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Undercurrents: Episode 12 - Trump's Visit to the UK, and Japanese Foreign Policy in Asia




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Undercurrents: Episode 13 - India's Billionaires, and Sexual Exploitation in the UN




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Undercurrents: Episode 14 - Sustainable Energy for Refugees and Australian Foreign Policy




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Undercurrents: Episode 15 - Brexit Update, and Corruption in the World of the Global Super-Rich




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Undercurrents - Episode 16: Cybercrime in the GCC States, and Fiction from Refugee Camps




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A View From the Élysée: France’s Role in the World




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Global Trade Landscape Series 2018: Technological Transitions and the Future of Global Trade




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Undercurrents: Episode 17 - Alastair Campbell on New Labour and Brexit, Alistair Darling on the Financial Crisis




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Undercurrents: Episode 18 - The American Dream vs America First, and Uganda's Illegal Ivory Trade




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Securing Peace in the 21st Century: The Roles of Diplomacy and Statesmanship




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Undercurrents: Episode 19 - Green Building Projects in Jordan, and Qatar's Football World Cup




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Undercurrents: Episode 21 - EU-US Relations after the Midterms, and Tackling the Illegal Wildlife Trade in Africa




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Chatham House Prize 2018: The Committee to Protect Journalists




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Leadership in the 21st Century: Jessica Cecil, BBC




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Leadership in the 21st Century: Dr Colin Kahl




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Ten Conflicts to Watch in 2019




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Yemen in 2019: A Look Ahead




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Afghanistan in 2018: A Survey of the Afghan People




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Undercurrents: Episode 31 - Re-imagining the Global Food System




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Leadership in the 21st Century: Jim O’Neill, Chatham House




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The 2019 Arab Youth Survey: Pragmatism, Frustration and Optimism




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Undercurrents: Episode 41 - Personalized Political Advertising, and Climate Justice in Chile




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UK General Election 2019: Foreign Policy Implications




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Understanding Decolonization in the 21st Century




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The Climate Briefing: Episode 1 - What Does Success Look Like At COP26?




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Undercurrents: Episode 49 - EU Responses to COVID-19, and the Politics of Celebrity




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Undercurrents: Episode 51 - Preparing for Pandemics, and Gandhi's Chatham House Speech




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Undercurrents: Episode 53 - Protecting Workers During COVID-19, and Food in Security in West Africa




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Undercurrents: Episode 54 - India's COVID-19 Tracing App, and the Media's Pandemic Response




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Undercurrents: Episode 57 - Race in Westminster, and COVID-19 Expertise




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Undercurrents: Episode 61 - LGBTQ+ Rights, and China's Post-COVID Global Standing




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Undercurrents: Episode 62 - 100 Years of Chatham House




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Normal high density lipoprotein inhibits three steps in the formation of mildly oxidized low density lipoprotein: step 1

Mohamad Navab
Sep 1, 2000; 41:1481-1494
Articles




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The Committee to Protect Journalists named winner of the Chatham House Prize 2018

The Committee to Protect Journalists named winner of the Chatham House Prize 2018 News Release sysadmin 5 October 2018

The Committee to Protect Journalists (CPJ) has been voted the winner of this year’s Chatham House Prize.




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Sir David Attenborough and the BBC Studios Natural History Unit awarded Chatham House Prize 2019 for ocean advocacy

Sir David Attenborough and the BBC Studios Natural History Unit awarded Chatham House Prize 2019 for ocean advocacy News Release sysadmin 18 November 2019

The 2019 Chatham House Prize is awarded to Sir David Attenborough and Julian Hector, head of BBC Studios Natural History Unit, for the galvanizing impact of the Blue Planet II series on tackling ocean plastic pollution.




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COVID-19 and Chatham House

COVID-19 and Chatham House News Release sysadmin 4 March 2020

Chatham House continues to operate during the coronavirus pandemic.




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Remembering Rosemary Hollis (1952-2020)

Remembering Rosemary Hollis (1952-2020) News Release sysadmin 12 June 2020

Professor Rosemary Hollis, a highly respected authority on the Middle East, died suddenly last week. Rosy is remembered with great respect and affection, as a colleague and a friend.




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Implications of post-COVID-19 Restructuring of Supply Chains for Global Investment Governance

Implications of post-COVID-19 Restructuring of Supply Chains for Global Investment Governance 14 July 2020 — 9:00AM TO 10:30AM Anonymous (not verified) 9 February 2021 Online

As companies rethink and diversify their supply chains in order to enhance resilience, what will this mean for current and future global investment governance?

What are the risks of negative effects on inclusivity and transparency? Does this shift create an opportunity to advance good governance of cross-border investment practices?

This event is part of the Inclusive Governance Initiative, which is examining how to build more inclusive models and mechanisms of global governance fit for purpose in today’s world.




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The Arg-293 of Cryptochrome1 is responsible for the allosteric regulation of CLOCK-CRY1 binding in circadian rhythm [Computational Biology]

Mammalian circadian clocks are driven by transcription/translation feedback loops composed of positive transcriptional activators (BMAL1 and CLOCK) and negative repressors (CRYPTOCHROMEs (CRYs) and PERIODs (PERs)). CRYs, in complex with PERs, bind to the BMAL1/CLOCK complex and repress E-box–driven transcription of clock-associated genes. There are two individual CRYs, with CRY1 exhibiting higher affinity to the BMAL1/CLOCK complex than CRY2. It is known that this differential binding is regulated by a dynamic serine-rich loop adjacent to the secondary pocket of both CRYs, but the underlying features controlling loop dynamics are not known. Here we report that allosteric regulation of the serine-rich loop is mediated by Arg-293 of CRY1, identified as a rare CRY1 SNP in the Ensembl and 1000 Genomes databases. The p.Arg293His CRY1 variant caused a shortened circadian period in a Cry1−/−Cry2−/− double knockout mouse embryonic fibroblast cell line. Moreover, the variant displayed reduced repressor activity on BMAL1/CLOCK driven transcription, which is explained by reduced affinity to BMAL1/CLOCK in the absence of PER2 compared with CRY1. Molecular dynamics simulations revealed that the p.Arg293His CRY1 variant altered a communication pathway between Arg-293 and the serine loop by reducing its dynamicity. Collectively, this study provides direct evidence that allosterism in CRY1 is critical for the regulation of circadian rhythm.




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Genetic evidence for partial redundancy between the arginine methyltransferases CARM1 and PRMT6 [Signal Transduction]

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.




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Hepatocyte nuclear factor 1{beta} suppresses canonical Wnt signaling through transcriptional repression of lymphoid enhancer-binding factor 1 [Molecular Bases of Disease]

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.




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Inhibition of the SUV4-20 H1 histone methyltransferase increases frataxin expression in Friedreich's ataxia patient cells [Gene Regulation]

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.








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Molecular basis for histone H3 “K4me3-K9me3/2” methylation pattern readout by Spindlin1 [Gene Regulation]

Histone recognition by “reader” modules serves as a fundamental mechanism in epigenetic regulation. Previous studies have shown that Spindlin1 is a reader of histone H3K4me3 as well as “K4me3-R8me2a” and promotes transcription of rDNA or Wnt/TCF4 target genes. Here we show that Spindlin1 also acts as a potent reader of histone H3 “K4me3-K9me3/2” bivalent methylation pattern. Calorimetric titration revealed a binding affinity of 16 nm between Spindlin1 and H3 “K4me3-K9me3” peptide, which is one to three orders of magnitude stronger than most other histone readout events at peptide level. Structural studies revealed concurrent recognition of H3K4me3 and H3K9me3/2 by aromatic pockets 2 and 1 of Spindlin1, respectively. Epigenomic profiling studies showed that Spindlin1 colocalizes with both H3K4me3 and H3K9me3 peaks in a subset of genes enriched in biological processes of transcription and its regulation. Moreover, the distribution of Spindlin1 peaks is primarily associated with H3K4me3 but not H3K9me3, which suggests that Spindlin1 is a downstream effector of H3K4me3 generated in heterochromatic regions. Collectively, our work calls attention to an intriguing function of Spindlin1 as a potent H3 “K4me3-K9me3/2” bivalent mark reader, thereby balancing gene expression and silencing in H3K9me3/2-enriched regions.




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Coupled intra- and interdomain dynamics support domain cross-talk in Pin1 [Signal Transduction]

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.




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Functional and structural characterization of allosteric activation of phospholipase Cϵ by Rap1A [Molecular Biophysics]

Phospholipase Cε (PLCε) is activated downstream of G protein–coupled receptors and receptor tyrosine kinases through direct interactions with small GTPases, including Rap1A and Ras. Although Ras has been reported to allosterically activate the lipase, it is not known whether Rap1A has the same ability or what its molecular mechanism might be. Rap1A activates PLCε in response to the stimulation of β-adrenergic receptors, translocating the complex to the perinuclear membrane. Because the C-terminal Ras association (RA2) domain of PLCε was proposed to the primary binding site for Rap1A, we first confirmed using purified proteins that the RA2 domain is indeed essential for activation by Rap1A. However, we also showed that the PLCε pleckstrin homology (PH) domain and first two EF hands (EF1/2) are required for Rap1A activation and identified hydrophobic residues on the surface of the RA2 domain that are also necessary. Small-angle X-ray scattering showed that Rap1A binding induces and stabilizes discrete conformational states in PLCε variants that can be activated by the GTPase. These data, together with the recent structure of a catalytically active fragment of PLCε, provide the first evidence that Rap1A, and by extension Ras, allosterically activate the lipase by promoting and stabilizing interactions between the RA2 domain and the PLCε core.