitimacy and it may generate other significant political challenges too. Some 60 per cent of Ivorians are under the age of 25, and many young people are impatient for leaders more in tune with their concerns and outlook. Some 51 per cent now live in towns and cities.The sprawling Abidjan conurbation, in particular, weighs heavily in the political culture and national mood. Street protest and urban frustrations are a real factor, and something that fuels vocal grassroots support for both the Soro and Gbagbo camps.Moreover, despite the government’s capable management, the COVID-19 crisis has struck a severe economic and social blow that is sure to impose painful legacy pressures. Even when real GDP was rising by seven per cent per annum, increasingly evident inequality was brewing popular resentment. Corruption appeared to be on the rise, and the obvious prosperity, construction and consumption in parts of Abidjan were not reflected nationwide nor in all sections of society.In the latter years of his second term, Ouattara recognized this and launched an ambitious programme to broaden the reach of development and nudge growth towards a more ‘inclusive’ model. But selling this as the core of an election agenda would be harder for a political veteran who has been in power since 2011 and who now went back on his rhetoric about making way for a younger generation.A third term Ouattara would also face challenges internationally, and particularly in West Africa. He has always presented himself as a statesmanlike figure with restraint and respect for institutional values, setting a tone that has helped in the management of numerous regional crises – exemplified by his participation in a five-president mission to Bamako last week, an effort to broker a solution to Mali’s political and protest deadlock. If a third term run sparks mass domestic protest or accusations of constitutional manipulation, the diplomatic standing and influence so associated with Ouattara will be jeopardized.So Côte d’Ivoire’s president faces profoundly awkward questions as he ponders the third term bid that he had forsworn less than five months ago. And yet he may well conclude that, from his political perspective, there is no viable alternative. Full Article
pr Why the Corrupt President of Belarus Deserves Sanctions By www.chathamhouse.org Published On :: Mon, 10 Aug 2020 19:31:05 +0000 10 August 2020 Ryhor Astapenia Robert Bosch Stiftung Academy Fellow, Russia and Eurasia Programme @ryhorastapenia LinkedIn Sanctions would be a wake-up call for those who oversaw this brutal and dirty election campaign. 2020-08-10-Belarus-Protest-Election People protest at a rally of solidarity with political prisoners in Belarus. Photo by Beata Zawrzel/NurPhoto via Getty Images. Belarusian president Aliaksandr Lukashenka deserves sanctions. This election campaign in Belarus, which culminated in a vote on Sunday is the most brutal and dirty in its history. But, so far, the EU, the UK and the US have only issued familiar-sounding and futile appeals to the Belarusian authorities condemning their actions. Not imposing sanctions is a de facto licence to continue with repression.Despite all this, the West is unlikely to impose significant sanctions afterwards. There are several questionable reasons for this. First, Western policymakers fear sanctions against Lukashenko will make him more likely to genuflect to Russia. However, relations with Russia have already deteriorated as Belarus accuses Russia of trying to interfere with its domestic affairs.Sanctions serve as a wake-up call. The Belarusian authorities then might seek - once again - to repair relations with the West and reduce repression for greater assistance in any direct confrontation with Russia.Second, the West is reluctant to implement sanctions because it has already invested somewhat in warming relations with Belarusian authorities. Punishing Lukashenko could mean burying the - admittedly modest - achievements of a Belarus-West dialogue that started in 2014 after the conflict in Ukraine began.Even US secretary of state Mike Pompeo met with Lukashenko in Minsk this year, after which Belarus replaced a small but symbolic amount of Russian oil for American. All the same, the West has its conscience to answer to if dialogue is won but repressions continue.The third reason why the West may not resort to targeted economic sanctions and visa restrictions is a latent concern whether such measures have any effect on democratization processes at all. They may be appropriate punishment, but there is little evidence they ever change the nature of a regime.According to this logic, if the West imposes sanctions, the Belarusian authorities will continue to crack down with repression because they will have nothing to lose. That said, in previous years, the Belarusian authorities have released political prisoners in response to sticks and carrots brandished by the West. If Belarusian political prisoners did not have a price tag, the authorities would most likely keep everyone in jail.To be fair, there are reasonable arguments in favour of and against sanctions. But if the West fails to impose them - be it through lack of political will or out of genuine concern about their effectiveness - at least it should focus on helping ordinary Belarusians withstand Lukashenko’s repressions. After the vote, arrested and jailed Belarusian citizens might lack money for lawyers and arbitrarily imposed fines.If repression spreads further, independent media and human rights organizations will need funds to keep their structures running in the heat of the crackdown. Many entrepreneurs might lose their companies for openly supporting free elections. Thus, if the West will not sanction Lukashenko, it should at least show solidarity with these Belarusians in peril.This article was originally published in The Telegraph. Full Article
pr Choosing Kamala Harris Puts Identity at the Heart of Presidential Race By www.chathamhouse.org Published On :: Wed, 12 Aug 2020 10:06:36 +0000 12 August 2020 Dr Leslie Vinjamuri Director, US and the Americas Programme; Dean, Queen Elizabeth II Academy for Leadership in International Affairs @londonvinjamuri Google Scholar Joe Biden’s choice of Kamala Harris as his running mate will have a lasting impact on how Americans think about the presidential ticket, and confirms the violent killing of George Floyd unleashed a demand for racial equality that continues to have dramatic impact. 2020-08-12-Kamala-Harris Senator Kamala Harris speaks during a Senate Homeland Security and Governmental Affairs hearing. Photo by ALEXANDER DRAGO/POOL/AFP via Getty Images. Despite being such a historic selection, in certain aspects, Kamala Harris does not actually signal change. She is a moderate in the Democratic Party, an insider more than an outsider, and a highly experienced leader with national, state level and city level credentials. She worked as a district attorney in San Francisco for several years before being elected attorney general for the state of California, and then to the US Senate in 2016. Harris also stood as a candidate against Biden in the contest to become the Democratic Party's presidential candidate.Like Joe Biden, she is a highly experienced leader with strong credentials. But California is solidly blue, so she cannot deliver a new state for him. In many ways she is a safe choice and — at a time when Biden is far ahead of Donald Trump in the polls and America faces a lot of uncertainty — many leading political analysts say safe is exactly what the Democratic candidate needs. The 2020 US Presidential Elections and the State of the Nation Amy Walter and Adam Boulton discuss the current state of the nation and what this means for the US presidential election. But certainly as a signal to the American people, and the rest of the world, of what America is and what it stands for, the choice of Kamala Harris is truly historic. The senator from California is the first African-American woman, and the first Asian-American woman, on the presidential ticket. If Biden wins in November, Harris becomes the first female vice-president.The historic aspects do not end there. Harris also represents a rapidly growing segment of the US population, but one that gets far less mention — multi-racial Americans. The exact size of America’s multi-racial population has been notoriously hard to measure, especially as it has only been 15 years since the US Census Bureau allowed Americans to choose more than one race when completing their census form. But America has long seen itself as a melting pot, so Harris’s place on the ballot underscores a national narrative with a deep resonance across the country, not least among America’s schoolchildren.In recent weeks, it came to feel inevitable Biden would choose an African-American running mate. His selection comes at a time when more Americans than ever before have taken to the streets to protest the brutal killing of George Floyd and racial injustice. And the demand for racial equality has been accelerated by the COVID-19 pandemic which has disproportionately affected African-Americans who are dying from the virus at around double the rate of their white American counterparts, while twice the number of black businesses are closing relative to their white counterparts.The choice of Harris also speaks to another fundamental aspect of the ‘American dream’. She is the daughter of two immigrant parents, her father being from Jamaica and her mother from India. Immigration has become one of the toughest issues in US politics, and immigrants have suffered repeated rhetorical attacks from Trump. One of Harris’s first stands in the US Senate was against President Trump’s entry ban to the US on several countries with majority Muslim populations.When it comes to questions of identity, the choices that the US electorate now face in November could not be more stark. President Trump used the opportunity of the July 4 weekend to deliver a speech at Mount Rushmore which appeared to actively seek division and to ignite America’s cultural wars.By choosing Kamala Harris, Biden also continues to signal that he will lead from the moderate wing of the Democratic Party.Harris may be left of Biden, but she is far to the right of other well-known progressive candidates, especially Elizabeth Warren. She has not, for example, supported more far-reaching measures to redistribute wealth, especially the proposal for a wealth tax. And she has a track record of being tough on crime during her years as a prosecutor. Although she played an active role in recent protests and signalled her commitment to police reform and anti-lynching laws, not all young or progressive protesters will be easily persuaded by her credentials.However, for voters who hoped for a more progressive candidate, two factors play to the advantage of the Biden-Harris ticket. This election still looks set to be a referendum on President Trump and — especially now — his ability to manage the public health and economic crises at home. And Biden has continued to include the progressive side of the Democratic Party in his plans, giving Bernie Sanders and Alexandria Ocasio-Cortez key roles in developing climate proposals, and establishing a series of Unity task forces to bring the party together.There are also other more conventional factors at play. Biden has relied on the support of African-American and also female voters. While Harris may not broaden this support, it should help ensure these voters turn out — if primarily via their postal box — to vote for Biden. His choice of Kamala Harris answers the one big outstanding question facing his candidacy and signals the true beginning of the race to the White House. Full Article
pr Lessons from COVID-19: A Catalyst for Improving Sanctions? By www.chathamhouse.org Published On :: Tue, 25 Aug 2020 23:00:00 +0000 26 August 2020 Emanuela-Chiara Gillard Associate Fellow, International Law Programme As the COVID-19 pandemic continues, efforts by states and humanitarian actors to stop its spread and to treat the sick are being hindered by existing sanctions and counterterrorism measures. 2020-08-25-covid-sanctions.jpg Syrians walk past a mural painted as part of an awareness campaign by UNICEF and WHO, bearing instructions on protection from COVID-19, in the Kurdish-majority city of Qamishli, Syria, on 16 August 2020. Photo by Delil Souleiman/AFP via Getty Images. If sanctions imposed by the UN Security Council, the EU, or states unilaterally, are not sufficiently targeted, and do not include adequate safeguards for humanitarian action, they can adversely affect the very populations for whose well-being they were imposed in the first place. This is not a new concern, but one brought starkly to the fore by their impact on responses to COVID-19.The detrimental impact of sanctions, which can prevent the supply of medical or personal protective equipment (PPE), or the provision of technical support or training to local health authorities is evident. Sanctions can also affect remote learning if support cannot be provided to local education authorities, export licences cannot be obtained for the necessary equipment and software, or if the companies providing reliable internet coverage are designated under the sanctions.A comparison of US and EU sanctions on Syria reveals key challenges, but also opportunities for improving current arrangements for the imposition and implementation of sanctions so as to minimize adverse consequences in Syria and more generally.The US has imposed broad sanctions, such as restrictions on the provision of funds, goods or services – even charitable contributions – to the Syrian government, including the health and education ministries, now playing a central role in the COVID-19 response.UN agencies are exempted from these restrictions. A general license authorizes NGOs to conduct activities to meet basic needs, but it excludes those involving the government. So NGOs wishing to provide medical devices, PPE, training or other support to ministry of health staff have to apply for a specific licence.But procedures for applying for licences are complicated, and the approval process notoriously slow. No accommodation has been made to facilitate the COVID-19 response: no interpretative guidance – that would be valuable for all NGOs – has been issued, and no procedures established for reviewing applications more quickly. There is no statement of policy indicating the circumstances under which specific licences might be granted.Transactions with designated entities other than the government, such as internet providers whose services are necessary for remote learning, remain prohibited, and regulations expressly preclude applying for specific licences.US sanctions frequently have a broad scope, both in direct and indirect application. NGOs registered in the US, and staff who are US nationals, are directly bound by them, and grant agreements between the US government and non-US NGOs require the latter to comply with US sanctions.This leaves the non-US NGOs in a Catch-22 situation – as they are not ‘US persons’ they cannot apply for specific licenses, but if they operate without such licences they may be violating grant requirements. This lack of clarity contributes to banks’ unwillingness to provide services, and may lead NGOs to curtail their activities. This situation is regrettable in Syria, where the US is the first donor to humanitarian action, and also arises in other contexts where the US has imposed similar sanctions.The EU’s sanctions for Syria are far more targeted. Of relevance to the COVID-19 response, they do not include prohibitions on the provision of support to the government that could impede assistance in the medical field. There are, however, restrictions on the provision of certain types of PPE or substances used for disinfection, and also on transactions with designated telecommunications providers that affect continuity of education during lockdowns. Although not prohibited, these activities must be authorized by member states’ competent authorities. Similar concerns arise about the complexity and delays of the processes.The EU sanctions framework is complex, so the recent European Commission Guidance Note on Syria providing official clarification of how it applies to humanitarian action is welcome. Although the note only explains the existing rules rather than amending them to facilitate the COVID-19 response, it does include a number of important elements relevant not just to Syria, but to the interplay between sanctions and humanitarian action more broadly.First, it notes that ‘in accordance with International Humanitarian Law where no other option is available, the provision of humanitarian aid should not be prevented by EU restrictive measures’. This recognizes that humanitarian assistance takes priority over any inconsistent restrictions in sanctions, and it also applies both to UN sanctions and unilateral measures. It is a starting premise that is frequently overlooked in discussions of whether sanctions should include exceptions for humanitarian action. Its reaffirmation is timely, and it must guide states in drawing up future sanctions.Second, the note states that sanctions do not require the screening of final beneficiaries of humanitarian programmes. This means that once someone has been identified as an individual in need on the basis of humanitarian principles, no further screening is required. This is extremely important to COVID-19 responses as it reflects a foundational principle of IHL that, to the fullest extent practicable, everyone is entitled to the medical care required by their condition without distinction.Third, while responsibility for the implementation of sanctions, including the granting of authorizations, lies with member states, the note nudges them to adopt a number of measures to expedite and streamline such processes. These include the suggestion that states could issue a single authorization for the provision of humanitarian aid in response to the pandemic.The European Commission is to be commended for this initiative, which should be replicated for other contexts where the COVID-19 response may be undermined by sanctions. These include Gaza, where it would be important to highlight that the designation of Hamas under EU counterterrorism sanctions must not prevent the provision of assistance to relevant ministries.Failing to draw a distinction between the designated political party and the structures of civil administration risks turning targeted financial sanctions into measures akin to comprehensive sanctions.The pandemic should serve as a catalyst for improving the system for the adoption and implementation of sanctions by the UN, the EU and individual states, including the UK as it elaborates its sanctions policy post-Brexit. The principles are clear: without prejudicing the aims for which sanctions have been imposed, humanitarian needs must always be prioritized, and met. Full Article
pr Formal Representation for Young People Enhances Politics for All By www.chathamhouse.org Published On :: Thu, 10 Sep 2020 11:38:51 +0000 10 September 2020 Ben Horton Communications Manager, Communications and Publishing @BenRHorton LinkedIn Michel Alimasi Member, Common Futures Conversations, Italy Gift Jedida Member, Common Futures Conversations, Kenya Sanne Thijssen Member, Common Futures Conversations, Netherlands Mondher Tounsi Member, Common Futures Conversations, Tunisia Despite grassroots associations, community organizing and online groups offering pathways for political engagement, the room for youth representation in international politics remains narrow, with many young people still left feeling they are passive participants in policymaking. CFC Youth Participation EC_10092020.png Youth protests at Parliament square against a new exam rating system which has been introduced in British education system - London, England on August 16, 2020. Photo by Dominika Zarzycka/NurPhoto via Getty Images. According to UN Youth, people aged 15-24 make up one-sixth of the world’s population but, in roughly one-third of countries, the eligibility for parliamentarians begins at 25 years old and only 1.6% of parliamentarians are in their twenties. Young people are largely being excluded and overlooked, both as political candidates and even as participants in political processes, giving them limited political control over their own futures. If politics continues to be regarded as a space for older, more politically experienced individuals from particular backgrounds, young people will continue to be left systematically marginalized, and overall disengagement with politics within societies will continue to grow. Global leaders may increasingly point out the importance of youth representation in national and international fora, but the reality is their real policymaking impact still comes mainly from self-organized and informal activities.And yet, despite this continued exclusion, huge numbers of young people are interested in political and civic engagement, and they have been driven to create new spaces. Youth networks, movements, and constituencies have emerged which provide the opportunity for younger voices to express political stances, and thus enhance the diversity and inclusivity of political debate. From the global Extinction Rebellion protests, to the student-led Rhodes Must Fall movement in South Africa and the UK, there are numerous examples of the power of informal youth networks and movements pushing for change. In certain cases, such as Sudan’s political revolution in 2019, we can see how direct action by young people creates major impact, but unfortunately these successes are few as most informal initiatives remain overlooked and undervalued. Putting youth representation into governmentCreating diverse representation requires the linking of vital informal networks to formal political processes. In response to a recent Common Futures Conversations challenge, one mechanism with the potential to achieve this aim that emerged is creating dedicated youth representatives within government departments, so that qualified young people with relevant expertise are formally appointed to act as the link between government and informal youth movements. These individuals should be hired as employees rather than volunteers and take up the responsibilities of a government employee, supported by a large network of youth-led movements and initiatives as well as a smaller, voluntary advisory board of young people. This network then acts as a sounding board for the representative, gathering the opinions in their local communities and bringing forward crucial concerns so the youth representatives can confidently feed into policymaking processes with a clear sense of the substance of youth opinion. Alongside the network, a voluntary board of young people could provide additional support to the representatives when required to consult a broader range of youth organizations.Both in the youth network and the board, a key priority is to involve different movements and initiatives reflecting diversities such as geographic spread, people who are marginalized due to ethnicity, gender or sexuality, educational and professional backgrounds, and other factors. Implementing such a structure would ensure more diversity in youth representation, something which is missing in many existing youth participation and formal political structures. Representation needs to move away from only highly-educated youth living in cities to ensure more influence for those young people usually left on the sidelines. Youth involvement in politics leads to better civic engagement overall. It improves the influence and access of young people, and supports governments becoming more inclusive and responsive to the plurality of voices they are representing. It also has the potential of encouraging millions more people to become properly engaged with politics. In order to gain support from parliamentarians and policymakers, it is crucial to highlight these benefits and demonstrate how the support of young people helps shift the political landscape for the better. All the necessary parties already exist in most countries, so all that is required is to drive a collective initiative and for both governments and the youth to take responsibility for making it work.As the former president of Ireland Mary Robinson said during a recent Chatham House Centenary event: ‘We need to make space for young people so we can hear their voices, their imagination, their commitment to question and speak truth to power. We need young people to feel that they are part of the solution.’ Building formal structures is a necessary step to achieving this vision, as it provides practical solutions to realize a more diverse, inclusive and meaningful participation of the youth in politics, and also creates more representative and responsive governments. Full Article
pr First US Presidential Debate – Five Key Questions Answered By www.chathamhouse.org Published On :: Wed, 30 Sep 2020 12:40:19 +0000 30 September 2020 Anar Bata Coordinator, US and the Americas Programme Dr Leslie Vinjamuri Director, US and the Americas Programme; Dean, Queen Elizabeth II Academy for Leadership in International Affairs @londonvinjamuri Google Scholar Megan Greene Dame DeAnne Julius Senior Academy Fellow in International Economics @economistmeg LinkedIn Dr Christopher Sabatini Senior Research Fellow for Latin America, US and the Americas Programme @ChrisSabatini LinkedIn On 29 September, US president Donald Trump went head-to-head with Joe Biden in the first presidential debate of the 2020 US election. Anar Bata spoke with experts across Chatham House to get their views on the key debate moments and the implications for the US election. GettyImages-1228797368.jpg People watch the first presidential debate between US President Donald Trump and Former US Vice President Joe Biden on 29 September 2020 in Hoboken, New Jersey. Photo: Getty Images. What role do the presidential debates serve in encouraging voter turnout?Leslie Vinjamuri: Going into the debates, 74% of Americans were set to tune in and watch according to a new Monmouth Poll. This is striking since more than 90% have already decided who their candidate will be, and many have already cast their ballots. During President Donald Trump’s time in office, Americans have been far more politically engaged than in previous periods. A record 49.3% of the voting eligible population turned out to vote in the 2018 midterm elections, according to the United States Election Project. This was the highest voter turnout since 1914, and it also reversed a downward trend. Debates don’t change voters’ minds and last night’s debate, the first between Donald Trump and Joe Biden is unlikely to be an exception. But debates can shape public sentiment and enthusiasm, not least for voting.Polling confirms that Trump trails Biden by an average of around 7% nationally, but also that his base is highly enthusiastic. The same is not true for Biden: the older voters that support him are far more enthusiastic than younger voters that do the same.How credible are Trump's claims that the US economy is experiencing a V-shaped recovery and Biden's claims that there is a K-shaped recovery? Megan Greene: Off the back of an unprecedented lockdown in the US and a resultant short and sharp contraction of the economy, the immediate recovery was swift and V-shaped. This is partly a reflection of significant support to Americans in the form of unemployment benefit enhancements and to businesses in the form of Paycheck Protection Program (PPP) loans. But as the economy reopened, growth was always going to rebound and a short-term V-shaped recovery was always going to materialize. Don’t be fooled by Donald Trump’s assertion that a V-shaped recovery will persist though. Most of the support for workers and small businesses expired in late July or early August and people and firms have stayed afloat by dipping into their savings. In the absence of another fiscal stimulus package—very unlikely before the end of the year—this is completely unsustainable. The K-shaped recovery that Joe Biden has suggested is far more likely going forward. The lockdown revealed extraordinary inequality in the US economy. The death toll of the virus on black and Asian Americans was higher than on white Americans. Huge disparities were laid bare in the labour market as well.It was precisely those hourly service workers who saw few wage gains since the last recession who were first to lose their jobs in this crisis. The service workers who kept their jobs were real heroes—delivering our food, teaching our kids over Zoom, removing our trash—and yet have not been remunerated accordingly. Unemployment for high-income workers is nearly back to January 2020 levels, but is still down by over 15% for low-income workers. This trend will only get worse as small businesses go under and large, superstar companies step in to fill the void. This increase in market concentration reduces the number of potential employers from which workers can choose and reduces workers’ wage negotiating power. Rising inequality in the US is by no means a new trend, but as with many things it has been accelerated by the coronavirus crisis. Inequality will continue to drag on the economy if it is left unaddressed.Did either candidate refer to America’s role in the world?Leslie Vinjamuri: This debate could only have hurt America’s global image. This comes in the midst of a pandemic, when the gravest problems are at home, and when America’s global leadership depends on getting its house in order. Rather than restoring confidence, Donald Trump used the debates to undermine confidence in the elections and to stoke fear of violence in America’s cities.By design, most of the debate was focused on domestic issues. But the candidates did discuss climate science, the one issue touched on that matters most beyond America’s borders. The difference between Trump's and Biden’s plans was stark and the debates made clear that America’s global leadership on climate change hinges on these elections.Biden articulated a clear plan to reduce carbon emissions, create green jobs and invest in green infrastructure. When it comes to global leadership, this would bring the United States back into a debate that China has been leading. Last week, President Xi Jinping committed China to achieving carbon neutrality by 2060; Biden has committed the US to achieving this goal by 2050.But Trump repeatedly deflected the moderator’s question about whether he accepted climate science. And when asked about the link between climate change and forest fires, he launched a series of attacks on forest managers.In addition to Trump's comments on China and COVID-19, the only reference made to foreign policy was Biden's comments that he would be tougher on Russia. Did this debate reaffirm the notion that the majority of Americans prefer less engagement with the world? Chris Sabatini: According to the themes set by the moderator Chris Wallace and the debate committee, foreign policy was not scheduled to be among the topics covered in the 29 September debates. That will come up later. When it did appear in the first debates it was around largely domestic topics: COVID-19, allegations of corruption, concerns about trade and manufacturing and suspicions of Russian influence shaping the US elections and US foreign policy. That foreign policy surfaced in this debate and around those specific, partisan issues demonstrates not a lack of interest by US voters in the world but the ways in which extra-national influence is seen by some (and played by the candidates) as damaging US politics, society and the economy. The problem is that such fears don't make for coherent or constructive foreign policies, but rather reinforce a perception of the US as a victim. Let's hope the issue of foreign policy comes up and is discussed more thoughtfully and positively in future debates when it is on the docket.How will this debate impact the rest of the race?Leslie Vinjamuri: For voters at home, the most disturbing part of tonight’s debates should be Donald Trump’s repeated attacks on the integrity of the electoral process. This comes on the heels of the president’s failure last week to confirm that he would respect the outcome of the elections.Trump used the debates as a platform to launch a series of attacks on mail-in ballots, casting them as fraudulent and saying that people should just turn up and vote. The recent debates confirmed that when it comes to the pandemic, the economy, and especially the environment, the alternatives are stark and there is a lot at stake. Whether this drives voters to the polls, or to switch off the television remains to be seen. Full Article
pr Inhibition of mitochondrial oxidative metabolism attenuates EMCV replication and protects {beta}-cells from virally mediated lysis [Immunology] By www.jbc.org Published On :: 2020-12-04T00:06:05-08:00 Viral infection is one environmental factor that may contribute to the initiation of pancreatic β-cell destruction during the development of autoimmune diabetes. Picornaviruses, such as encephalomyocarditis virus (EMCV), induce a pro-inflammatory response in islets leading to local production of cytokines, such as IL-1, by resident islet leukocytes. Furthermore, IL-1 is known to stimulate β-cell expression of iNOS and production of the free radical nitric oxide. The purpose of this study was to determine whether nitric oxide contributes to the β-cell response to viral infection. We show that nitric oxide protects β-cells against virally mediated lysis by limiting EMCV replication. This protection requires low micromolar, or iNOS-derived, levels of nitric oxide. At these concentrations nitric oxide inhibits the Krebs enzyme aconitase and complex IV of the electron transport chain. Like nitric oxide, pharmacological inhibition of mitochondrial oxidative metabolism attenuates EMCV-mediated β-cell lysis by inhibiting viral replication. These findings provide novel evidence that cytokine signaling in β-cells functions to limit viral replication and subsequent β-cell lysis by attenuating mitochondrial oxidative metabolism in a nitric oxide–dependent manner. Full Article
pr CDKN2A/p16INK4a suppresses hepatic fatty acid oxidation through the AMPK{alpha}2-SIRT1-PPAR{alpha} signaling pathway [Metabolism] By www.jbc.org Published On :: 2020-12-11T00:06:21-08:00 In addition to their well-known role in the control of cellular proliferation and cancer, cell cycle regulators are increasingly identified as important metabolic modulators. Several GWAS have identified SNPs near CDKN2A, the locus encoding for p16INK4a (p16), associated with elevated risk for cardiovascular diseases and type-2 diabetes development, two pathologies associated with impaired hepatic lipid metabolism. Although p16 was recently shown to control hepatic glucose homeostasis, it is unknown whether p16 also controls hepatic lipid metabolism. Using a combination of in vivo and in vitro approaches, we found that p16 modulates fasting-induced hepatic fatty acid oxidation (FAO) and lipid droplet accumulation. In primary hepatocytes, p16-deficiency was associated with elevated expression of genes involved in fatty acid catabolism. These transcriptional changes led to increased FAO and were associated with enhanced activation of PPARα through a mechanism requiring the catalytic AMPKα2 subunit and SIRT1, two known activators of PPARα. By contrast, p16 overexpression was associated with triglyceride accumulation and increased lipid droplet numbers in vitro, and decreased ketogenesis and hepatic mitochondrial activity in vivo. Finally, gene expression analysis of liver samples from obese patients revealed a negative correlation between CDKN2A expression and PPARA and its target genes. Our findings demonstrate that p16 represses hepatic lipid catabolism during fasting and may thus participate in the preservation of metabolic flexibility. Full Article
pr The glucose-sensing transcription factor ChREBP is targeted by proline hydroxylation [Metabolism] By www.jbc.org Published On :: 2020-12-11T00:06:20-08:00 Cellular energy demands are met by uptake and metabolism of nutrients like glucose. The principal transcriptional regulator for adapting glycolytic flux and downstream pathways like de novo lipogenesis to glucose availability in many cell types is carbohydrate response element–binding protein (ChREBP). ChREBP is activated by glucose metabolites and post-translational modifications, inducing nuclear accumulation and regulation of target genes. Here we report that ChREBP is modified by proline hydroxylation at several residues. Proline hydroxylation targets both ectopically expressed ChREBP in cells and endogenous ChREBP in mouse liver. Functionally, we found that specific hydroxylated prolines were dispensable for protein stability but required for the adequate activation of ChREBP upon exposure to high glucose. Accordingly, ChREBP target gene expression was rescued by re-expressing WT but not ChREBP that lacks hydroxylated prolines in ChREBP-deleted hepatocytes. Thus, proline hydroxylation of ChREBP is a novel post-translational modification that may allow for therapeutic interference in metabolic diseases. Full Article
pr The role of uncoupling protein 2 in macrophages and its impact on obesity-induced adipose tissue inflammation and insulin resistance [Immunology] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 The development of a chronic, low-grade inflammation originating from adipose tissue in obese subjects is widely recognized to induce insulin resistance, leading to the development of type 2 diabetes. The adipose tissue microenvironment drives specific metabolic reprogramming of adipose tissue macrophages, contributing to the induction of tissue inflammation. Uncoupling protein 2 (UCP2), a mitochondrial anion carrier, is thought to separately modulate inflammatory and metabolic processes in macrophages and is up-regulated in macrophages in the context of obesity and diabetes. Here, we investigate the role of UCP2 in macrophage activation in the context of obesity-induced adipose tissue inflammation and insulin resistance. Using a myeloid-specific knockout of UCP2 (Ucp2ΔLysM), we found that UCP2 deficiency significantly increases glycolysis and oxidative respiration, both unstimulated and after inflammatory conditions. Strikingly, fatty acid loading abolished the metabolic differences between Ucp2ΔLysM macrophages and their floxed controls. Furthermore, Ucp2ΔLysM macrophages show attenuated pro-inflammatory responses toward Toll-like receptor-2 and -4 stimulation. To test the relevance of macrophage-specific Ucp2 deletion in vivo, Ucp2ΔLysM and Ucp2fl/fl mice were rendered obese and insulin resistant through high-fat feeding. Although no differences in adipose tissue inflammation or insulin resistance was found between the two genotypes, adipose tissue macrophages isolated from diet-induced obese Ucp2ΔLysM mice showed decreased TNFα secretion after ex vivo lipopolysaccharide stimulation compared with their Ucp2fl/fl littermates. Together, these results demonstrate that although UCP2 regulates both metabolism and the inflammatory response of macrophages, its activity is not crucial in shaping macrophage activation in the adipose tissue during obesity-induced insulin resistance. Full Article
pr Methylarginine metabolites are associated with attenuated muscle protein synthesis in cancer-associated muscle wasting [Protein Synthesis and Degradation] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Cancer cachexia is characterized by reductions in peripheral lean muscle mass. Prior studies have primarily focused on increased protein breakdown as the driver of cancer-associated muscle wasting. Therapeutic interventions targeting catabolic pathways have, however, largely failed to preserve muscle mass in cachexia, suggesting that other mechanisms might be involved. In pursuit of novel pathways, we used untargeted metabolomics to search for metabolite signatures that may be linked with muscle atrophy. We injected 7-week–old C57/BL6 mice with LLC1 tumor cells or vehicle. After 21 days, tumor-bearing mice exhibited reduced body and muscle mass and impaired grip strength compared with controls, which was accompanied by lower synthesis rates of mixed muscle protein and the myofibrillar and sarcoplasmic muscle fractions. Reductions in protein synthesis were accompanied by mitochondrial enlargement and reduced coupling efficiency in tumor-bearing mice. To generate mechanistic insights into impaired protein synthesis, we performed untargeted metabolomic analyses of plasma and muscle and found increased concentrations of two methylarginines, asymmetric dimethylarginine (ADMA) and NG-monomethyl-l-arginine, in tumor-bearing mice compared with control mice. Compared with healthy controls, human cancer patients were also found to have higher levels of ADMA in the skeletal muscle. Treatment of C2C12 myotubes with ADMA impaired protein synthesis and reduced mitochondrial protein quality. These results suggest that increased levels of ADMA and mitochondrial changes may contribute to impaired muscle protein synthesis in cancer cachexia and could point to novel therapeutic targets by which to mitigate cancer cachexia. Full Article
pr Methylated PP2A stabilizes Gcn4 to enable a methionine-induced anabolic program [Metabolism] By www.jbc.org Published On :: 2020-12-25T00:06:31-08:00 Methionine, through S-adenosylmethionine, activates a multifaceted growth program in which ribosome biogenesis, carbon metabolism, and amino acid and nucleotide biosynthesis are induced. This growth program requires the activity of the Gcn4 transcription factor (called ATF4 in mammals), which facilitates the supply of metabolic precursors that are essential for anabolism. However, how Gcn4 itself is regulated in the presence of methionine is unknown. Here, we discover that Gcn4 protein levels are increased by methionine, despite conditions of high cell growth and translation (in which the roles of Gcn4 are not well-studied). We demonstrate that this mechanism of Gcn4 induction is independent of transcription, as well as the conventional Gcn2/eIF2α-mediated increased translation of Gcn4. Instead, when methionine is abundant, Gcn4 phosphorylation is decreased, which reduces its ubiquitination and therefore degradation. Gcn4 is dephosphorylated by the protein phosphatase 2A (PP2A); our data show that when methionine is abundant, the conserved methyltransferase Ppm1 methylates and alters the activity of the catalytic subunit of PP2A, shifting the balance of Gcn4 toward a dephosphorylated, stable state. The absence of Ppm1 or the loss of the PP2A methylation destabilizes Gcn4 even when methionine is abundant, leading to collapse of the Gcn4-dependent anabolic program. These findings reveal a novel, methionine-dependent signaling and regulatory axis. Here methionine directs the conserved methyltransferase Ppm1 via its target phosphatase PP2A to selectively stabilize Gcn4. Through this, cells conditionally modify a major phosphatase to stabilize a metabolic master regulator and drive anabolism. Full Article
pr In crystallo screening for proline analog inhibitors of the proline cycle enzyme PYCR1 [Metabolism] By www.jbc.org Published On :: 2020-12-25T00:06:31-08:00 Pyrroline-5-carboxylate reductase 1 (PYCR1) catalyzes the biosynthetic half-reaction of the proline cycle by reducing Δ1-pyrroline-5-carboxylate (P5C) to proline through the oxidation of NAD(P)H. Many cancers alter their proline metabolism by up-regulating the proline cycle and proline biosynthesis, and knockdowns of PYCR1 lead to decreased cell proliferation. Thus, evidence is growing for PYCR1 as a potential cancer therapy target. Inhibitors of cancer targets are useful as chemical probes for studying cancer mechanisms and starting compounds for drug discovery; however, there is a notable lack of validated inhibitors for PYCR1. To fill this gap, we performed a small-scale focused screen of proline analogs using X-ray crystallography. Five inhibitors of human PYCR1 were discovered: l-tetrahydro-2-furoic acid, cyclopentanecarboxylate, l-thiazolidine-4-carboxylate, l-thiazolidine-2-carboxylate, and N-formyl l-proline (NFLP). The most potent inhibitor was NFLP, which had a competitive (with P5C) inhibition constant of 100 μm. The structure of PYCR1 complexed with NFLP shows that inhibitor binding is accompanied by conformational changes in the active site, including the translation of an α-helix by 1 Å. These changes are unique to NFLP and enable additional hydrogen bonds with the enzyme. NFLP was also shown to phenocopy the PYCR1 knockdown in MCF10A H-RASV12 breast cancer cells by inhibiting de novo proline biosynthesis and impairing spheroidal growth. In summary, we generated the first validated chemical probe of PYCR1 and demonstrated proof-of-concept for screening proline analogs to discover inhibitors of the proline cycle. Full Article
pr Serum lipoprotein-derived fatty acids regulate hypoxia-inducible factor [Metabolism] By www.jbc.org Published On :: 2020-12-25T00:06:31-08:00 Oxygen regulates hypoxia-inducible factor (HIF) transcription factors to control cell metabolism, erythrogenesis, and angiogenesis. Whereas much has been elucidated about how oxygen regulates HIF, whether lipids affect HIF activity is un-known. Here, using cultured cells and two animal models, we demonstrate that lipoprotein-derived fatty acids are an independent regulator of HIF. Decreasing extracellular lipid supply inhibited HIF prolyl hydroxylation, leading to accumulation of the HIFα subunit of these heterodimeric transcription factors comparable with hypoxia with activation of downstream target genes. The addition of fatty acids to culture medium suppressed this signal, which required an intact mitochondrial respiratory chain. Mechanistically, fatty acids and oxygen are distinct signals integrated to control HIF activity. Finally, we observed lipid signaling to HIF and changes in target gene expression in developing zebrafish and adult mice, and this pathway operates in cancer cells from a range of tissues. This study identifies fatty acids as a physiological modulator of HIF, defining a mechanism for lipoprotein regulation that functions in parallel to oxygen. Full Article