trans Analysis of the Human Tissue-specific Expression by Genome-wide Integration of Transcriptomics and Antibody-based Proteomics By www.mcponline.org Published On :: 2014-02-01 Linn FagerbergFeb 1, 2014; 13:397-406Research Full Article
trans Enhanced enzyme kinetics of reverse transcriptase variants cloned from animals infected with SIVmac239 lacking viral protein X [Microbiology] By www.jbc.org Published On :: 2020-12-11T00:06:20-08:00 HIV Type 1 (HIV-1) and simian immunodeficiency virus (SIV) display differential replication kinetics in macrophages. This is because high expression levels of the active host deoxynucleotide triphosphohydrolase sterile α motif domain and histidine-aspartate domain–containing protein 1 (SAMHD1) deplete intracellular dNTPs, which restrict HIV-1 reverse transcription, and result in a restrictive infection in this myeloid cell type. Some SIVs overcome SAMHD1 restriction using viral protein X (Vpx), a viral accessory protein that induces proteasomal degradation of SAMHD1, increasing cellular dNTP concentrations and enabling efficient proviral DNA synthesis. We previously reported that SAMHD1-noncounteracting lentiviruses may have evolved to harbor RT proteins that efficiently polymerize DNA, even at low dNTP concentrations, to circumvent SAMHD1 restriction. Here we investigated whether RTs from SIVmac239 virus lacking a Vpx protein evolve during in vivo infection to more efficiently synthesize DNA at the low dNTP concentrations found in macrophages. Sequence analysis of RTs cloned from Vpx (+) and Vpx (−) SIVmac239–infected animals revealed that Vpx (−) RTs contained more extensive mutations than Vpx (+) RTs. Although the amino acid substitutions were dispersed indiscriminately across the protein, steady-state and pre-steady-state analysis demonstrated that selected SIVmac239 Vpx (−) RTs are characterized by higher catalytic efficiency and incorporation efficiency values than RTs cloned from SIVmac239 Vpx (+) infections. Overall, this study supports the possibility that the loss of Vpx may generate in vivo SIVmac239 RT variants that can counteract the limited availability of dNTP substrate in macrophages. Full Article
trans Resetting Africa-Europe relations: From self-deception to economic transformation By www.chathamhouse.org Published On :: Wed, 16 Oct 2024 10:47:14 +0000 Resetting Africa-Europe relations: From self-deception to economic transformation 28 October 2024 — 12:30PM TO 1:30PM Anonymous (not verified) 16 October 2024 Chatham House and Online Experts assess the status of ties between Africa and Europe in a rapidly changing world, launching a new book that explores how misconceptions in the relationship can harm Africa’s economic agenda. The relationship between Africa and Europe has long been shaped by colonial legacies, power imbalance and shifting geopolitical interests.Almost three years on from the last EU-AU summit in Brussels in February 2022, questions remain over the delivery of headline commitments under the continent-to-continent partnership – ranging from the EU’s Global Gateway infrastructure strategy to wider climate financing promises.As Africa seeks to strengthen its standing on the global stage, marked by the African Union’s upcoming debut at the G20 summit in November, a critical reassessment of these dynamics is needed to examine whether the continent’s relationship with Europe can overcome stigmatized narratives in search of genuine economic benefit.At this event, which launches a new book by Professor Carlos Lopes: The Self-Deception Trap: Exploring the Economic Dimensions of Charity Dependency within Africa-Europe Relations, speakers assess the prospects for a transformative shift towards a more equitable and mutually beneficial Africa-Europe partnership. Full Article
trans Global Trade Landscape Series 2018: Technological Transitions and the Future of Global Trade By f1.media.brightcove.com Published On :: Wed, 19 Sep 2018 00:00:00 +0100 Full Article
trans A Vision for the Future of the Transatlantic Relationship By f1.media.brightcove.com Published On :: Wed, 10 Oct 2018 00:00:00 +0100 Full Article
trans Frozen Conflict: The Transnistrian Dispute By f1.media.brightcove.com Published On :: Tue, 06 Nov 2018 00:00:00 +0000 Full Article
trans The Transatlantic Relationship: Challenges and Opportunities By f1.media.brightcove.com Published On :: Wed, 30 Jan 2019 00:00:00 +0000 Full Article
trans Preparing for Digital Transformation By f1.media.brightcove.com Published On :: Wed, 10 Jul 2019 00:00:00 +0100 Full Article
trans Kazakhstan: Tested by Transition By f1.media.brightcove.com Published On :: Thu, 28 Nov 2019 00:00:00 +0000 Full Article
trans Thematic review series: Lipid Posttranslational Modifications. Protein palmitoylation by a family of DHHC protein S-acyltransferases By www.jlr.org Published On :: 2006-06-01 David A. MitchellJun 1, 2006; 47:1118-1127Thematic Reviews Full Article
trans Intracellular cholesterol transport By www.jlr.org Published On :: 1997-08-01 CJ FieldingAug 1, 1997; 38:1503-1521Reviews Full Article
trans Microsomal triglyceride transfer protein and its role in apoB-lipoprotein assembly By www.jlr.org Published On :: 2003-01-01 M. Mahmood HussainJan 1, 2003; 44:22-32Reviews Full Article
trans The human ATP-binding cassette (ABC) transporter superfamily By www.jlr.org Published On :: 2001-07-01 Michael DeanJul 1, 2001; 42:1007-1017Thematic Reviews Full Article
trans Plasma cholesteryl ester transfer protein By www.jlr.org Published On :: 1993-08-01 AR TallAug 1, 1993; 34:1255-1274Reviews Full Article
trans Direct transesterification of all classes of lipids in a one-step reaction By www.jlr.org Published On :: 1986-01-01 G LepageJan 1, 1986; 27:114-120Articles Full Article
trans Bile salt biotransformations by human intestinal bacteria By www.jlr.org Published On :: 2006-02-01 Jason M. RidlonFeb 1, 2006; 47:241-259Reviews Full Article
trans The plasma lecithin:cholesterol acyltransferase reaction By www.jlr.org Published On :: 1968-03-01 John A. GlomsetMar 1, 1968; 9:155-167Reviews Full Article
trans Molecular physiology of reverse cholesterol transport By www.jlr.org Published On :: 1995-02-01 CJ FieldingFeb 1, 1995; 36:211-228Reviews Full Article
trans Strengthening Transatlantic Digital Cooperation By www.chathamhouse.org Published On :: Fri, 02 Jul 2021 10:24:46 +0000 Strengthening Transatlantic Digital Cooperation This project explores opportunities for increased cooperation via the transatlantic ‘tech triangle’ of the European Union, United Kingdom and United States. jon.wallace 2 July 2021 This project serves as a cross-house initiative (involving the US and Americas Programme, the Europe Programme, the International Law Programme, the Digital Society Initiative and the International Security Programme). Its long-term goal is to support the emergence of a global vision for technology governance: a vision drawing on democratic values and human rights principles. The project aims to extend the application of these principles to the digital space. The first phase centres around a knowledge-exchange series, with findings and recommendations disseminated around targeted multilateral events such as G7, the United Nations General Assembly and the 2021 Internet Governance Forum. Building on this exchange, the second phase will shift its focus to other democratic states and broaden digital cooperation dialogues from like-minded countries in the OECD, in addition to non-Western democracies and under-represented stakeholders from developing countries. Full Article
trans Transatlantic Tech Talks: Cooperation or sovereignty? By www.chathamhouse.org Published On :: Wed, 15 Dec 2021 11:45:06 +0000 Transatlantic Tech Talks: Cooperation or sovereignty? Audio bhorton.drupal 15 December 2021 A new mini-series from Undercurrents explores international cooperation on regulating the tech sector. Transatlantic Tech Talks is a three part mini-series on the Undercurrents podcast feed, produced with the support of Microsoft, which explores the state of international cooperation on digital governance between the United States, the UK and Europe. As technological innovation accelerates, and new digital tools and business models arise, governments are working to develop a framework of regulations to safeguard the rights and interests of their citizens. Not all stakeholders agree, however, on the best way to achieve this. While some advocate a ‘digital cooperation’ approach based on transparency and data-sharing, others are more concerned with maintaining ‘digital sovereignty’. In the first episode of this series, Ben is joined by Casper Klynge, Harriet Moynihan and Marianne Schneider-Petsinger, who set out the broad context for these debates. They assess where the major government, private sector and civil society actors stand on the question of digital governance, and how they are approaching the international negotiations. Full Article
trans Genetic evidence for partial redundancy between the arginine methyltransferases CARM1 and PRMT6 [Signal Transduction] By www.jbc.org Published On :: 2020-12-11T00:06:20-08:00 CARM1 is a protein arginine methyltransferase (PRMT) that acts as a coactivator in a number of transcriptional programs. CARM1 orchestrates this coactivator activity in part by depositing the H3R17me2a histone mark in the vicinity of gene promoters that it regulates. However, the gross levels of H3R17me2a in CARM1 KO mice did not significantly decrease, indicating that other PRMT(s) may compensate for this loss. We thus performed a screen of type I PRMTs, which revealed that PRMT6 can also deposit the H3R17me2a mark in vitro. CARM1 knockout mice are perinatally lethal and display a reduced fetal size, whereas PRMT6 null mice are viable, which permits the generation of double knockouts. Embryos that are null for both CARM1 and PRMT6 are noticeably smaller than CARM1 null embryos, providing in vivo evidence of redundancy. Mouse embryonic fibroblasts (MEFs) from the double knockout embryos display an absence of the H3R17me2a mark during mitosis and increased signs of DNA damage. Moreover, using the combination of CARM1 and PRMT6 inhibitors suppresses the cell proliferation of WT MEFs, suggesting a synergistic effect between CARM1 and PRMT6 inhibitions. These studies provide direct evidence that PRMT6 also deposits the H3R17me2a mark and acts redundantly with CARM1. Full Article
trans Hepatocyte nuclear factor 1{beta} suppresses canonical Wnt signaling through transcriptional repression of lymphoid enhancer-binding factor 1 [Molecular Bases of Disease] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Hepatocyte nuclear factor-1β (HNF-1β) is a tissue-specific transcription factor that is required for normal kidney development and renal epithelial differentiation. Mutations of HNF-1β produce congenital kidney abnormalities and inherited renal tubulopathies. Here, we show that ablation of HNF-1β in mIMCD3 renal epithelial cells results in activation of β-catenin and increased expression of lymphoid enhancer–binding factor 1 (LEF1), a downstream effector in the canonical Wnt signaling pathway. Increased expression and nuclear localization of LEF1 are also observed in cystic kidneys from Hnf1b mutant mice. Expression of dominant-negative mutant HNF-1β in mIMCD3 cells produces hyperresponsiveness to exogenous Wnt ligands, which is inhibited by siRNA-mediated knockdown of Lef1. WT HNF-1β binds to two evolutionarily conserved sites located 94 and 30 kb from the mouse Lef1 promoter. Ablation of HNF-1β decreases H3K27 trimethylation repressive marks and increases β-catenin occupancy at a site 4 kb upstream to Lef1. Mechanistically, WT HNF-1β recruits the polycomb-repressive complex 2 that catalyzes H3K27 trimethylation. Deletion of the β-catenin–binding domain of LEF1 in HNF-1β–deficient cells abolishes the increase in Lef1 transcription and decreases the expression of downstream Wnt target genes. The canonical Wnt target gene, Axin2, is also a direct transcriptional target of HNF-1β through binding to negative regulatory elements in the gene promoter. These findings demonstrate that HNF-1β regulates canonical Wnt target genes through long-range effects on histone methylation at Wnt enhancers and reveal a new mode of active transcriptional repression by HNF-1β. Full Article
trans Inhibition of the SUV4-20 H1 histone methyltransferase increases frataxin expression in Friedreich's ataxia patient cells [Gene Regulation] By www.jbc.org Published On :: 2020-12-25T00:06:30-08:00 The molecular mechanisms of reduced frataxin (FXN) expression in Friedreich's ataxia (FRDA) are linked to epigenetic modification of the FXN locus caused by the disease-associated GAA expansion. Here, we identify that SUV4-20 histone methyltransferases, specifically SUV4-20 H1, play an important role in the regulation of FXN expression and represent a novel therapeutic target. Using a human FXN–GAA–Luciferase repeat expansion genomic DNA reporter model of FRDA, we screened the Structural Genomics Consortium epigenetic probe collection. We found that pharmacological inhibition of the SUV4-20 methyltransferases by the tool compound A-196 increased the expression of FXN by ∼1.5-fold in the reporter cell line. In several FRDA cell lines and patient-derived primary peripheral blood mononuclear cells, A-196 increased FXN expression by up to 2-fold, an effect not seen in WT cells. SUV4-20 inhibition was accompanied by a reduction in H4K20me2 and H4K20me3 and an increase in H4K20me1, but only modest (1.4–7.8%) perturbation in genome-wide expression was observed. Finally, based on the structural activity relationship and crystal structure of A-196, novel small molecule A-196 analogs were synthesized and shown to give a 20-fold increase in potency for increasing FXN expression. Overall, our results suggest that histone methylation is important in the regulation of FXN expression and highlight SUV4-20 H1 as a potential novel therapeutic target for FRDA. Full Article
trans Intransigent Netanyahu brings Groundhog Day for Israel By www.chathamhouse.org Published On :: Fri, 06 Mar 2020 16:29:53 +0000 Source Arab News URL https://www.arabnews.com/node/1634966 Release date 29 February 2020 Expert Professor Yossi Mekelberg In the news type Op-ed Hide date on homepage Full Article
trans Agri-food transitions and the “green public sphere” in China By www.chathamhouse.org Published On :: Thu, 17 Sep 2020 15:31:14 +0000 Source Science Direct URL https://www.sciencedirect.com/science/article/abs/pii/S2210422418300121 Release date 01 March 2019 Expert Dr Sam Geall In the news type Op-ed Hide date on homepage Full Article
trans Coupled intra- and interdomain dynamics support domain cross-talk in Pin1 [Signal Transduction] By www.jbc.org Published On :: 2020-12-04T00:06:05-08:00 The functional mechanisms of multidomain proteins often exploit interdomain interactions, or “cross-talk.” An example is human Pin1, an essential mitotic regulator consisting of a Trp–Trp (WW) domain flexibly tethered to a peptidyl-prolyl isomerase (PPIase) domain, resulting in interdomain interactions important for Pin1 function. Substrate binding to the WW domain alters its transient contacts with the PPIase domain via means that are only partially understood. Accordingly, we have investigated Pin1 interdomain interactions using NMR paramagnetic relaxation enhancement (PRE) and molecular dynamics (MD) simulations. The PREs show that apo-Pin1 samples interdomain contacts beyond the range suggested by previous structural studies. They further show that substrate binding to the WW domain simultaneously alters interdomain separation and the internal conformation of the WW domain. A 4.5-μs all-atom MD simulation of apo-Pin1 suggests that the fluctuations of interdomain distances are correlated with fluctuations of WW domain interresidue contacts involved in substrate binding. Thus, the interdomain/WW domain conformations sampled by apo-Pin1 may already include a range of conformations appropriate for binding Pin1's numerous substrates. The proposed coupling between intra-/interdomain conformational fluctuations is a consequence of the dynamic modular architecture of Pin1. Such modular architecture is common among cell-cycle proteins; thus, the WW–PPIase domain cross-talk mechanisms of Pin1 may be relevant for their mechanisms as well. Full Article
trans A translation of “classification of four-vectors of an 8-dimensional space”, by Antonyan, L. V., with an appendix by the translator By www.ams.org Published On :: Tue, 01 Oct 2024 14:21 EDT L. Oeding Trans. Moscow Math. Soc. 83 (), 227-250. Abstract, references and article information Full Article
trans Fossil Fuels Expert Roundtable: How Solar is Shaping the Energy Transition By www.chathamhouse.org Published On :: Tue, 22 May 2018 14:00:00 +0000 Fossil Fuels Expert Roundtable: How Solar is Shaping the Energy Transition 1 June 2018 — 9:00AM TO 10:30AM Anonymous (not verified) 22 May 2018 Chatham House, London As global temperatures rise and extreme weather events multiply, doubts over the reality and imminence of climate change have dissipated. Despite this, there is a clear lack of urgency by governments to the approaching crisis. At this event, Prem Shankar Jha will set out what he believes are the three main causes for this inaction.Furthermore, he will argue that catastrophic climate change is imminent, but even if it weren’t, the risk is too great to ignore. Only a complete shift from fossil fuels by 2070 at the latest would provide reasonable certainty of avoiding irreversible consequences. This transition is not only possible but the technologies to enable it were harnessed four to nine decades ago – and all of them draw their primary energy from the sun. These technologies are already capable of delivering electricity, transport fuels, and petrochemicals at prices that are competitive with the current delivered cost of electricity in the US and Western Europe. So what is holding up the energy shift?Attendance at this event is by invitation only. Full Article
trans The Impact of Brexit on Energy Transformation in the UK and EU By www.chathamhouse.org Published On :: Mon, 03 Dec 2018 14:20:01 +0000 The Impact of Brexit on Energy Transformation in the UK and EU 28 March 2019 — 8:15AM TO 9:45AM Anonymous (not verified) 3 December 2018 Chatham House | 10 St James's Square | London | SW1Y 4LE The UK’s decision to leave the EU will fundamentally reshape many of the UK’s policies and its relations with countries around the world. For energy and climate, the changes could be significant and will need to be managed carefully to secure ongoing investment, stable energy prices and ambitious climate objectives. The UK’s departure will also affect the balance of political support for climate and energy policies with the EU institutions and potentially impact upon regional initiatives. This roundtable will discuss:The impact on the energy sector of Brexit during the transition period through until December 2020 including the operation of interconnectors and access to the Internal energy market, ongoing engagement in European research collaboration and the replacement of European financial resources.The possible opportunities and risks for the UK’s energy sector in 2021 and beyond.The implications of Brexit on the EU’s energy and climate policy.The roundtable will discuss the role of the public and business in shaping the future deal as it will need to be ratified by the parliaments of all member states.Attendance at this event is by invitation only. Full Article
trans Power Sector Transformation, New Market Dynamics and Geopolitical Implications By www.chathamhouse.org Published On :: Thu, 06 Dec 2018 13:45:01 +0000 Power Sector Transformation, New Market Dynamics and Geopolitical Implications 7 November 2018 — 8:00AM TO 9:30AM Anonymous (not verified) 6 December 2018 Chatham House | 10 St James's Square | London | SW1Y 4LE The global electricity sector is experiencing profound change due to a confluence of technological innovation, environmental policies and regulatory reform. The effect is most obvious in the EU28, Australia and parts of North America.However, this is just the beginning and the success of the next phase of electricity sector transformations hinges on enhancing system flexibility to facilitate unhindered low-cost deployment of renewables. It remains to be seen how utilities will seek to navigate this second phase of electricity transformations.This session starts with a presentation and discussion that focuses on:Public and private sector risks of the transformation of the power sector, changes in generation mix and their implications for supply chain, employments and investment patterns.The role of government and the regulatory framework in light of changing market structure, new entrants and big data.Wider geopolitical issues including the implication for fossil fuel producers and the rise in demand for new materials and changes in land use. The possible implications on the power sector on the electrification of heat and transport.The discussion then moves to the speed of transformation and what this means for existing and new market actors. Full Article
trans Energy transitions By www.chathamhouse.org Published On :: Thu, 16 Jan 2020 12:58:13 +0000 Energy transitions Analysing and understanding the implications of the global energy transition, and what it means for states, communities and people facing these changes. nfaulds-adams… 16 January 2020 The world is undergoing an energy transformation, and at its heart is the need to reduce energy-related carbon emissions to limit climate change. But decarbonization of the energy sector – moving away from fossil fuels towards low carbon sources of energy – requires urgent action on a global scale. Our work focuses on three primary components: Clean and renewable energy Energy access Extractives This transition will be enabled by technological innovations, the market, improvements to policy and regulatory frameworks, and by increasing awareness – and actions – from consumers all over the world. Full Article
trans Food system transformation: A blind spot for climate and biodiversity action? By www.chathamhouse.org Published On :: Wed, 05 Oct 2022 10:57:14 +0000 Food system transformation: A blind spot for climate and biodiversity action? 20 October 2022 — 12:00PM TO 1:00PM Anonymous (not verified) 5 October 2022 Chatham House and Online How can COP27 and COP15 accelerate the agenda for sustainable food systems and land use? Tackling the dual crises of climate change and biodiversity loss requires extraordinary levels of action at an unprecedented speed. Agriculture is the biggest user of land, the biggest source of methane emissions, a major contributor to total greenhouse gas emissions and the leading driver of biodiversity loss. Anything short of a food system transformation puts climate and biodiversity objectives in peril. However, governments have not yet produced credible pathways and strong policies for tackling our growing ‘foodprint’ – the negative impacts of what we grow and eat. In advance of COP27 in Sharm El-Sheikh for climate and COP15 in Montreal for biodiversity, Chatham House has published a new briefing paper which examines aligning food systems with climate and biodiversity targets. The paper reviews the climate and biodiversity policy landscape to 2030, with a focus on land-based aspects and the inclusion of food and agriculture. The paper highlights serious conflicts between the impacts of the food system and goals to protect and restore biodiversity and mitigate climate change. In light of this, opportunities for joined-up action on food, climate and biodiversity are identified, including three key steps for countries to take this decade to produce suitably ambitious and effective policies across the climate–biodiversity–food nexus. This event brings together leading voices from the international policy arenas for climate and biodiversity to react to the briefing paper and discuss how COP27 and COP15 can accelerate the agenda for sustainable food systems and land use. Full Article
trans On Lamperti transformation and AR(1) type characterisations of discrete random fields By www.ams.org Published On :: Tue, 05 Nov 2024 14:10 EST Marko Voutilainen, Lauri Viitasaari and Pauliina Ilmonen Theor. Probability and Math. Statist. 111 (), 181-197. Abstract, references and article information Full Article
trans Brylinski-Radon transformation and generic projections By www.ams.org Published On :: Tue, 05 Nov 2024 15:05 EST Yongqiang Liu, Laurentiu Maxim and Botong Wang Proc. Amer. Math. Soc. 152 (), 5279-5288. Abstract, references and article information Full Article
trans Warren: Trump transition ‘already breaking the law’ By www.yahoo.com Published On :: 2024-11-11T21:32:07Z Full Article
trans Biochemical transformation of bacterial lipopolysaccharides by acyloxyacyl hydrolase reduces host injury and promotes recovery [Enzymology] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Animals can sense the presence of microbes in their tissues and mobilize their own defenses by recognizing and responding to conserved microbial structures (often called microbe-associated molecular patterns (MAMPs)). Successful host defenses may kill the invaders, yet the host animal may fail to restore homeostasis if the stimulatory microbial structures are not silenced. Although mice have many mechanisms for limiting their responses to lipopolysaccharide (LPS), a major Gram-negative bacterial MAMP, a highly conserved host lipase is required to extinguish LPS sensing in tissues and restore homeostasis. We review recent progress in understanding how this enzyme, acyloxyacyl hydrolase (AOAH), transforms LPS from stimulus to inhibitor, reduces tissue injury and death from infection, prevents prolonged post-infection immunosuppression, and keeps stimulatory LPS from entering the bloodstream. We also discuss how AOAH may increase sensitivity to pulmonary allergens. Better appreciation of how host enzymes modify LPS and other MAMPs may help prevent tissue injury and hasten recovery from infection. Full Article
trans Mouse Ifit1b is a cap1-RNA-binding protein that inhibits mouse coronavirus translation and is regulated by complexing with Ifit1c [RNA] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Knockout mouse models have been extensively used to study the antiviral activity of IFIT (interferon-induced protein with tetratricopeptide repeats). Human IFIT1 binds to cap0 (m7GpppN) RNA, which lacks methylation on the first and second cap-proximal nucleotides (cap1, m7GpppNm, and cap2, m7GpppNmNm, respectively). These modifications are signatures of “self” in higher eukaryotes, whereas unmodified cap0-RNA is recognized as foreign and, therefore, potentially harmful to the host cell. IFIT1 inhibits translation at the initiation stage by competing with the cap-binding initiation factor complex, eIF4F, restricting infection by certain viruses that possess “nonself” cap0-mRNAs. However, in mice and other rodents, the IFIT1 orthologue has been lost, and the closely related Ifit1b has been duplicated twice, yielding three paralogues: Ifit1, Ifit1b, and Ifit1c. Although murine Ifit1 is similar to human IFIT1 in its cap0-RNA–binding selectivity, the roles of Ifit1b and Ifit1c are unknown. Here, we found that Ifit1b preferentially binds to cap1-RNA, whereas binding is much weaker to cap0- and cap2-RNA. In murine cells, we show that Ifit1b can modulate host translation and restrict WT mouse coronavirus infection. We found that Ifit1c acts as a stimulatory cofactor for both Ifit1 and Ifit1b, promoting their translation inhibition. In this way, Ifit1c acts in an analogous fashion to human IFIT3, which is a cofactor to human IFIT1. This work clarifies similarities and differences between the human and murine IFIT families to facilitate better design and interpretation of mouse models of human infection and sheds light on the evolutionary plasticity of the IFIT family. Full Article
trans Quantitative phosphoproteomic analysis reveals involvement of PD-1 in multiple T cell functions [Signal Transduction] By www.jbc.org Published On :: 2020-12-25T00:06:30-08:00 Programmed cell death protein 1 (PD-1) is a critical inhibitory receptor that limits excessive T cell responses. Cancer cells have evolved to evade these immunoregulatory mechanisms by upregulating PD-1 ligands and preventing T cell–mediated anti-tumor responses. Consequently, therapeutic blockade of PD-1 enhances T cell–mediated anti-tumor immunity, but many patients do not respond and a significant proportion develop inflammatory toxicities. To improve anti-cancer therapy, it is critical to reveal the mechanisms by which PD-1 regulates T cell responses. We performed global quantitative phosphoproteomic interrogation of PD-1 signaling in T cells. By complementing our analysis with functional validation assays, we show that PD-1 targets tyrosine phosphosites that mediate proximal T cell receptor signaling, cytoskeletal organization, and immune synapse formation. PD-1 ligation also led to differential phosphorylation of serine and threonine sites within proteins regulating T cell activation, gene expression, and protein translation. In silico predictions revealed that kinase/substrate relationships engaged downstream of PD-1 ligation. These insights uncover the phosphoproteomic landscape of PD-1–triggered pathways and reveal novel PD-1 substrates that modulate diverse T cell functions and may serve as future therapeutic targets. These data are a useful resource in the design of future PD-1–targeting therapeutic approaches. Full Article
trans Importance of endothelial Hey1 expression for thoracic great vessel development and its distal enhancer for Notch-dependent endothelial transcription [Gene Regulation] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Thoracic great vessels such as the aorta and subclavian arteries are formed through dynamic remodeling of embryonic pharyngeal arch arteries (PAAs). Previous work has shown that loss of a basic helix-loop-helix transcription factor Hey1 in mice causes abnormal fourth PAA development and lethal great vessel anomalies resembling congenital malformations in humans. However, how Hey1 mediates vascular formation remains unclear. In this study, we revealed that Hey1 in vascular endothelial cells, but not in smooth muscle cells, played essential roles for PAA development and great vessel morphogenesis in mouse embryos. Tek-Cre–mediated Hey1 deletion in endothelial cells affected endothelial tube formation and smooth muscle differentiation in embryonic fourth PAAs and resulted in interruption of the aortic arch and other great vessel malformations. Cell specificity and signal responsiveness of Hey1 expression were controlled through multiple cis-regulatory regions. We found two distal genomic regions that had enhancer activity in endothelial cells and in the pharyngeal epithelium and somites, respectively. The novel endothelial enhancer was conserved across species and was specific to large-caliber arteries. Its transcriptional activity was regulated by Notch signaling in vitro and in vivo, but not by ALK1 signaling and other transcription factors implicated in endothelial cell specificity. The distal endothelial enhancer was not essential for basal Hey1 expression in mouse embryos but may likely serve for Notch-dependent transcriptional control in endothelial cells together with the proximal regulatory region. These findings help in understanding the significance and regulation of endothelial Hey1 as a mediator of multiple signaling pathways in embryonic vascular formation. Full Article
trans Heme oxygenase-2 is post-translationally regulated by heme occupancy in the catalytic site [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-11T00:06:20-08:00 Heme oxygenase-2 (HO2) and -1 (HO1) catalyze heme degradation to biliverdin, CO, and iron, forming an essential link in the heme metabolism network. Tight regulation of the cellular levels and catalytic activities of HO1 and HO2 is important for maintaining heme homeostasis. HO1 expression is transcriptionally regulated; however, HO2 expression is constitutive. How the cellular levels and activity of HO2 are regulated remains unclear. Here, we elucidate the mechanism of post-translational regulation of cellular HO2 levels by heme. We find that, under heme-deficient conditions, HO2 is destabilized and targeted for degradation, suggesting that heme plays a direct role in HO2 regulation. HO2 has three heme binding sites: one at its catalytic site and the others at its two heme regulatory motifs (HRMs). We report that, in contrast to other HRM-containing proteins, the cellular protein level and degradation rate of HO2 are independent of heme binding to the HRMs. Rather, under heme deficiency, loss of heme binding to the catalytic site destabilizes HO2. Consistently, an HO2 catalytic site variant that is unable to bind heme exhibits a constant low protein level and an enhanced protein degradation rate compared with the WT HO2. Finally, HO2 is degraded by the lysosome through chaperone-mediated autophagy, distinct from other HRM-containing proteins and HO1, which are degraded by the proteasome. These results reveal a novel aspect of HO2 regulation and deepen our understanding of HO2's role in maintaining heme homeostasis, paving the way for future investigation into HO2's pathophysiological role in heme deficiency response. Full Article
trans Characterizing human {alpha}-1,6-fucosyltransferase (FUT8) substrate specificity and structural similarities with related fucosyltransferases [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-11T00:06:20-08:00 Mammalian Asn-linked glycans are extensively processed as they transit the secretory pathway to generate diverse glycans on cell surface and secreted glycoproteins. Additional modification of the glycan core by α-1,6-fucose addition to the innermost GlcNAc residue (core fucosylation) is catalyzed by an α-1,6-fucosyltransferase (FUT8). The importance of core fucosylation can be seen in the complex pathological phenotypes of FUT8 null mice, which display defects in cellular signaling, development, and subsequent neonatal lethality. Elevated core fucosylation has also been identified in several human cancers. However, the structural basis for FUT8 substrate specificity remains unknown.Here, using various crystal structures of FUT8 in complex with a donor substrate analog, and with four distinct glycan acceptors, we identify the molecular basis for FUT8 specificity and activity. The ordering of three active site loops corresponds to an increased occupancy for bound GDP, suggesting an induced-fit folding of the donor-binding subsite. Structures of the various acceptor complexes were compared with kinetic data on FUT8 active site mutants and with specificity data from a library of glycan acceptors to reveal how binding site complementarity and steric hindrance can tune substrate affinity. The FUT8 structure was also compared with other known fucosyltransferases to identify conserved and divergent structural features for donor and acceptor recognition and catalysis. These data provide insights into the evolution of modular templates for donor and acceptor recognition among GT-B fold glycosyltransferases in the synthesis of diverse glycan structures in biological systems. Full Article
trans Antibiotic binding releases autoinhibition of the TipA multidrug-resistance transcriptional regulator [Gene Regulation] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Investigations of bacterial resistance strategies can aid in the development of new antimicrobial drugs as a countermeasure to the increasing worldwide prevalence of bacterial antibiotic resistance. One such strategy involves the TipA class of transcription factors, which constitute minimal autoregulated multidrug resistance (MDR) systems against diverse antibiotics. However, we have insufficient information regarding how antibiotic binding induces transcriptional activation to design molecules that could interfere with this process. To learn more, we determined the crystal structure of SkgA from Caulobacter crescentus as a representative TipA protein. We identified an unexpected spatial orientation and location of the antibiotic-binding TipAS effector domain in the apo state. We observed that the α6–α7 region of the TipAS domain, which is canonically responsible for forming the lid of antibiotic-binding cleft to tightly enclose the bound antibiotic, is involved in the dimeric interface and stabilized via interaction with the DNA-binding domain in the apo state. Further structural and biochemical analyses demonstrated that the unliganded TipAS domain sterically hinders promoter DNA binding but undergoes a remarkable conformational shift upon antibiotic binding to release this autoinhibition via a switch of its α6–α7 region. Hence, the promoters for MDR genes including tipA and RNA polymerases become available for transcription, enabling efficient antibiotic resistance. These insights into the molecular mechanism of activation of TipA proteins advance our understanding of TipA proteins, as well as bacterial MDR systems, and may provide important clues to block bacterial resistance. Full Article
trans 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
trans Hydrogen/deuterium exchange memory NMR reveals structural epitopes involved in IgE cross-reactivity of allergenic lipid transfer proteins [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Identification of antibody-binding epitopes is crucial to understand immunological mechanisms. It is of particular interest for allergenic proteins with high cross-reactivity as observed in the lipid transfer protein (LTP) syndrome, which is characterized by severe allergic reactions. Art v 3, a pollen LTP from mugwort, is frequently involved in this cross-reactivity, but no antibody-binding epitopes have been determined so far. To reveal human IgE-binding regions of Art v 3, we produced three murine high-affinity mAbs, which showed 70–90% coverage of the allergenic epitopes from mugwort pollen–allergic patients. As reliable methods to determine structural epitopes with tightly interacting intact antibodies under native conditions are lacking, we developed a straightforward NMR approach termed hydrogen/deuterium exchange memory (HDXMEM). It relies on the slow exchange between the invisible antigen-mAb complex and the free 15N-labeled antigen whose 1H-15N correlations are detected. Due to a memory effect, changes of NH protection during antibody binding are measured. Differences in H/D exchange rates and analyses of mAb reactivity to homologous LTPs revealed three structural epitopes: two partially cross-reactive regions around α-helices 2 and 4 as well as a novel Art v 3–specific epitope at the C terminus. Protein variants with exchanged epitope residues confirmed the antibody-binding sites and revealed strongly reduced IgE reactivity. Using the novel HDXMEM for NMR epitope mapping allowed identification of the first structural epitopes of an allergenic pollen LTP. This knowledge enables improved cross-reactivity prediction for patients suffering from LTP allergy and facilitates design of therapeutics. Full Article
trans 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
trans 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
trans Unrest Threatens Ethiopia’s Transition Under Abiy Ahmed By www.chathamhouse.org Published On :: Fri, 24 Jul 2020 10:40:55 +0000 24 July 2020 Abel Abate Demissie Associate Fellow, Africa Programme @abele_a LinkedIn Ahmed Soliman Research Fellow, Horn of Africa, Africa Programme @AhmedSolHoA Ethiopia is experiencing a turbulent transition. The uncompromising approach of political forces threatens to tear the country apart and reverse the hard-won gains made in recent years. GettyImages-1227453952.jpg Burned buildings which were set on fire during the violence after the assassination of Oromo's pop singer Hachalu Hundessa are seen in Shashamene, Ethiopia on 12 July 2020. Photo: Getty Images. Violent unrest in Addis Ababa and the surrounding Oromia region has led to the loss of over 177 lives, with the detention of thousands and widespread destruction to property. The rise of identity-based conflict and related political tension is the most severe test of Prime Minister Abiy Ahmed’s leadership since he came to power two years ago.Protests erupted after the assassination on the 29th of June of Hachalu Hundessa, a prominent Oromo singer and activist. They spiralled into widespread rioting, looting and arson which devastated some towns. Targeted attacks and killings, particularly against ethnic minorities in Oromia, have damaged communities’ social fabric and heightened regional tensions.The motives behind Hachalu’s murder are not fully understood. Suspects linked to a militant faction of the Oromo Liberation Front (OLF) have been arrested, while the government has blamed the Tigray People’s Liberation Front (TPLF) and certain prominent activist-politicians for inciting ethnic violence and attempting to derail Ethiopia’s fragile political liberalization. With investigations not yet concluded, any exploitation of this tragedy for political gain and without adequate due process is likely to further erode trust in the government and public institutions. Ethiopia’s progress halting under Abiy AhmedThe prime minister came to power with a vision of national unity – encapsulated in his ideology of Medemer – and implemented a raft of reforms aimed at strengthening institutions and increasing political space, inclusivity and freedoms. Abiy was awarded the 2019 Nobel Peace Prize for Ethiopia’s rapprochement with Eritrea, alongside domestic progress. He was lauded for mediating within the region, including in Sudan following the ouster of Omar al-Bashir.However, Ethiopia’s simmering ethnic and political divisions have deep roots, with structural problems that have been insufficiently addressed under Abiy’s helm. These include conflicting narratives about Ethiopia’s history, an unfinished federal project and tensions over the division of power between the centre and the regions.There is also the desire for better representation from various ethnic groups, linked to the pursuit of greater autonomy in many places, notably in the ethnically diverse southern region. Reforms have increased expectations among competing constituencies, heightening tensions further.There are signs that Ethiopia is sliding dangerously backwards, particularly on security and democracy. The country has seen worsening levels of militant ethno-nationalism and inter-communal violence, a dangerous standoff between the federal government and Tigray region, and an increase in politically motivated deaths.This has been compounded by the government turning to familiar, heavy-handed and securitized responses to law and order challenges, including intimidation and mass arrests of civilians, opposition politicians and journalists, and shutting off the internet. The Ethiopian Human Rights Commission called for security forces to refrain from punitive measures and pursue conciliatory approaches in implementing the state of emergency measures brought in to deal with COVID-19.The country is also facing a triple economic shock caused by the pandemic, renewed instability and devastating desert locust swarms. The IMF recently reduced Ethiopia’s GDP growth projections for 2019/2020 to 3.2 percent down from 6.2 percent and the country has estimated that 1.4 million workers will be affected by the pandemic, particularly in the service and manufacturing sectors.The impact on agriculture, which accounts for a third of GDP and on which most Ethiopian’s depend for their livelihoods, is expected to be severe. In addition to shaking investor confidence, the likely impact on livelihoods, food security and poverty levels makes it harder for the government to maintain public support and could add to instability.Political turmoil caused by election delayThe situation has been exacerbated by the indefinite postponement of elections that were due in August 2020, as a result of COVID-19.Efforts to avoid a crisis of legitimacy for the government caused by the end of parliament’s term in October 2020, led to a decision on the way forward being taken by the Council of Constitutional Inquiry (CCI). This group of legal experts led by the President of the Supreme Court, gave the ruling Prosperity Party (PP) an open-ended extension of their term, rubberstamped by the House of Federation, with no limits set on their powers during the interim period.This decision sets a dangerous precedent and is a missed opportunity to achieve compromise and advance the democratic process. The lack of inclusion has angered opposition groups, with whom the government has had little genuine dialogue. Many in the opposition had advocated for a transitional or technocratic government during the interim, despite risks of further divisions and a vacuum of authority, and accuse the PP of manipulating institutions to stay in power.Furthermore, the TPLF, the ruling party in the Tigray region and formerly the dominant national political force, is pushing forward with its intention to hold unilateral regional elections. It formed a new regional electoral commission, in spite of objections from the national electoral board and the government, which has implied it could use force to stop the elections. This rising enmity between the PP and the TPLF is extremely worrying and requires immediate de-escalation.A pathway to genuine dialogue and reconciliationEthiopia’s problems can only be resolved through dialogue, compromise and reconciliation. Escalating tensions, particularly between the federal government, Tigray and Oromo opposition groups risk furthering instability and fragmentation. One way to establish confidence would be for a group of respected Ethiopian personalities (elders and religious leaders) to lead a political dialogue, with actors carefully chosen and vetted to ensure the buy-in of government, opposition parties and the public, and supported by Ethiopia’s regional and international partners.Once established, an initial goal of such a platform would be to induce elites, populist leaders, activists and influential regional media to stop exploiting division and violence for narrow gain. Priority agenda issues include the election timetable and required institutional and legal reforms, the role of the opposition during the interim period, strengthening reconciliation efforts, and the need to carefully manage autonomous security forces within regional states.The prime minister can still weather the storm and implement his vision of a unified multinational Ethiopia based on the values of democracy, rule of law and justice, but only if the government and other stakeholders do all they can to reduce tensions and preserve peace at this critical juncture. COVID-19 and the associated economic impacts have deepened the country’s multifaceted problems, which can only be resolved by political actors committing themselves towards inclusive dialogue and reconciliation, as they seek to forge a shared common future. Full Article
trans The glucose-sensing transcription factor ChREBP is targeted by proline hydroxylation [Metabolism] By www.jbc.org Published On :: 2020-12-11T00:06:20-08:00 Cellular energy demands are met by uptake and metabolism of nutrients like glucose. The principal transcriptional regulator for adapting glycolytic flux and downstream pathways like de novo lipogenesis to glucose availability in many cell types is carbohydrate response element–binding protein (ChREBP). ChREBP is activated by glucose metabolites and post-translational modifications, inducing nuclear accumulation and regulation of target genes. Here we report that ChREBP is modified by proline hydroxylation at several residues. Proline hydroxylation targets both ectopically expressed ChREBP in cells and endogenous ChREBP in mouse liver. Functionally, we found that specific hydroxylated prolines were dispensable for protein stability but required for the adequate activation of ChREBP upon exposure to high glucose. Accordingly, ChREBP target gene expression was rescued by re-expressing WT but not ChREBP that lacks hydroxylated prolines in ChREBP-deleted hepatocytes. Thus, proline hydroxylation of ChREBP is a novel post-translational modification that may allow for therapeutic interference in metabolic diseases. Full Article
trans Post-translational control of the long and winding road to cholesterol [Lipids] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 The synthesis of cholesterol requires more than 20 enzymes, many of which are intricately regulated. Post-translational control of these enzymes provides a rapid means for modifying flux through the pathway. So far, several enzymes have been shown to be rapidly degraded through the ubiquitin–proteasome pathway in response to cholesterol and other sterol intermediates. Additionally, several enzymes have their activity altered through phosphorylation mechanisms. Most work has focused on the two rate-limiting enzymes: 3-hydroxy-3-methylglutaryl CoA reductase and squalene monooxygenase. Here, we review current literature in the area to define some common themes in the regulation of the entire cholesterol synthesis pathway. We highlight the rich variety of inputs controlling each enzyme, discuss the interplay that exists between regulatory mechanisms, and summarize findings that reveal an intricately coordinated network of regulation along the cholesterol synthesis pathway. We provide a roadmap for future research into the post-translational control of cholesterol synthesis, and no doubt the road ahead will reveal further twists and turns for this fascinating pathway crucial for human health and disease. Full Article