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The Transatlantic Relationship: Challenges and Opportunities




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Podcast: Examining The Post-Brexit Japan-UK Partnership




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Cybersecurity Series: Exploring Methods of Internet Censorship and Control




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American Diplomacy: Past, Present and Future




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The Battle for Tripoli




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Citizenship and Discontent in the Middle East




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Our Shared Humanity: Governance, Youth and Leadership




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The Korean Peninsula: A Diplomatic Outlook




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Direct Democracy: Participation Without Populism?




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Securing Our Climate Future: Risk, Resilience and Diplomacy




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Undercurrents: Episode 37 - Women in Leadership, and Europe's Ageing Population




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




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Technology Diplomacy in the Digital Age




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France, the UK and Europe: New Partnerships and Common Challenges




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Human Hepatocyte Nuclear Factor 4-{alpha} Encodes Isoforms with Distinct Transcriptional Functions [Research]

HNF4α is a nuclear receptor produced as 12 isoforms from two promoters by alternative splicing. To characterize the transcriptional capacities of all 12 HNF4α isoforms, stable lines expressing each isoform were generated. The entire transcriptome associated with each isoform was analyzed as well as their respective interacting proteome. Major differences were noted in the transcriptional function of these isoforms. The α1 and α2 isoforms were the strongest regulators of gene expression whereas the α3 isoform exhibited significantly reduced activity. The α4, α5, and α6 isoforms, which use an alternative first exon, were characterized for the first time, and showed a greatly reduced transcriptional potential with an inability to recognize the consensus response element of HNF4α. Several transcription factors and coregulators were identified as potential specific partners for certain HNF4α isoforms. An analysis integrating the vast amount of omics data enabled the identification of transcriptional regulatory mechanisms specific to certain HNF4α isoforms, hence demonstrating the importance of considering all isoforms given their seemingly diverse functions.




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Biophysical characterization of SARAH domain-mediated multimerization of Hippo pathway complexes in Drosophila [Signal Transduction]

Hippo pathway signaling limits cell growth and proliferation and maintains the stem-cell niche. These cellular events result from the coordinated activity of a core kinase cassette that is regulated, in part, by interactions involving Hippo, Salvador, and dRassF. These interactions are mediated by a conserved coiled-coil domain, termed SARAH, in each of these proteins. SARAH domain–mediated homodimerization of Hippo kinase leads to autophosphorylation and activation. Paradoxically, SARAH domain–mediated heterodimerization between Hippo and Salvador enhances Hippo kinase activity in cells, whereas complex formation with dRassF inhibits it. To better understand the mechanism by which each complex distinctly modulates Hippo kinase and pathway activity, here we biophysically characterized the entire suite of SARAH domain–mediated complexes. We purified the three SARAH domains from Drosophila melanogaster and performed an unbiased pulldown assay to identify all possible interactions, revealing that isolated SARAH domains are sufficient to recapitulate the cellular assemblies and that Hippo is a universal binding partner. Additionally, we found that the Salvador SARAH domain homodimerizes and demonstrate that this interaction is conserved in Salvador's mammalian homolog. Using native MS, we show that each of these complexes is dimeric in solution. We also measured the stability of each SARAH domain complex, finding that despite similarities at both the sequence and structural levels, SARAH domain complexes differ in stability. The identity, stoichiometry, and stability of these interactions characterized here comprehensively reveal the nature of SARAH domain–mediated complex formation and provide mechanistic insights into how SARAH domain–mediated interactions influence Hippo pathway activity.




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COP26 Diplomatic Briefing Series: Outcomes of COP25 and What It Means for 2020

Invitation Only Research Event

22 January 2020 - 4:30pm to 6:00pm

Chatham House | 10 St James's Square | London | SW1Y 4LE

Event participants

HE Raffaele Trombetta, Italian Ambassador to the UK, Co-Host, COP 26
Archie Young, UK Lead Climate Negotiator, Cabinet Office 
Peter Betts, Associate Fellow, Energy, Environment and Resources Department, Chatham House
Chair: Professor Tim Benton, Research Director, Energy, Environment and Resources, Chatham House  

The UK will host the 26th Conference of the Parties (COP26) in November 2020 in Glasgow. In the run up, Chatham House is organizing a monthly briefing series targeted to:

  • The diplomatic service based in London, in particular, staff of the London embassies who are reporting on climate change issues.
  • Senior UK government civil servants, officials and politicians engaged in climate change.
  • Academics, experts, business representatives and NGOs.

The first briefing in the series focuses on the results from COP25 held in Madrid in December 2019 and what this means for 2020.

This briefings series offer an opportunity to discuss, in an informal setting, the most pressing and complex climate issues of the day with UK and international government officials and experts.

Event attributes

Chatham House Rule

Johanna Tilkanen

Project Manager, Energy, Environment and Resources Department




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COP26 Diplomatic Briefing: Climate Ambition in Europe and its Potential Global Impact

17 February 2020 - 8:30am to 10:00am

Chatham House | 10 St James's Square | London | SW1Y 4LE

Jacob Werksman, Principal Adviser to Directorate General for Climate Action, European Commission
Imke Lübbeke, Head of EU Climate and Energy Policy, WWF European Policy Office 
Simon Petrie, Head of International Climate Strategy - Europe, UK Department for Business, Energy and Industrial Strategy
Jen Austin, Policy Director, We Mean Business Coalition
Chair: Jill Duggan, Associate Fellow, Chatham House

The President of the European Commission, Ursula von der Leyen, has declared that she wants Europe to become ‘the first climate-neutral continent by 2050’, and in December 2019, the Commission presented the European Green Deal in order to achieve this objective. However, even though greenhouse gas emissions from the EU have fallen by more than 20 per cent since 1990, the Union remains the third largest emitter in the world, after the United States and China.

What are the opportunities and challenges for raising climate ambition in Europe?  Will the EU increase its Nationally Determined Contribution and what impact might this have globally? How might Brexit affect climate action in the EU and the UK?  The second event in the Chatham House COP26 Diplomatic Briefing Series will address these critical questions.

Anna Aberg

Research Analyst, Energy, Environment and Resources Programme
020 7314 3629




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COP26 Diplomatic Briefing Series: Climate Change and National Security

Research Event

25 March 2020 - 9:00am to 10:30am

Event participants

Lieutenant General Richard Nugee, Departmental Lead for Climate Change and Sustainability in the UK Ministry of Defence
Rear Admiral Neil Morisetti, Vice Dean (Public Policy) Engineering Sciences at the University College London and Associate Fellow at Chatham House
Dr. Patricia Lewis, Research Director for Conflict, Science and Technology, and Director of the International Security Programme at Chatham House
Professor Yacob Mulugetta, Professor of Energy and Development Policy at the University College London
Chair: Glada Lahn, Senior Research Fellow, Chatham House
Extreme weather, rising sea levels and a melting Arctic - the effects of climate change are posing an increasingly large threat to national security worldwide. Although the issue has gained traction within the international community in recent years, including within the UN Security Council, it is urgent that governments act more decisively to mitigate and respond to the threat, not least given that climate change is happening faster and in a more powerful way than originally anticipated.
 
The third event in the Chatham House COP26 Diplomatic Briefing Series – 'Climate Change and National Security' - will analyze how climate change acts as a threat multiplier, fuelling instability and endangering economic, social and political systems across the globe. The briefing will also provide recommendations of what governments and other stakeholders should do to develop effective responses.
 

Anna Aberg

Research Analyst, Energy, Environment and Resources Programme
020 7314 3629




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Episode 21: Zero Dark Thirty & Most Anticipated of 2013


  • Zero Dark Thirty Review
  • Our Top 10 Most Anticipated Films of 2013
  • What We Watched: Jiro: Dreams of Sushi, Take This Waltz, Futurama, The Great Happiness Space, Indie Game: The Movie, Somewhere Between, Lincoln & Chasing Ghosts

Next Episode: Reviews of Mama and The Last Stand


Thanks again to Jim and Patrick from The Director's Club Podcast for their support.

If you'd like to check out their podcast go here: http://directorsclubpodcast.com

If you would like to read Jim's awesome blog on why he loves movie podcasts, go here: http://instantjim.com/post/40536863106/moviepodcasts2012




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Nanodomains can persist at physiologic temperature in plasma membrane vesicles and be modulated by altering cell lipids [Research Articles]

The formation and properties of liquid-ordered (Lo) lipid domains (rafts) in the plasma membrane are still poorly understood. This limits our ability to manipulate ordered lipid domain-dependent biological functions. Giant plasma membrane vesicles (GPMVs) undergo large-scale phase separations into coexisting Lo and liquid-disordered lipid domains. However, large-scale phase separation in GPMVs detected by light microscopy is observed only at low temperatures. Comparing Förster resonance energy transfer-detected versus light microscopy-detected domain formation, we found that nanodomains, domains of nanometer size, persist at temperatures up to 20°C higher than large-scale phases, up to physiologic temperature. The persistence of nanodomains at higher temperatures is consistent with previously reported theoretical calculations. To investigate the sensitivity of nanodomains to lipid composition, GPMVs were prepared from mammalian cells in which sterol, phospholipid, or sphingolipid composition in the plasma membrane outer leaflet had been altered by cyclodextrin-catalyzed lipid exchange. Lipid substitutions that stabilize or destabilize ordered domain formation in artificial lipid vesicles had a similar effect on the thermal stability of nanodomains and large-scale phase separation in GPMVs, with nanodomains persisting at higher temperatures than large-scale phases for a wide range of lipid compositions. This indicates that it is likely that plasma membrane nanodomains can form under physiologic conditions more readily than large-scale phase separation. We also conclude that membrane lipid substitutions carried out in intact cells are able to modulate the propensity of plasma membranes to form ordered domains. This implies lipid substitutions can be used to alter biological processes dependent upon ordered domains.




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The grease trap: uncovering the mechanism of the hydrophobic lid in Cutibacterium acnes lipase [Research Articles]

Acne is one of the most common dermatological conditions, but the details of its pathology are unclear, and current management regimens often have adverse effects. Cutibacterium acnes is known as a major acne-associated bacterium that derives energy from lipase-mediated sebum lipid degradation. C. acnes is commensal, but lipase activity has been observed to differ among C. acnes types. For example, higher populations of the type IA strains are present in acne lesions with higher lipase activity. In the present study, we examined a conserved lipase in types IB and II that was truncated in type IA C. acnes strains. Closed, blocked, and open structures of C. acnes ATCC11828 lipases were elucidated by X-ray crystallography at 1.6–2.4 Å. The closed crystal structure, which is the most common form in aqueous solution, revealed that a hydrophobic lid domain shields the active site. By comparing closed, blocked, and open structures, we found that the lid domain-opening mechanisms of C. acnes lipases (CAlipases) involve the lid-opening residues, Phe-179 and Phe-211. To the best of our knowledge, this is the first structure-function study of CAlipases, which may help to shed light on the mechanisms involved in acne development and may aid in future drug design.




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Lipid rafts as a therapeutic target [Thematic Reviews]

Lipid rafts regulate the initiation of cellular metabolic and signaling pathways by organizing the pathway components in ordered microdomains on the cell surface. Cellular responses regulated by lipid rafts range from physiological to pathological, and the success of a therapeutic approach targeting "pathological" lipid rafts depends on the ability of a remedial agent to recognize them and disrupt pathological lipid rafts without affecting normal raft-dependent cellular functions. In this article, concluding the Thematic Review Series on Biology of Lipid Rafts, we review current experimental therapies targeting pathological lipid rafts, including examples of inflammarafts and clusters of apoptotic signaling molecule-enriched rafts. The corrective approaches include regulation of cholesterol and sphingolipid metabolism and membrane trafficking by using HDL and its mimetics, LXR agonists, ABCA1 overexpression, and cyclodextrins, as well as a more targeted intervention with apoA-I binding protein. Among others, we highlight the design of antagonists that target inflammatory receptors only in their activated form of homo- or heterodimers, when receptor dimerization occurs in pathological lipid rafts. Other therapies aim to promote raft-dependent physiological functions, such as augmenting caveolae-dependent tissue repair. The overview of this highly dynamic field will provide readers with a view on the emerging concept of targeting lipid rafts as a therapeutic strategy.




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The ins and outs of lipid rafts: functions in intracellular cholesterol homeostasis, microparticles, and cell membranes [Thematic Reviews]

Cellular membranes are not homogenous mixtures of proteins; rather, they are segregated into microdomains on the basis of preferential association between specific lipids and proteins. These microdomains, called lipid rafts, are well known for their role in receptor signaling on the plasma membrane (PM) and are essential to such cellular functions as signal transduction and spatial organization of the PM. A number of disease states, including atherosclerosis and other cardiovascular disorders, may be caused by dysfunctional maintenance of lipid rafts. Lipid rafts do not occur only in the PM but also have been found in intracellular membranes and extracellular vesicles (EVs). Here, we focus on discussing newly discovered functions of lipid rafts and microdomains in intracellular membranes, including lipid and protein trafficking from the ER, Golgi bodies, and endosomes to the PM, and we examine lipid raft involvement in the production and composition of EVs. Because lipid rafts are small and transient, visualization remains challenging. Future work with advanced techniques will continue to expand our knowledge about the roles of lipid rafts in cellular functioning.




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Hematopoiesis is regulated by cholesterol efflux pathways and lipid rafts: connections with cardiovascular diseases [Thematic Reviews]

Lipid rafts are highly ordered regions of the plasma membrane that are enriched in cholesterol and sphingolipids and play important roles in many cells. In hematopoietic stem and progenitor cells (HSPCs), lipid rafts house receptors critical for normal hematopoiesis. Lipid rafts also can bind and sequester kinases that induce negative feedback pathways to limit proliferative cytokine receptor cycling back to the cell membrane. Modulation of lipid rafts occurs through an array of mechanisms, with optimal cholesterol efflux one of the major regulators. As such, cholesterol homeostasis also regulates hematopoiesis. Increased lipid raft content, which occurs in response to changes in cholesterol efflux in the membrane, can result in prolonged receptor occupancy in the cell membrane and enhanced signaling. In addition, certain diseases, like diabetes, may contribute to lipid raft formation and affect cholesterol retention in rafts. In this review, we explore the role of lipid raft-related mechanisms in hematopoiesis and CVD (specifically, atherosclerosis) and discuss how defective cholesterol efflux pathways in HSPCs contribute to expansion of lipid rafts, thereby promoting myelopoiesis and thrombopoiesis. We also discuss the utility of cholesterol acceptors in contributing to lipid raft regulation and disruption, and highlight the potential to manipulate these pathways for therapeutic gain in CVD as well as other disorders with aberrant hematopoiesis.




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Lipid rafts in glial cells: role in neuroinflammation and pain processing [Thematic Reviews]

Activation of microglia and astrocytes secondary to inflammatory processes contributes to the development and perpetuation of pain with a neuropathic phenotype. This pain state presents as a chronic debilitating condition and affects a large population of patients with conditions like rheumatoid arthritis and diabetes, or after surgery, trauma, or chemotherapy. Here, we review the regulation of lipid rafts in glial cells and the role they play as a key component of neuroinflammatory sensitization of central pain signaling pathways. In this context, we introduce the concept of an inflammaraft (i-raft), enlarged lipid rafts harboring activated receptors and adaptor molecules and serving as an organizing platform to initiate inflammatory signaling and the cellular response. Characteristics of the inflammaraft include increased relative abundance of lipid rafts in inflammatory cells, increased content of cholesterol per raft, and increased levels of inflammatory receptors, such as toll-like receptor (TLR)4, adaptor molecules, ion channels, and enzymes in lipid rafts. This inflammaraft motif serves an important role in the membrane assembly of protein complexes, for example, TLR4 dimerization. Operating within this framework, we demonstrate the involvement of inflammatory receptors, redox molecules, and ion channels in the inflammaraft formation and the regulation of cholesterol and sphingolipid metabolism in the inflammaraft maintenance and disruption. Strategies for targeting inflammarafts, without affecting the integrity of lipid rafts in noninflammatory cells, may lead to developing novel therapies for neuropathic pain states and other neuroinflammatory conditions.




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Lipid rafts and neurodegeneration: structural and functional roles in physiologic aging and neurodegenerative diseases [Thematic Reviews]

Lipid rafts are small, dynamic membrane areas characterized by the clustering of selected membrane lipids as the result of the spontaneous separation of glycolipids, sphingolipids, and cholesterol in a liquid-ordered phase. The exact dynamics underlying phase separation of membrane lipids in the complex biological membranes are still not fully understood. Nevertheless, alterations in the membrane lipid composition affect the lateral organization of molecules belonging to lipid rafts. Neural lipid rafts are found in brain cells, including neurons, astrocytes, and microglia, and are characterized by a high enrichment of specific lipids depending on the cell type. These lipid rafts seem to organize and determine the function of multiprotein complexes involved in several aspects of signal transduction, thus regulating the homeostasis of the brain. The progressive decline of brain performance along with physiological aging is at least in part associated with alterations in the composition and structure of neural lipid rafts. In addition, neurodegenerative conditions, such as lysosomal storage disorders, multiple sclerosis, and Parkinson’s, Huntington’s, and Alzheimer’s diseases, are frequently characterized by dysregulated lipid metabolism, which in turn affects the structure of lipid rafts. Several events underlying the pathogenesis of these diseases appear to depend on the altered composition of lipid rafts. Thus, the structure and function of lipid rafts play a central role in the pathogenesis of many common neurodegenerative diseases.




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Lipid rafts as signaling hubs in cancer cell survival/death and invasion: implications in tumor progression and therapy [Thematic Reviews]

Cholesterol/sphingolipid-rich membrane domains, known as lipid rafts or membrane rafts, play a critical role in the compartmentalization of signaling pathways. Physical segregation of proteins in lipid rafts may modulate the accessibility of proteins to regulatory or effector molecules. Thus, lipid rafts serve as sorting platforms and hubs for signal transduction proteins. Cancer cells contain higher levels of intracellular cholesterol and lipid rafts than their normal non-tumorigenic counterparts. Many signal transduction processes involved in cancer development (insulin-like growth factor system and phosphatidylinositol 3-kinase-AKT) and metastasis [cluster of differentiation (CD)44] are dependent on or modulated by lipid rafts. Additional proteins playing an important role in several malignant cancers (e.g., transmembrane glycoprotein mucin 1) are also being detected in association with lipid rafts, suggesting a major role of lipid rafts in tumor progression. Conversely, lipid rafts also serve as scaffolds for the recruitment and clustering of Fas/CD95 death receptors and downstream signaling molecules leading to cell death-promoting raft platforms. The partition of death receptors and downstream signaling molecules in aggregated lipid rafts has led to the formation of the so-called cluster of apoptotic signaling molecule-enriched rafts, or CASMER, which leads to apoptosis amplification and can be pharmacologically modulated. These death-promoting rafts can be viewed as a linchpin from which apoptotic signals are launched. In this review, we discuss the involvement of lipid rafts in major signaling processes in cancer cells, including cell survival, cell death, and metastasis, and we consider the potential of lipid raft modulation as a promising target in cancer therapy.




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Lipid rafts and pathogens: the art of deception and exploitation [Thematic Reviews]

Lipid rafts, solid regions of the plasma membrane enriched in cholesterol and glycosphingolipids, are essential parts of a cell. Functionally, lipid rafts present a platform that facilitates interaction of cells with the outside world. However, the unique properties of lipid rafts required to fulfill this function at the same time make them susceptible to exploitation by pathogens. Many steps of pathogen interaction with host cells, and sometimes all steps within the entire lifecycle of various pathogens, rely on host lipid rafts. Such steps as binding of pathogens to the host cells, invasion of intracellular parasites into the cell, the intracellular dwelling of parasites, microbial assembly and exit from the host cell, and microbe transfer from one cell to another all involve lipid rafts. Interaction also includes modification of lipid rafts in host cells, inflicted by pathogens from both inside and outside the cell, through contact or remotely, to advance pathogen replication, to utilize cellular resources, and/or to mitigate immune response. Here, we provide a systematic overview of how and why pathogens interact with and exploit host lipid rafts, as well as the consequences of this interaction for the host, locally and systemically, and for the microbe. We also raise the possibility of modulation of lipid rafts as a therapeutic approach against a variety of infectious agents.




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Biology of Lipid Rafts: Introduction to the Thematic Review Series [Thematic Reviews]

Lipid rafts are organized plasma membrane microdomains, which provide a distinct level of regulation of cellular metabolism and response to extracellular stimuli, affecting a diverse range of physiologic and pathologic processes. This Thematic Review Series focuses on Biology of Lipid Rafts rather than on their composition or structure. The aim is to provide an overview of ideas on how lipid rafts are involved in regulation of different pathways and how they interact with other layers of metabolic regulation. Articles in the series will review the involvement of lipid rafts in regulation of hematopoiesis, production of extracellular vesicles, host interaction with infection, and the development and progression of cancer, neuroinflammation, and neurodegeneration, as well as the current outlook on therapeutic targeting of lipid rafts.




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GPIHBP1, a partner protein for lipoprotein lipase, is expressed only in capillary endothelial cells [Images In Lipid Research]




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Images in Lipid Research [Editorials]





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Chemical roadblocking of DNA transcription for nascent RNA display [RNA]

Site-specific arrest of RNA polymerases (RNAPs) is fundamental to several technologies that assess RNA structure and function. Current in vitro transcription “roadblocking” approaches inhibit transcription elongation by blocking RNAP with a protein bound to the DNA template. One limitation of protein-mediated transcription roadblocking is that it requires inclusion of a protein factor extrinsic to the minimal in vitro transcription reaction. In this work, we developed a chemical approach for halting transcription by Escherichia coli RNAP. We first established a sequence-independent method for site-specific incorporation of chemical lesions into dsDNA templates by sequential PCR and translesion synthesis. We then show that interrupting the transcribed DNA strand with an internal desthiobiotin-triethylene glycol modification or 1,N6-etheno-2'-deoxyadenosine base efficiently and stably halts Escherichia coli RNAP transcription. By encoding an intrinsic stall site within the template DNA, our chemical transcription roadblocking approach enables display of nascent RNA molecules from RNAP in a minimal in vitro transcription reaction.




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Finite-dimensional approximations to the Poincaré–Steklov operator for general elliptic boundary value problems in domains with cylindrical and periodic exits to infinity

S. A. Nazarov
Trans. Moscow Math. Soc. 80 (2020), 1-51.
Abstract, references and article information





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S2 Ep38: Crashing iPhones, ransomware tales and human chatbots – Naked Security Podcast

Get the latest cybersecurity news, opinion and advice.




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US–China Strategic Competition: The Quest for Global Technological Leadership

7 November 2019

The current dispute between the US and China goes far beyond trade tariffs and tit-for-tat reprisals: the underlying driver is a race for global technological supremacy. This paper examines the risks of greater strategic competition as well as potential solutions for mitigating the impacts of the US–China economic confrontation.

Marianne Schneider-Petsinger

Senior Research Fellow, US and the Americas Programme

Dr Jue Wang

Associate Fellow, Asia-Pacific Programme (based in Holland)

Dr Yu Jie

Senior Research Fellow on China, Asia-Pacific Programme

James Crabtree

Associate Fellow, Asia-Pacific Programme

Video: Marianne Schneider-Petsinger and Dr Yu Jie discuss key themes from the research paper

Summary

  • The underlying driver of the ongoing US–China trade war is a race for global technological dominance. President Trump has raised a number of issues regarding trade with China – including the US’s trade deficit with China and the naming of China as a currency manipulator. But at the heart of the ongoing tariff escalation are China’s policies and practices regarding forced technology transfer, intellectual property theft and non-market distortions.
  • As China’s international influence has expanded it has always been unlikely that Beijing would continue to accept existing global standards and institutions established and widely practised by developed countries based on ‘the Washington Consensus’.
  • China’s desire to be an alternative champion of technology standard-setting remains unfulfilled. Its ample innovation talent is a solid foundation in its quest for global technology supremacy but tightening controls over personal freedoms could undermine it and deter potential global partners.
  • It is unclear if Chinese government interventions will achieve the technological self-sufficiency Beijing has long desired. China’s approach to macroeconomic management diverges significantly from that of the US and other real market economies, particularly in its policy towards nurturing innovation.
  • Chinese actors are engaged in the globalization of technological innovation through exports and imports of high-tech goods and services; cross-border investments in technology companies and research and development (R&D) activities; cross-border R&D collaboration; and international techno-scientific research collaboration.
  • While the Chinese state pushes domestic companies and research institutes to engage in the globalization of technological innovation, its interventions in the high-tech sector have caused uneasiness in the West.
  • The current US response to its competition with China for technological supremacy, which leans towards decoupling, is unlikely to prove successful. The US has better chances of success if it focuses on America’s own competitiveness, works on common approaches to technology policy with like-minded partners around the globe and strengthens the international trading system.
  • A technically sound screening mechanism of foreign investment can prevent normal cross-border collaboration in technological innovation from being misused by geopolitical rival superpowers.




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Global Governance: Tackling Economic Nationalism – Japan-UK Partnership Perspectives

Invitation Only Research Event

20 February 2020 - 4:30pm to 21 February 2020 - 4:45pm

Tokyo, Japan

Event participants

Dr Robin Niblett CMG, Director, Chatham House  
Toshiro Mutoh, Honorary Chairman, Daiwa Institute of Research; CEO, Tokyo Organising Committee of the Olympic and Paralympic Game
José Manuel Barroso, Senior Adviser, Chatham House; President of the European Commission (2004-14); Prime Minister of Portugal (2002-04)
Akihiko Tanaka, President, National Graduate Institute for Policy Studies

This conference will be the fifth in an annual conference series exploring global geopolitical and geoeconomic trends and their respective influences on Japan and the UK.

This conference will be held in partnership with the Daiwa Institute of Research.

Attendance at this event is by invitation only. 

Lucy Ridout

Programme Administrator, Asia-Pacific Programme
+44 (0) 207 314 2761




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Tripping the Light-Fantastic

Invisibility is no longer confined to fiction. In a recent experiment, microwaves were bent around a cylinder and returned to their original trajectories, rendering the cylinder almost invisible at those wavelengths. This doesn't mean that we're ready for invisible humans (or spaceships), but by using Maxwell's equations, which are partial differential equations fundamental to electromagnetics, mathematicians have demonstrated that in some simple cases not seeing is believing, too. Part of this successful demonstration of invisibility is due to metamaterials electromagnetic materials that can be made to have highly unusual properties. Another ingredient is a mathematical transformation that stretches a point into a ball, "cloaking" whatever is inside. This transformation was discovered while researchers were pondering how a tumor could escape detection. Their attempts to improve visibility eventually led to the development of equations for invisibility. A more recent transformation creates an optical "wormhole," which tricks electromagnetic waves into behaving as if the topology of space has changed. We'll finish with this: For More Information: Metamaterial Electromagnetic Cloak at Microwave Frequencies, D. Schurig et al, Science, November 10, 2006.




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Holding the Lead Description

Researcher: Sidney Redner, Santa Fe Institute
Moment: Moment Title: Holding the Lead Description: Sidney Redner talks about how random walks relate to leads in basketball.




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Adding a New Wrinkle Description

Researcher: Norbert Stoop, MIT
Title: Adding a New Wrinkle
Description: Norbert Stoop talks about new research on the formation of wrinkles.




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Parallel threats of COVID-19, climate change, require 'brave, visionary and collaborative leadership': UN chief

And against the backdrop of threatened lives, crippled businesses and damaged economies, the UN chief warned the Petersberg Climate Dialogue in Berlin that the Sustainable Development Goals (SDGs) are also under threat.




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'Sweet City': the Costa Rica suburb that gave citizenship to bees, plants and trees

"Pollinators were the key," says Edgar Mora, reflecting on the decision to recognise every bee, bat, hummingbird and butterfly as a citizen of Curridabat during his 12-year spell as mayor.




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Biosafety Protocol News Issue 6 - Public Awareness and Participation: Experiences and Lessons Learned from Recent Initiatives




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The full transcripts of the Second Series of Regional Real-time Online Conferences on Risk Assessment and Risk Management (February 2010).




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Online Forum on Public Awareness, Education and Participation Concerning the Safe Transfer, Handling and Use of Living Modified Organisms (4 - 18 June 2012)




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The Information Note for Participants for COP-MOP 6 is now available.




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Report of the Africa Regional Capacity-building Workshop on Public Awareness, Education and Participation concerning the Safe Transfer, Handling and Use of Living Modified Organisms




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Report of the Asia-Pacific regional training workshop on public awareness, education and participation concerning the safe transfer, handling and use of LMOs is now available.