lec The Election Proved Something Painful About Gen Z. It’s Worse Than We Thought. By www.yahoo.com Published On :: 2024-11-12T20:00:00Z Full Article
lec Thousands rally in Georgia to question the vote and demand a new election By www.yahoo.com Published On :: 2024-11-11T19:51:31Z Full Article
lec Recall was electric By jamaica-star.com Published On :: Tue, 12 Nov 2024 05:00:59 -0500 Mas Camp on Arthur Wint Drive in St Andrew was transformed into a retro paradise last weekend as Recall, a retro party, took fans on a journey back to the golden days of dancehall. The 'Print Pink' theme was in full effect, and the ladies were... Full Article
lec Genetic diseases of the Kennedy pathways for membrane synthesis [Molecular Bases of Disease] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 The two branches of the Kennedy pathways (CDP-choline and CDP-ethanolamine) are the predominant pathways responsible for the synthesis of the most abundant phospholipids, phosphatidylcholine and phosphatidylethanolamine, respectively, in mammalian membranes. Recently, hereditary diseases associated with single gene mutations in the Kennedy pathways have been identified. Interestingly, genetic diseases within the same pathway vary greatly, ranging from muscular dystrophy to spastic paraplegia to a childhood blinding disorder to bone deformations. Indeed, different point mutations in the same gene (PCYT1; CCTα) result in at least three distinct diseases. In this review, we will summarize and review the genetic diseases associated with mutations in genes of the Kennedy pathway for phospholipid synthesis. These single-gene disorders provide insight, indeed direct genotype-phenotype relationships, into the biological functions of specific enzymes of the Kennedy pathway. We discuss potential mechanisms of how mutations within the same pathway can cause disparate disease. Full Article
lec 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
lec Fluctuation in O-GlcNAcylation inactivates STIM1 to reduce store-operated calcium ion entry via down-regulation of Ser621 phosphorylation [Molecular Bases of Disease] By www.jbc.org Published On :: 2020-12-11T00:06:20-08:00 Stromal interaction molecule 1 (STIM1) plays a pivotal role in store-operated Ca2+ entry (SOCE), an essential mechanism in cellular calcium signaling and in maintaining cellular calcium balance. Because O-GlcNAcylation plays pivotal roles in various cellular function, we examined the effect of fluctuation in STIM1 O-GlcNAcylation on SOCE activity. We found that both increase and decrease in STIM1 O-GlcNAcylation impaired SOCE activity. To determine the molecular basis, we established STIM1-knockout HEK293 (STIM1-KO-HEK) cells using the CRISPR/Cas9 system and transfected STIM1 WT (STIM1-KO-WT-HEK), S621A (STIM1-KO-S621A-HEK), or T626A (STIM1-KO-T626A-HEK) cells. Using these cells, we examined the possible O-GlcNAcylation sites of STIM1 to determine whether the sites were O-GlcNAcylated. Co-immunoprecipitation analysis revealed that Ser621 and Thr626 were O-GlcNAcylated and that Thr626 was O-GlcNAcylated in the steady state but Ser621 was not. The SOCE activity in STIM1-KO-S621A-HEK and STIM1-KO-T626A-HEK cells was lower than that in STIM1-KO-WT-HEK cells because of reduced phosphorylation at Ser621. Treatment with the O-GlcNAcase inhibitor Thiamet G or O-GlcNAc transferase (OGT) transfection, which increases O-GlcNAcylation, reduced SOCE activity, whereas treatment with the OGT inhibitor ST045849 or siOGT transfection, which decreases O-GlcNAcylation, also reduced SOCE activity. Decrease in SOCE activity due to increase and decrease in O-GlcNAcylation was attributable to reduced phosphorylation at Ser621. These data suggest that both decrease in O-GlcNAcylation at Thr626 and increase in O-GlcNAcylation at Ser621 in STIM1 lead to impairment of SOCE activity through decrease in Ser621 phosphorylation. Targeting STIM1 O-GlcNAcylation could provide a promising treatment option for the related diseases, such as neurodegenerative diseases. Full Article
lec 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
lec 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
lec 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
lec 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
lec 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
lec 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
lec 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
lec 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
lec Seeded fibrils of the germline variant of human {lambda}-III immunoglobulin light chain FOR005 have a similar core as patient fibrils with reduced stability [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-25T00:06:31-08:00 Systemic antibody light chains (AL) amyloidosis is characterized by deposition of amyloid fibrils derived from a particular antibody light chain. Cardiac involvement is a major risk factor for mortality. Using MAS solid-state NMR, we studied the fibril structure of a recombinant light chain fragment corresponding to the fibril protein from patient FOR005, together with fibrils formed by protein sequence variants that are derived from the closest germline (GL) sequence. Both analyzed fibril structures were seeded with ex-vivo amyloid fibrils purified from the explanted heart of this patient. We find that residues 11-42 and 69-102 adopt β-sheet conformation in patient protein fibrils. We identify arginine-49 as a key residue that forms a salt bridge to aspartate-25 in the patient protein fibril structure. In the germline sequence, this residue is replaced by a glycine. Fibrils from the GL protein and from the patient protein harboring the single point mutation R49G can be both heterologously seeded using patient ex-vivo fibrils. Seeded R49G fibrils show an increased heterogeneity in the C-terminal residues 80-102, which is reflected by the disappearance of all resonances of these residues. By contrast, residues 11-42 and 69-77, which are visible in the MAS solid-state NMR spectra, show 13Cα chemical shifts that are highly like patient fibrils. The mutation R49G thus induces a conformational heterogeneity at the C terminus in the fibril state, whereas the overall fibril topology is retained. These findings imply that patient mutations in FOR005 can stabilize the fibril structure. Full Article
lec 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
lec 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
lec 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
lec 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
lec 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
lec Malawi’s Re-Run Election is Lesson for African Opposition By www.chathamhouse.org Published On :: Wed, 01 Jul 2020 19:53:16 +0000 1 July 2020 Fergus Kell Projects Assistant, Africa Programme LinkedIn The overturning of the result in the fresh presidential contest sets a bold precedent for the continent, as a process built upon the resilience of democratic institutions and the collective spirit of opposition. 2020-07-01-Malawi-Chakwera-Election Lazarus Chakwera, leader of the Malawi Congress Party (MCP) arriving at the Mtandire suburb of the capital Lilongwe for an election rally. Photo by AMOS GUMULIRA/AFP via Getty Images. Malawi is only the second African country to annul a presidential election, after Kenya in 2017. It is the first in which the opposition has won the re-run.The initial May 2019 vote had narrowly returned incumbent Peter Mutharika to the presidency. But in February 2020 a landmark ruling by Malawi’s constitutional court annulled the result citing ‘widespread, systematic and grave’ irregularities, including the now-infamous use of corrective fluid in vote tallying, and the Malawi Electoral Commission’s (MEC) failure to address complaints before announcing results. New elections were ordered within 150 days.In a decisive contrast with the previous year, the fresh polls on 23 June saw the coming together of Lazarus Chakwera of the Malawi Congress Party (MCP) and running mate Saulos Chilima of the United Transformation Movement (UTM) to head a coalition of nine opposition parties - having fiercely competed as the leading challengers previously.The constitutional court ruling had also changed Malawi’s electoral system, replacing a first-past-the-post model with one demanding an outright majority, which further encouraged the regional power bases of Malawi’s opposition to cast ego aside and work in alliance with each other.In tandem with a slick digital campaign, the new alliance travelled widely to hold rallies across what is one of the world’s youngest countries, while the elderly Mutharika remained largely confined to the capital. It would be a strategy that ultimately delivered Chakwera to the presidency, polling 58 per cent of votes to Mutharika’s 39.Political opposition elsewhere in Africa should take note from Malawi’s coalition - dialogue, not division, can offer a genuine path to change, especially in those countries with less favourable institutional conditions. Neighbouring Zambia would certainly do well to heed this example ahead of a pivotal election of its own in 2021.A victory built on institutional precedentYet the story here is not only about throwing out an incumbent: Malawians had already done so twice before, rejecting sitting presidents at the polls in 1994 and 2014. It is also not unfamiliar to see public opinion and the judiciary work in parallel to uphold the constitution: former president Bakili Muluzi was twice blocked from abolishing term limits by popular demonstration during his second term, and again prevented from running for a third time in 2009 by the constitutional court.The new result did not arise as the foregone conclusion of a judicial miracle. Rather, throughout the re-run process Malawi has had to repeatedly draw upon the strength of its broad-based institutional foundations. The image of the constitutional court judges arriving to deliver their annulment verdict in February wearing bulletproof vests under their robes was a stark reminder that this was never the easy route to take.In contrast to many other African states, Mutharika was unable to call upon military support as the Malawi Defence Forces (MDF) had moved to shield protesting citizens and protect the judiciary since the 2019 election. The MDF also had previous form in this respect, having defended then-vice president Joyce Banda’s constitutional right to assume the presidency after the incumbent’s death in 2012.And this institutional resilience from the army would facilitate a smooth and mostly peaceful election process during the re-run, despite Mutharika attempts to intervene by replacing the MDF’s commander and his deputy in March 2020.Just ten days before the fresh vote the Mutharika government switched focus back to the country’s legal system by attempting to enforce the premature retirement of Malawi’s chief justice, only to be blocked by the high court. Even as unofficial tallies trickled in, Mutharika’s Democratic Progressive Party (DPP) demanded the MEC annul the result: claiming their monitors were intimidated in MCP strongholds, and requesting unlawful access to scrutinise null and void votes.Headed by a new chairperson, this time the MEC displayed enormous patience in the verification process and openly tackled complaints, now mainly from the DPP. On social media, Malawians celebrated the contrast between images of tally sheets from 2019 and the re-run.Writing a new chapterThere are lessons here too for international partners. UK diplomacy played a subtle role in encouraging Mutharika to accept the legal process - he was invited to appear at the UK-Africa Investment Summit in January - while also helping promoting early dialogue among opposition parties.At a time of pressure for UK engagement to offer clear strategic value, the impact of less easily quantifiable forms of influence should not be overlooked, especially as international observer missions effectively went missing in the discredited 2019 election. Preliminary statements back then from the Commonwealth, European Union, African Union and Southern African Development Community (SADC) struck a mostly congratulatory tone and were non-committal on the issues that would prove decisive in the court ruling. None went on to release their final reports.Malawi must now start to move beyond election mode. Though COVID-19 cases remain low by global standards, a budget already heavily dependent on foreign aid and hampered by 18 months of political uncertainty will be slashed further by the pandemic’s impact. The IMF has predicted GDP growth of just 1% in 2020, down from a pre-coronavirus projection of 5%.As it inherits a major balance of payments crisis, mounting debt and with no tourism revenue to fall back on, the new government will need to use its political capital to push for immediate reform. But it must not forget the core tenet of its campaign. The coalition that defeated Mutharika united the MCP’s rural support base with the middle-class urban following of the UTM. This spirit of unity and inclusion must be expanded and focus on long-term recovery. On this undertaking – unlike the polls – there will be no opportunity for a re-run. Full Article
lec 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
lec US Electorate Shows Distrust of the Realities of Foreign Policy By www.chathamhouse.org Published On :: Fri, 04 Sep 2020 11:36:03 +0000 4 September 2020 Bruce Stokes Associate Fellow, US and the Americas Programme (based in the US) @bruceestokes The identity of the next US president is yet to be determined, but the foreign policy views of the American public are already clear. In principle, Americans support US engagement in the world but, in practice, they worry other countries take advantage of the United States. 2020-09-04-US-Election-Black-Voter A poll station official holding "I Voted" stickers in South Carolina. Photo by Mark Makela/Getty Images. Whoever occupies the White House after the election, it is evident the emphasis will be on ‘America First’, and that only characteristics and approaches will differ. If Donald Trump is re-elected, his electoral base will support a continuation of isolationist, protectionist policies. If Joe Biden becomes president, he will enjoy some limited popular backing for international re-engagement, but his voters still clearly want him to prioritize domestic issues.Implications for the foreign policy of the next US administration are evident. America may have a long history of isolationism, but that should not be confused with ignorance of the growing interconnectedness of today’s world. However, Americans are struggling to find a new equilibrium for their country’s role in the world.Around seven-in-ten hold the view that the United States should take a leading or major role in international affairs, and the same number acknowledge that international events affect their daily life. But Americans remain reticent about global engagement, and half of registered voters believe other countries take unfair advantage of the United States.This clear contradiction is mirrored in what can be expected from the election victor, with a Joe Biden administration likely to speak for those who want America to lead, while a second Donald Trump administration is expected to continue complaining about US victimization by an ungrateful world.A majority (57%) of Americans say foreign policy is 'very important' to them as they decide who to vote for in the 2020 election. This may seem like a high priority, but American polls often show many issues are 'very important' to voters. What matters is relative importance and foreign policy pales in comparison with the significance the public accords to the economy (79%) or healthcare (68%). Immigration (52%) and climate change (42%) are of even less relative importance to voters.Notably, despite the deep partisanship in American politics today, there is no difference between Republican and Democrat voters on the low priority they accord foreign policy. And barely one-third (35%) of the public give top priority to working with allies and international institutions to confront global challenges such as climate change, poverty and disease — in fact only 31% say improving relations with allies should be a top foreign policy priority over the next five years.However, despite this apparent lack of support for international relations, a rising majority of Americans believe international trade is good for the economy — running contrary to many international assumptions that Americans are inherently protectionist. But this increased interest may not amount to much in reality. Americans also believe trade destroys jobs and lowers wages. Trump is clearly wedded to a protectionist worldview and may continue to try dismantling the World Trade Organization (WTO). Biden is unlikely to initiate any new trade liberalizing negotiations given what would be, at best, a slim Democratic majority in the Senate and anti-trade views held by many unions and blue-collar voters among his constituency. Any political capital he commits to trade is likely to focus on reforming the WTO, but privately his advisers admit they are not optimistic.In addition, both Biden and Trump face strong public support for ratcheting up pressure on China, although their lines of attack may differ, with Trump likely to double down on tariffs while Biden would work closely with Europe on both trade and human rights issues. More broadly, almost three-quarters (73%) of Americans now express an unfavourable view of China, up 18 points since the last presidential election. One-quarter of Americans classify Beijing as an ‘enemy’ with almost half saying the US should get tougher with China on economic issues, although attitudes do divide along partisan lines, with Republicans generally more critical of Beijing, but Democrats are tougher on human rights.On immigration, Trump’s policies are out of step with the public. Six-in-ten Americans oppose expanding the border wall with Mexico, 74% support legal status for immigrants illegally brought to the United States as children — including a majority of Republicans (54%) — and as many Americans favour increasing immigration as support decreasing it. But Trump has already promised to double down on limiting immigration if he wins because it is what his Republican electoral base wants and, as with trade, this is one of his long-expressed personal beliefs. If he wins, expect more mass roundups of undocumented people, completion of his border wall and stricter limitations on legal immigration.In contrast, Biden is likely to loosen constraints on immigration because he believes immigration has been good for the economy and the Democratic party is increasingly dependent on Hispanic and Asian voters, the two fastest growing portions of the population. However, open borders are not a Biden option. The US foreign-born population is at near-record levels and, every time in American history the portion of foreign born has come close to being 14% of the total population — in the 1880s, the 1920s and now — there has been a populist backlash. Democrats cannot risk that again.On climate change, there is strong evidence the American public is increasingly worried, and likely to support rejoining the Paris Agreement if Biden is elected and increases US commitments to cut carbon emissions. But the public also appears unlikely to punish Trump if, as promised, he leaves that accord, and he is almost certain to continue denying climate science in the interest of the coal, oil, and gas industries.The public’s concern about global warming does not necessarily translate into support for taking substantive action. There is a huge partisan divide between the number of Democrats (68%) and Republicans (11%) who say climate change is a very important issue in the 2020 election. When pressed on what action they want on climate change, and who they trust to do it, Americans are less likely than Europeans to accept paying higher prices. A carbon tax stands no chance of passing the Senate, thanks to moderate Democrats from fossil-fuel states, and America’s love affair with large, CO²-emitting vehicles shows no signs of ebbing.The outcome of the 2020 US election will almost certainly not be determined by foreign concerns, although an international crisis — a terrorist incident, a military confrontation with China or North Korea — could impact voting in an unforeseen way. But given the mood of the American electorate, if Trump is re-elected, there will be scant public pressure for a more activist, collaborative US foreign policy, beyond support for a tough line on China, while a win for Biden will give more room for some international initiatives.But public opinion data is clear. Voters want the next US president to focus first on domestic issues — overcoming the pandemic, digging the country out of a deep economic hole, calming racial tensions, and reversing inequality. The outcome of the election may end America’s recently antagonistic foreign policy and halt the deterioration of its international role. But dramatic American re-engagement appears unlikely as the public’s priorities lie elsewhere. Full Article
lec Inhibition of oxidative metabolism by nitric oxide restricts EMCV replication selectively in pancreatic beta-cells [Enzymology] By www.jbc.org Published On :: 2020-12-25T00:06:30-08:00 Environmental factors, such as viral infection, are proposed to play a role in the initiation of autoimmune diabetes. In response to encephalomyocarditis virus (EMCV) infection, resident islet macrophages release the pro-inflammatory cytokine IL-1β, to levels that are sufficient to stimulate inducible nitric oxide synthase (iNOS) expression and production of micromolar levels of the free radical nitric oxide in neighboring β-cells. We have recently shown that nitric oxide inhibits EMCV replication and EMCV-mediated β-cell lysis and that this protection is associated with an inhibition of mitochondrial oxidative metabolism. Here we show that the protective actions of nitric oxide against EMCV infection are selective for β-cells and associated with the metabolic coupling of glycolysis and mitochondrial oxidation that is necessary for insulin secretion. Inhibitors of mitochondrial respiration attenuate EMCV replication in β-cells, and this inhibition is associated with a decrease in ATP levels. In mouse embryonic fibroblasts (MEFs), inhibition of mitochondrial metabolism does not modify EMCV replication or decrease ATP levels. Like most cell types, MEFs have the capacity to uncouple the glycolytic utilization of glucose from mitochondrial respiration, allowing for the maintenance of ATP levels under conditions of impaired mitochondrial respiration. It is only when MEFs are forced to use mitochondrial oxidative metabolism for ATP generation that mitochondrial inhibitors attenuate viral replication. In a β-cell selective manner, these findings indicate that nitric oxide targets the same metabolic pathways necessary for glucose stimulated insulin secretion for protection from viral lysis. Full Article
lec Coronavirus infection and PARP expression dysregulate the NAD metabolome: An actionable component of innate immunity [Molecular Bases of Disease] By www.jbc.org Published On :: 2020-12-25T00:06:30-08:00 Poly(ADP-ribose) polymerase (PARP) superfamily members covalently link either a single ADP-ribose (ADPR) or a chain of ADPR units to proteins using NAD as the source of ADPR. Although the well-known poly(ADP-ribosylating) (PARylating) PARPs primarily function in the DNA damage response, many noncanonical mono(ADP-ribosylating) (MARylating) PARPs are associated with cellular antiviral responses. We recently demonstrated robust up-regulation of several PARPs following infection with murine hepatitis virus (MHV), a model coronavirus. Here we show that SARS-CoV-2 infection strikingly up-regulates MARylating PARPs and induces the expression of genes encoding enzymes for salvage NAD synthesis from nicotinamide (NAM) and nicotinamide riboside (NR), while down-regulating other NAD biosynthetic pathways. We show that overexpression of PARP10 is sufficient to depress cellular NAD and that the activities of the transcriptionally induced enzymes PARP7, PARP10, PARP12 and PARP14 are limited by cellular NAD and can be enhanced by pharmacological activation of NAD synthesis. We further demonstrate that infection with MHV induces a severe attack on host cell NAD+ and NADP+. Finally, we show that NAMPT activation, NAM, and NR dramatically decrease the replication of an MHV that is sensitive to PARP activity. These data suggest that the antiviral activities of noncanonical PARP isozyme activities are limited by the availability of NAD and that nutritional and pharmacological interventions to enhance NAD levels may boost innate immunity to coronaviruses. Full Article
lec Power for refugees: Electricity By www.chathamhouse.org Published On :: Mon, 16 May 2022 06:32:54 +0000 Power for refugees: Electricity Audio bhorton.drupal 16 May 2022 A new podcast special explores an often-overlooked aspect of humanitarian assistance: access to energy. From Afghanistan to Ukraine to Sudan - the world is grappling with the consequences that emerge when people are forced to flee from their homes. One factor that does not usually make the headlines is that many people displaced by conflict or natural disasters lack access to the energy services that are necessary for forging dignified lives and livelihoods. This first episode of a two-part Undercurrents special examines efforts to electrify refugee settlements in Ethiopia, Kenya and Rwanda, shedding light on what has worked and what has not. Approximately 94% of forcibly displaced people living in these settlements do not have access to electricity to heat or cool hospitals, schools and dwellings, or to light streets. Since 2015, Chatham House has been researching this issue and convening dialogues to spur action by humanitarians, energy companies and others. Our seminal Heat, Light and Power report provided the first ever comprehensive assessment of access to energy in refugee camps and urban areas with high numbers of refugees. This two-part podcast is part of the Renewable Energy for Refugees project. Led by Practical Action, the project provides access to affordable and sustainable sources of renewable energy, and improves the health, wellbeing and security of refugees and neighbouring communities. Full Article
lec Towards democracy in Sudan: Reflections on the transitional period By www.chathamhouse.org Published On :: Wed, 31 Aug 2022 09:27:13 +0000 Towards democracy in Sudan: Reflections on the transitional period 20 September 2022 — 2:00PM TO 4:00PM Anonymous (not verified) 31 August 2022 Online In this webinar, panellists discuss the key outcomes of the evaluation workshop and reflect on how the experience of the transition to date should inform the realization of Sudan’s democratic aspirations going forward. The military coup on 25 October 2021 halted Sudan’s transition to democracy and prospects for sustainable peace. Since then, members of the former regime have regained political influence, with many reinstated to senior positions. The coup has provoked a strong reaction from the country’s pro-democracy movement and youth-led resistance committees who have led continuous peaceful protests demanding civilian democratic transition, despite a brutal crackdown by state security forces. Those supportive of the coup have blamed the Forces of Freedom and Change (FFC), a wide coalition of pro-democracy political and civilian groups, for the mistakes of the transitional government. However, the country’s political, security and economic situation has sharply deteriorated since the military’s action, and the progress achieved by the transitional government has been reversed, leading to an accelerating economic crisis, increased food insecurity and political instability. The FFC, which played a key role in appointing the transitional government, has acknowledged its errors. In July 2022, it held a workshop in Khartoum, which was broadcast on social media, to evaluate its performance and identify lessons learned, in discussion with civil society actors and activists. In this webinar, leading pro-democracy movement figures and independent experts discuss the key outcomes of the evaluation workshop and reflect on how the experience of the transition to date should inform the realization of Sudan’s democratic aspirations going forward. This event is part of a Chatham House Africa programme project on supporting Sudan’s civilian-led democratic transition. Full Article
lec Reflections at 100: Empire and decolonization By www.chathamhouse.org Published On :: Tue, 01 Nov 2022 10:02:20 +0000 Reflections at 100: Empire and decolonization Audio MVieira 1 November 2022 How did leading academics and policymakers think about and impact imperialism and decolonization from the 1920s to 1970s? This episode of Reflections at 100, marking the centenary of International Affairs, looks at how empire and decolonization have been discussed in the journal. Isabel and Krisztina speak to Meera Sabaratnam about how thinkers and policymakers from the 1920s to 1970s understood both empire and then decolonization. Meera highlights four tensions present within the discussions, and how these may impact the international order today. Inderjeet Parmar delves deeper into the influence of Chatham House at the time and situates these discussions in the broader think-tank and global context. Reflections at 100 is a mini-series accompanying the journal’s centenary Archive Collections. The collections bring together articles from our archive which speak to the past, present, and future of current affairs issues. In each podcast episode we speak to editors and contributors to the collection and explore what the research tells us about policymaking today. Explore the Archive Collection, free to access until mid-November 2022, including Meera’s introduction: 100 years of empire and decolonization. International Affairs was started at Chatham House in 1922 to communicate research to members who could not attend in person. Over the past 100 years it has transformed into a journal that publishes academically rigorous and policy relevant research. It is published for Chatham House by Oxford University Press. Read the latest issue here. Full Article
lec A proteomic approach to understand the clinical significance of acute myeloid leukemia-derived extracellular vesicles reflecting essential characteristics of leukemia By www.mcponline.org Published On :: 2020-11-30 Ka-Won KangNov 30, 2020; 0:RA120.002169v1-mcp.RA120.002169Research Full Article
lec Imaging Mass Spectrometry and Lectin Analysis of N-linked Glycans in Carbohydrate Antigen Defined Pancreatic Cancer Tissues By www.mcponline.org Published On :: 2020-11-24 Colin T. McDowellNov 24, 2020; 0:RA120.002256v1-mcp.RA120.002256Research Full Article
lec Pluripotency of embryonic stem cells lacking clathrin-mediated endocytosis cannot be rescued by restoring cellular stiffness [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-04T00:06:06-08:00 Mouse embryonic stem cells (mESCs) display unique mechanical properties, including low cellular stiffness in contrast to differentiated cells, which are stiffer. We have previously shown that mESCs lacking the clathrin heavy chain (Cltc), an essential component for clathrin-mediated endocytosis (CME), display a loss of pluripotency and an enhanced expression of differentiation markers. However, it is not known whether physical properties such as cellular stiffness also change upon loss of Cltc, similar to what is seen in differentiated cells, and if so, how these altered properties specifically impact pluripotency. Using atomic force microscopy (AFM), we demonstrate that mESCs lacking Cltc display higher Young's modulus, indicative of greater cellular stiffness, compared with WT mESCs. The increase in stiffness was accompanied by the presence of actin stress fibers and accumulation of the inactive, phosphorylated, actin-binding protein cofilin. Treatment of Cltc knockdown mESCs with actin polymerization inhibitors resulted in a decrease in the Young's modulus to values similar to those obtained with WT mESCs. However, a rescue in the expression profile of pluripotency factors was not obtained. Additionally, whereas WT mouse embryonic fibroblasts could be reprogrammed to a state of pluripotency, this was inhibited in the absence of Cltc. This indicates that the presence of active CME is essential for the pluripotency of embryonic stem cells. Additionally, whereas physical properties may serve as a simple readout of the cellular state, they may not always faithfully recapitulate the underlying molecular fate. Full Article
lec Secretory galectin-3 induced by glucocorticoid stress triggers stemness exhaustion of hepatic progenitor cells [Signal Transduction] By www.jbc.org Published On :: 2020-12-04T00:06:06-08:00 Adult progenitor cell populations typically exist in a quiescent state within a controlled niche environment. However, various stresses or forms of damage can disrupt this state, which often leads to dysfunction and aging. We built a glucocorticoid (GC)-induced liver damage model of mice, found that GC stress induced liver damage, leading to consequences for progenitor cells expansion. However, the mechanisms by which niche factors cause progenitor cells proliferation are largely unknown. We demonstrate that, within the liver progenitor cells niche, Galectin-3 (Gal-3) is responsible for driving a subset of progenitor cells to break quiescence. We show that GC stress causes aging of the niche, which induces the up-regulation of Gal-3. The increased Gal-3 population increasingly interacts with the progenitor cell marker CD133, which triggers focal adhesion kinase (FAK)/AMP-activated kinase (AMPK) signaling. This results in the loss of quiescence and leads to the eventual stemness exhaustion of progenitor cells. Conversely, blocking Gal-3 with the inhibitor TD139 prevents the loss of stemness and improves liver function. These experiments identify a stress-dependent change in progenitor cell niche that directly influence liver progenitor cell quiescence and function. Full Article
lec Cell adhesion molecule IGPR-1 activates AMPK connecting cell adhesion to autophagy [Cell Biology] By www.jbc.org Published On :: 2020-12-04T00:06:05-08:00 Autophagy plays critical roles in the maintenance of endothelial cells in response to cellular stress caused by blood flow. There is growing evidence that both cell adhesion and cell detachment can modulate autophagy, but the mechanisms responsible for this regulation remain unclear. Immunoglobulin and proline-rich receptor-1 (IGPR-1) is a cell adhesion molecule that regulates angiogenesis and endothelial barrier function. In this study, using various biochemical and cellular assays, we demonstrate that IGPR-1 is activated by autophagy-inducing stimuli, such as amino acid starvation, nutrient deprivation, rapamycin, and lipopolysaccharide. Manipulating the IκB kinase β activity coupled with in vivo and in vitro kinase assays demonstrated that IκB kinase β is a key serine/threonine kinase activated by autophagy stimuli and that it catalyzes phosphorylation of IGPR-1 at Ser220. The subsequent activation of IGPR-1, in turn, stimulates phosphorylation of AMP-activated protein kinase, which leads to phosphorylation of the major pro-autophagy proteins ULK1 and Beclin-1 (BECN1), increased LC3-II levels, and accumulation of LC3 punctum. Thus, our data demonstrate that IGPR-1 is activated by autophagy-inducing stimuli and in response regulates autophagy, connecting cell adhesion to autophagy. These findings may have important significance for autophagy-driven pathologies such cardiovascular diseases and cancer and suggest that IGPR-1 may serve as a promising therapeutic target. Full Article
lec Site-specific contacts enable distinct modes of TRPV1 regulation by the potassium channel Kv{beta}1 subunit [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-11T00:06:21-08:00 Transient receptor potential vanilloid 1 (TRPV1) channel is a multimodal receptor that is responsible for nociceptive, thermal, and mechanical sensations. However, which biomolecular partners specifically interact with TRPV1 remains to be elucidated. Here, we used cDNA library screening of genes from mouse dorsal root ganglia combined with patch-clamp electrophysiology to identify the voltage-gated potassium channel auxiliary subunit Kvβ1 physically interacting with TRPV1 channel and regulating its function. The interaction was validated in situ using endogenous dorsal root ganglia neurons, as well as a recombinant expression model in HEK 293T cells. The presence of Kvβ1 enhanced the expression stability of TRPV1 channels on the plasma membrane and the nociceptive current density. Surprisingly, Kvβ1 interaction also shifted the temperature threshold for TRPV1 thermal activation. Using site-specific mapping, we further revealed that Kvβ1 interacted with the membrane-distal domain and membrane-proximal domain of TRPV1 to regulate its membrane expression and temperature-activation threshold, respectively. Our data therefore suggest that Kvβ1 is a key element in the TRPV1 signaling complex and exerts dual regulatory effects in a site-specific manner. Full Article
lec HIV-1 Gag release from yeast reveals ESCRT interaction with the Gag N-terminal protein region [Molecular Bases of Disease] By www.jbc.org Published On :: 2020-12-25T00:06:30-08:00 The HIV-1 protein Gag assembles at the plasma membrane and drives virion budding, assisted by the cellular endosomal complex required for transport (ESCRT) proteins. Two ESCRT proteins, TSG101 and ALIX, bind to the Gag C-terminal p6 peptide. TSG101 binding is important for efficient HIV-1 release, but how ESCRTs contribute to the budding process and how their activity is coordinated with Gag assembly is poorly understood. Yeast, allowing genetic manipulation that is not easily available in human cells, has been used to characterize the cellular ESCRT function. Previous work reported Gag budding from yeast spheroplasts, but Gag release was ESCRT-independent. We developed a yeast model for ESCRT-dependent Gag release. We combined yeast genetics and Gag mutational analysis with Gag-ESCRT binding studies and the characterization of Gag-plasma membrane binding and Gag release. With our system, we identified a previously unknown interaction between ESCRT proteins and the Gag N-terminal protein region. Mutations in the Gag-plasma membrane–binding matrix domain that reduced Gag-ESCRT binding increased Gag-plasma membrane binding and Gag release. ESCRT knockout mutants showed that the release enhancement was an ESCRT-dependent effect. Similarly, matrix mutation enhanced Gag release from human HEK293 cells. Release enhancement partly depended on ALIX binding to p6, although binding site mutation did not impair WT Gag release. Accordingly, the relative affinity for matrix compared with p6 in GST-pulldown experiments was higher for ALIX than for TSG101. We suggest that a transient matrix-ESCRT interaction is replaced when Gag binds to the plasma membrane. This step may activate ESCRT proteins and thereby coordinate ESCRT function with virion assembly. Full Article
lec A kinetic dissection of the fast and superprocessive kinesin-3 KIF1A reveals a predominant one-head-bound state during its chemomechanical cycle [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-25T00:06:30-08:00 The kinesin-3 family contains the fastest and most processive motors of the three neuronal transport kinesin families, yet the sequence of states and rates of kinetic transitions that comprise the chemomechanical cycle and give rise to their unique properties are poorly understood. We used stopped-flow fluorescence spectroscopy and single-molecule motility assays to delineate the chemomechanical cycle of the kinesin-3, KIF1A. Our bacterially expressed KIF1A construct, dimerized via a kinesin-1 coiled-coil, exhibits fast velocity and superprocessivity behavior similar to WT KIF1A. We established that the KIF1A forward step is triggered by hydrolysis of ATP and not by ATP binding, meaning that KIF1A follows the same chemomechanical cycle as established for kinesin-1 and -2. The ATP-triggered half-site release rate of KIF1A was similar to the stepping rate, indicating that during stepping, rear-head detachment is an order of magnitude faster than in kinesin-1 and kinesin-2. Thus, KIF1A spends the majority of its hydrolysis cycle in a one-head-bound state. Both the ADP off-rate and the ATP on-rate at physiological ATP concentration were fast, eliminating these steps as possible rate-limiting transitions. Based on the measured run length and the relatively slow off-rate in ADP, we conclude that attachment of the tethered head is the rate-limiting transition in the KIF1A stepping cycle. Thus, KIF1A's activity can be explained by a fast rear-head detachment rate, a rate-limiting step of tethered-head attachment that follows ATP hydrolysis, and a relatively strong electrostatic interaction with the microtubule in the weakly bound post-hydrolysis state. Full Article
lec PLRP2 selectively localizes synaptic membrane proteins via acyl-chain remodeling of phospholipids By www.jlr.org Published On :: 2020-12-01 Hideaki KugeDec 1, 2020; 61:1747-1763Research Articles Full Article
lec Problem Notes for SAS®9 - 66539: A new calculated variable that you create in the Edit Value dialog box is not available for selection in SAS Customer Intelligence Studio By Published On :: Tue, 1 Sep 2020 13:44:23 EST In SAS Customer Intelligence Studio, you can choose to create a new calculated variable in the Edit Value dialog box when you populate a treatment custom detail. Following creation of the new calculated Full Article CAMPAIGNSDO+SAS+Customer+Intelligence+St
lec Dietary sphinganine is selectively assimilated by members of the mammalian gut microbiome [Research Articles] By www.jlr.org Published On :: 2020-07-09T14:33:39-07:00 Functions of the gut microbiome have a growing number of implications for host metabolic health, with diet being one of the most significant influences on microbiome composition. Compelling links between diet and the gut microbiome suggest key roles for various macronutrients, including lipids, yet how individual classes of dietary lipids interact with the microbiome remains largely unknown. Sphingolipids are bioactive components of most foods and are also produced by prominent gut microbes. This makes sphingolipids intriguing candidates for shaping diet–microbiome interactions. Here, we used a click chemistry–based approach to track the incorporation of bioorthogonal dietary omega-alkynyl sphinganine (sphinganine alkyne [SAA]) into the murine gut microbial community (Bioorthogonal labeling). We identified microbial and SAA-specific metabolic products through fluorescence-based sorting of SAA-containing microbes (Sort), 16S rRNA gene sequencing to identify the sphingolipid-interacting microbes (Seq), and comparative metabolomics to identify products of SAA assimilation by the microbiome (Spec). Together, this approach, termed Bioorthogonal labeling-Sort-Seq-Spec (BOSSS), revealed that SAA assimilation is nearly exclusively performed by gut Bacteroides, indicating that sphingolipid-producing bacteria play a major role in processing dietary sphinganine. Comparative metabolomics of cecal microbiota from SAA-treated mice revealed conversion of SAA to a suite of dihydroceramides, consistent with metabolic activities of Bacteroides and Bifidobacterium. Additionally, other sphingolipid-interacting microbes were identified with a focus on an uncharacterized ability of Bacteroides and Bifidobacterium to metabolize dietary sphingolipids. We conclude that BOSSS provides a platform to study the flux of virtually any alkyne-labeled metabolite in diet–microbiome interactions. Full Article
lec PLRP2 selectively localizes synaptic membrane proteins via acyl-chain remodeling of phospholipids [Research Articles] By www.jlr.org Published On :: 2020-12-01T00:05:39-08:00 The plasma membrane of neurons consists of distinct domains, each of which carries specialized functions and a characteristic set of membrane proteins. While this compartmentalized membrane organization is essential for neuronal functions, it remains controversial how neurons establish these domains on the laterally fluid membrane. Here, using immunostaining, lipid-MS analysis and gene ablation with the CRISPR/Cas9 system, we report that the pancreatic lipase-related protein 2 (PLRP2), a phospholipase A1 (PLA1), is a key organizer of membrane protein localization at the neurite tips of PC12 cells. PLRP2 produced local distribution of 1-oleoyl-2-palmitoyl-PC at these sites through acyl-chain remodeling of membrane phospholipids. The resulting lipid domain assembled the syntaxin 4 (Stx4) protein within itself by selectively interacting with the transmembrane domain of Stx4. The localized Stx4, in turn, facilitated the fusion of transport vesicles that contained the dopamine transporter with the domain of the plasma membrane, which led to the localized distribution of the transporter to that domain. These results revealed the pivotal roles of PLA1, specifically PLRP2, in the formation of functional domains in the plasma membrane of neurons. In addition, our results suggest a mode of membrane organization in which the local acyl-chain remodeling of membrane phospholipids controls the selective localization of membrane proteins by regulating both lipid-protein interactions and the fusion of transport vesicles to the lipid domain. Full Article
lec Molecular Dynamics Simulation-assisted Ionic Liquid Screening for Deep Coverage Proteome Analysis [Technological Innovation and Resources] By www.mcponline.org Published On :: 2020-10-01T00:05:25-07:00 In-depth coverage of proteomic analysis could enhance our understanding to the mechanism of the protein functions. Unfortunately, many highly hydrophobic proteins and low-abundance proteins, which play critical roles in signaling networks, are easily lost during sample preparation, mainly attributed to the fact that very few extractants can simultaneously satisfy the requirements on strong solubilizing ability to membrane proteins and good enzyme compatibility. Thus, it is urgent to screen out ideal extractant from the huge compound libraries in a fast and effective way. Herein, by investigating the interior mechanism of extractants on the membrane proteins solubilization and trypsin compatibility, a molecular dynamics simulation system was established as complement to the experimental procedure to narrow down the scope of candidates for proteomics analysis. The simulation data shows that the van der Waals interaction between cation group of ionic liquid and membrane protein is the dominant factor in determining protein solubilization. In combination with the experimental data, 1-dodecyl-3-methylimidazolium chloride (C12Im-Cl) is on the shortlist for the suitable candidates from comprehensive aspects. Inspired by the advantages of C12Im-Cl, an ionic liquid-based filter-aided sample preparation (i-FASP) method was developed. Using this strategy, over 3,300 proteins were confidently identified from 103 HeLa cells (~100 ng proteins) in a single run, an improvement of 53% over the conventional FASP method. Then the i-FASP method was further successfully applied to the label-free relative quantitation of human liver cancer and para-carcinoma tissues with obviously improved accuracy, reproducibility and coverage than the commonly used urea-based FASP method. The above results demonstrated that the i-FASP method could be performed as a versatile tool for the in-depth coverage proteomic analysis of biological samples. Full Article
lec Molecular Profiling of Innate Immune Response Mechanisms in Ventilator-associated Pneumonia [Research] By www.mcponline.org Published On :: 2020-10-01T00:05:25-07:00 Ventilator-associated pneumonia (VAP) is a common hospital-acquired infection, leading to high morbidity and mortality. Currently, bronchoalveolar lavage (BAL) is used in hospitals for VAP diagnosis and guiding treatment options. Although BAL collection procedures are invasive, alternatives such as endotracheal aspirates (ETA) may be of diagnostic value, however, their use has not been thoroughly explored. Longitudinal ETA and BAL were collected from 16 intubated patients up to 15 days, of which 11 developed VAP. We conducted a comprehensive LC–MS/MS based proteome and metabolome characterization of longitudinal ETA and BAL to detect host and pathogen responses to VAP infection. We discovered a diverse ETA proteome of the upper airways reflective of a rich and dynamic host-microbe interface. Prior to VAP diagnosis by microbial cultures from BAL, patient ETA presented characteristic signatures of reactive oxygen species and neutrophil degranulation, indicative of neutrophil mediated pathogen processing as a key host response to the VAP infection. Along with an increase in amino acids, this is suggestive of extracellular membrane degradation resulting from proteolytic activity of neutrophil proteases. The metaproteome approach successfully allowed simultaneous detection of pathogen peptides in patients' ETA, which may have potential use in diagnosis. Our findings suggest that ETA may facilitate early mechanistic insights into host-pathogen interactions associated with VAP infection and therefore provide its diagnosis and treatment. Full Article
lec Benefits of Collisional Cross Section Assisted Precursor Selection (caps-PASEF) for Cross-linking Mass Spectrometry [Research] By www.mcponline.org Published On :: 2020-10-01T00:05:25-07:00 Ion mobility separates molecules in the gas-phase based on their physico-chemical properties, providing information about their size as collisional cross-sections. The timsTOF Pro combines trapped ion mobility with a quadrupole, collision cell and a TOF mass analyzer, to probe ions at high speeds with on-the-fly fragmentation. Here, we show that on this platform ion mobility is beneficial for cross-linking MS (XL-MS). Cross-linking reagents covalently link amino acids in proximity, resulting in peptide pairs after proteolytic digestion. These cross-linked peptides are typically present at low abundance in the background of normal peptides, which can partially be resolved by using enrichable cross-linking reagents. Even with a very efficient enrichable cross-linking reagent, like PhoX, the analysis of cross-linked peptides is still hampered by the co-enrichment of peptides connected to a partially hydrolyzed reagent – termed mono-linked peptides. For experiments aiming to uncover protein-protein interactions these are unwanted byproducts. Here, we demonstrate that gas-phase separation by ion mobility enables the separation of mono-linked peptides from cross-linked peptide pairs. A clear partition between these two classes is observed at a CCS of 500 Å2 and a monoisotopic mass of 2 kDa, which can be used for targeted precursor selection. A total of 50-70% of the mono-linked peptides are prevented from sequencing, allowing the analysis to focus on sequencing the relevant cross-linked peptide pairs. In applications to both simple proteins and protein mixtures and a complete highly complex lysate this approach provides a substantial increase in detected cross-linked peptides. Full Article
lec Examining and Fine-tuning the Selection of Glycan Compositions with GlyConnect Compozitor [Research] By www.mcponline.org Published On :: 2020-10-01T00:05:25-07:00 A key point in achieving accurate intact glycopeptide identification is the definition of the glycan composition file that is used to match experimental with theoretical masses by a glycoproteomics search engine. At present, these files are mainly built from searching the literature and/or querying data sources focused on posttranslational modifications. Most glycoproteomics search engines include a default composition file that is readily used when processing MS data. We introduce here a glycan composition visualizing and comparative tool associated with the GlyConnect database and called GlyConnect Compozitor. It offers a web interface through which the database can be queried to bring out contextual information relative to a set of glycan compositions. The tool takes advantage of compositions being related to one another through shared monosaccharide counts and outputs interactive graphs summarizing information searched in the database. These results provide a guide for selecting or deselecting compositions in a file in order to reflect the context of a study as closely as possible. They also confirm the consistency of a set of compositions based on the content of the GlyConnect database. As part of the tool collection of the Glycomics@ExPASy initiative, Compozitor is hosted at https://glyconnect.expasy.org/compozitor/ where it can be run as a web application. It is also directly accessible from the GlyConnect database. Full Article
lec Principles of electrospray ionization [Biophysical Methods] By www.mcponline.org Published On :: 2011-05-19T14:15:35-07:00 Electrospray ionization is today the most widely used ionization technique in chemical and bio-chemical analysis. Interfaced with a mass spectrometer it allows to investigate the molecular composition of liquid samples. With electrospray a large variety of chemical substances can be ionized. There is no limitation in mass which enables even the investigation of large non-covalent protein complexes. Its high ionization efficiency profoundly changed bio-molecular sciences because proteins can be identified and quantified on trace amounts in a high throughput fashion. This review article focusses mainly on the exploration of the underlying ionization mechanism. Some ionization characteristics are discussed which are related to this mechanism. Typical spectra of peptides, proteins and non-covalent complexes are shown and the quantitative character of spectra is highlighted. Finally the possibilities and limitations in measuring the association constant of bivalent non-covalent complexes are described. Full Article
lec Integrated glycoproteomics identifies a role of N-glycosylation and galectin-1 on myogenesis and muscle development [Research] By www.mcponline.org Published On :: 2020-09-16T09:35:59-07:00 Many cell surface and secreted proteins are modified by the covalent addition of glycans that play an important role in the development of multicellular organisms. These glycan modifications enable communication between cells and the extracellular matrix via interactions with specific glycan-binding lectins and the regulation of receptor-mediated signaling. Aberrant protein glycosylation has been associated with the development of several muscular diseases suggesting essential glycan- and lectin-mediated functions in myogenesis and muscle development but our molecular understanding of the precise glycans, catalytic enzymes and lectins involved remain only partially understood. Here, we quantified dynamic remodeling of the membrane-associated proteome during a time-course of myogenesis in cell culture. We observed wide-spread changes in the abundance of several important lectins and enzymes facilitating glycan biosynthesis. Glycomics-based quantification of released N-linked glycans confirmed remodeling of the glycome consistent with the regulation of glycosyltransferases and glycosidases responsible for their formation including a previously unknown di-galactose-to-sialic acid switch supporting a functional role of these glycoepitopes in myogenesis. Furthermore, dynamic quantitative glycoproteomic analysis with multiplexed stable isotope labelling and analysis of enriched glycopeptides with multiple fragmentation approaches identified glycoproteins modified by these regulated glycans including several integrins and growth factor receptors. Myogenesis was also associated with the regulation of several lectins most notably the up-regulation of galectin-1 (LGALS1). CRISPR/Cas9-mediated deletion of Lgals1 inhibited differentiation and myotube formation suggesting an early functional role of galectin-1 in the myogenic program. Importantly, similar changes in N-glycosylation and the up-regulation of galectin-1 during postnatal skeletal muscle development were observed in mice. Treatment of new-born mice with recombinant adeno-associated viruses to overexpress galectin-1 in the musculature resulted in enhanced muscle mass. Our data form a valuable resource to further understand the glycobiology of myogenesis and will aid the development of intervention strategies to promote healthy muscle development or regeneration. Full Article
lec Imaging Mass Spectrometry and Lectin Analysis of N-linked Glycans in Carbohydrate Antigen Defined Pancreatic Cancer Tissues [Research] By www.mcponline.org Published On :: 2020-11-24T13:35:19-08:00 The early detection of pancreatic ductal adenocarcinoma is a complex clinical obstacle yet is key to improving the overall likelihood of patient survival. Current and prospective carbohydrate biomarkers CA19-9 and sTRA are sufficient for surveilling disease progression yet are not approved for delineating PDAC from other abdominal cancers and non-cancerous pancreatic pathologies. To further understand these glycan epitopes, an imaging mass spectrometry approach was utilized to assess the N-glycome of the human pancreas and pancreatic cancer in a cohort of PDAC patients represented by tissue microarrays and whole tissue sections. Orthogonally, these same tissues were characterized by multi-round immunofluorescence which defined expression of CA19-9 and sTRA as well as other lectins towards carbohydrate epitopes with the potential to improve PDAC diagnosis. These analyses revealed distinct differences not only in N-glycan spatial localization across both healthy and diseased tissues but importantly between different biomarker-categorized tissue samples. Unique sulfated bi-antennary N-glycans were detected specifically in normal pancreatic islets. N-glycans from CA19-9 expressing tissues tended to be bi-, tri- and tetra-antennary structures with both core and terminal fucose residues and bisecting N-acetylglucosamines. These N-glycans were detected in less abundance in sTRA-expressing tumor tissues, which favored tri- and tetra-antennary structures with polylactosamine extensions. Increased sialylation of N-glycans was detected in all tumor tissues. A candidate new biomarker derived from IMS was further explored by fluorescence staining with selected lectins on the same tissues. The lectins confirmed the expression of the epitopes in cancer cells and revealed different tumor-associated staining patterns between glycans with bisecting GlcNAc and those with terminal GlcNAc. Thus, the combination of lectin-IHC and IMS techniques produces more complete information for tumor classification than the individual analyses alone. These findings potentiate the development of early assessment technologies to rapidly and specifically identify PDAC in the clinic that may directly impact patient outcomes. Full Article
lec A proteomic approach to understand the clinical significance of acute myeloid leukemia-derived extracellular vesicles reflecting essential characteristics of leukemia [Research] By www.mcponline.org Published On :: 2020-11-30T16:35:18-08:00 Extracellular vesicle (EV) proteins from acute myeloid leukemia (AML) cell lines were analyzed using mass spectrometry. The analyses identified 2450 proteins, including 461 differentially expressed proteins (290 upregulated and 171 downregulated). CD53 and CD47 were upregulated and were selected as candidate biomarkers. The association between survival of patients with AML and the expression levels of CD53 and CD47 at diagnosis was analyzed using mRNA expression data from The Cancer Genome Atlas database. Patients with higher expression levels showed significantly inferior survival than those with lower expression levels. Enzyme-linked immunosorbent assay results of the expression levels of CD53 and CD47 from EVs in the bone marrow of patients with AML at diagnosis and at the time of complete remission with induction chemotherapy revealed that patients with downregulated CD53 and CD47 expression appeared to relapse less frequently. Network model analysis of EV proteins revealed several upregulated kinases, including LYN, CSNK2A1, SYK, CSK, and PTK2B. The potential cytotoxicity of several clinically applicable drugs that inhibit these kinases was tested in AML cell lines. The drugs lowered the viability of AML cells. The collective data suggest that AML-derived EVs could reflect essential leukemia biology. Full Article
lec Low molecular weight heparin does not prevent VTE after knee arthroscopy, studies show By www.bmj.com Published On :: Tuesday, December 6, 2016 - 06:31 Full Article
lec Zimbabwe Ahead of the Elections: Political and Economic Challenges By www.chathamhouse.org Published On :: Thu, 03 May 2018 10:00:00 +0000 Zimbabwe Ahead of the Elections: Political and Economic Challenges 8 May 2018 — 10:00AM TO 11:00AM Anonymous (not verified) 3 May 2018 Chatham House, London The upcoming elections in Zimbabwe will be the first since 2000 in which former president Robert Mugabe and long-time opposition leader Morgan Tsvangirai are not on the ballot paper. A key electoral issue for many voters will be the economy: recent years have been marked by high unemployment rates, chronic cash shortages and mounting public debt. Although this has traditionally been a strong campaigning issue for the opposition, President Emmerson Mnangagwa has fast-tracked comprehensive economic reforms.At this event, Nelson Chamisa, MDC Alliance presidential candidate, will discuss his efforts to build a united opposition coalition with a strong message, the steps needed to ensure a free and fair election can take place, and the role that international partners can play in Zimbabwe’s democratic process. Full Article