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An enzyme-based protocol for cell-free synthesis of nature-identical capsular oligosaccharides from Actinobacillus pleuropneumoniae serotype 1 [Enzymology]

Actinobacillus pleuropneumoniae (App) is the etiological agent of acute porcine pneumonia and responsible for severe economic losses worldwide. The capsule polymer of App serotype 1 (App1) consists of [4)-GlcNAc-β(1,6)-Gal-α-1-(PO4-] repeating units that are O-acetylated at O-6 of the GlcNAc. It is a major virulence factor and was used in previous studies in the successful generation of an experimental glycoconjugate vaccine. However, the application of glycoconjugate vaccines in the animal health sector is limited, presumably because of the high costs associated with harvesting the polymer from pathogen culture. Consequently, here we exploited the capsule polymerase Cps1B of App1 as an in vitro synthesis tool and an alternative for capsule polymer provision. Cps1B consists of two catalytic domains, as well as a domain rich in tetratricopeptide repeats (TPRs). We compared the elongation mechanism of Cps1B with that of a ΔTPR truncation (Cps1B-ΔTPR). Interestingly, the product profiles displayed by Cps1B suggested processive elongation of the nascent polymer, whereas Cps1B-ΔTPR appeared to work in a more distributive manner. The dispersity of the synthesized products could be reduced by generating single-action transferases and immobilizing them on individual columns, separating the two catalytic activities. Furthermore, we identified the O-acetyltransferase Cps1D of App1 and used it to modify the polymers produced by Cps1B. Two-dimensional NMR analyses of the products revealed O-acetylation levels identical to those of polymer harvested from App1 culture supernatants. In conclusion, we have established a protocol for the pathogen-free in vitro synthesis of tailored, nature-identical App1 capsule polymers.




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Virtual Breakfast: Europe in the Age of COVID-19: Priorities and Debates

Invitation Only Research Event

6 May 2020 - 9:00am to 10:00am

Event participants

Duncan Robinson, Charlemagne Columnist; Brussels Bureau Chief, the Economist
Chair: Pepijn Bergsen, Research Fellow, Europe Programme, Chatham House

The new European Commission had a bold new agenda when it began its work in December 2019, with climate change, digital transformation and strengthening European democracy among its priorities. Less than six months later, the European continent is in the midst of the worst crisis since the second World War and business as usual has been taken over by crisis management.

Has COVID-19 monopolized the agenda in Brussels? What priorities are still on the table and what debates have fallen victim to the coronavirus? Is the current crisis reigniting and exacerbating existing faultlines in the EU or creating new ones?

Reflecting on his first four months as the Economist’s Charlemagne columnist, the speaker will share what decision-making in Brussels looks like during a pandemic and what debates are dominating conversations in the EU capital today.

Event attributes

Chatham House Rule

Alina Lyadova

Europe Programme Coordinator




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Webinar: European Democracy in the Last 100 Years: Economic Crises and Political Upheaval

Members Event Webinar

6 May 2020 - 1:00pm to 2:00pm

Event participants

Pepijn Bergsen, Research Fellow, Europe Programme, Chatham House

Dr Sheri Berman, Professor of Political Science, Barnard College

Chair: Hans Kundnani, Senior Research Fellow, Europe Programme, Chatham House

 

In the last 100 years, global economic crises from the Great Depression of the 1930s to the 2008 financial crash have contributed to significant political changes in Europe, often leading to a rise in popularity for extremist parties and politics. As Europe contends with a perceived crisis of democracy - now compounded by the varied responses to the coronavirus outbreak - how should we understand the relationship between externally-driven economic crises, political upheaval and democracy?

The panellists will consider the parallels between the political responses to some of the greatest economic crises Europe has experienced in the last century. Given that economic crises often transcend borders, why does political disruption vary between democracies? What can history tell us about the potential political impact of the unfolding COVID-19-related economic crisis? And will the unprecedented financial interventions by governments across Europe fundamentally change the expectations citizens have of the role government should play in their lives?

This event is based on a recent article in The World Today by Hans Kundnani and Pepijn Bergsen who are both researchers in Chatham House's Europe Programme. 'Crawling from the Wreckage' is the first in a series of articles that look at key themes in European political discourse from the last century. You can read the article here

This event is open to Chatham House Members. Not a member? Find out more.




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Reviews: Euro crime writers

3 June 2013 , Volume 69, Number 3

You’ve read Mankell and Larsson, but here are others to look out for:




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Ebb and flow of Europe's human tide

1 August 2014 , Volume 70, Number 4

The map (click below to download the PDF) shows how the proportion of migrants living in countries of the European Union has changed since 1990.

Alan Philps

Editor, The World Today




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Trade, Technology and National Security: Will Europe Be Trapped Between the US and China?

Invitation Only Research Event

2 March 2020 - 8:00am to 9:15am

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

Event participants

Sir Simon Fraser, Managing Partner of Flint Global; Deputy Chairman, Chatham House
Chair: Marianne Schneider-Petsinger, Senior Research Fellow, US and the Americas Programme, Chatham House

The US and China have entered into an increasingly confrontational relationship over trade and technology. This may force Europe to make difficult choices between the two economic superpowers – or perform a balancing act. Although the recent US-China phase-1 trade deal has eased the relationship for now, the trade and technology tensions are a structural issue and are likely to persist.

The debate over Huawei’s participation in 5G networks is an example of how the UK and other countries may face competing priorities in economic, security and foreign policy. Can Europe avoid a binary choice between the US and China? Is it possible for the EU to position itself as a third global power in trade, technology and standard-setting? What strategies should Europeans adopt to keep the US and China engaged in the rules-based international order and what does the future hold for trade multilateralism?

Sir Simon Fraser will join us for a discussion on Europe’s future role between the US and China. Sir Simon is Managing Partner of Flint Global and Deputy Chairman of Chatham House. He previously served as Permanent Secretary at the Foreign and Commonwealth Office (FCO) and Head of the UK Diplomatic Service from 2010 to 2015. Prior to that he was Permanent Secretary at the UK Department for Business, Innovation and Skills. He has also served as Director General for Europe in the FCO and Chief of Staff to European Trade Commissioner Peter Mandelson.

We would like to take this opportunity to thank founding partner AIG and supporting partners Clifford Chance LLP, Diageo plc, and EY for their generous support of the Chatham House Global Trade Policy Forum.

Event attributes

Chatham House Rule

US and Americas Programme




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Virtual Roundtable: US and European Responses to Coronavirus

Invitation Only Research Event

20 March 2020 - 1:00pm to 1:45pm

Event participants

Anne Applebaum, Staff Writer, The Atlantic; Pulitzer-Prize Winning Historian
Amy Pope, Partner, Schillings; Deputy Homeland Security Advisor, US National Security Council, 2015 - 17
Chair: Dr Leslie Vinjamuri, Director, US and the Americas Programme, Chatham House

This event is part of the Inaugural Virtual Roundtable Series on the US, Americas and the State of the World and will take place virtually only.  Participants should not come to Chatham House for these events.

Department/project

US and Americas Programme




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Dopamine transporter trafficking and Rit2 GTPase: Mechanism of action and in vivo impact [Neurobiology]

Following its evoked release, dopamine (DA) signaling is rapidly terminated by presynaptic reuptake, mediated by the cocaine-sensitive DA transporter (DAT). DAT surface availability is dynamically regulated by endocytic trafficking, and direct protein kinase C (PKC) activation acutely diminishes DAT surface expression by accelerating DAT internalization. Previous cell line studies demonstrated that PKC-stimulated DAT endocytosis requires both Ack1 inactivation, which releases a DAT-specific endocytic brake, and the neuronal GTPase, Rit2, which binds DAT. However, it is unknown whether Rit2 is required for PKC-stimulated DAT endocytosis in DAergic terminals or whether there are region- and/or sex-dependent differences in PKC-stimulated DAT trafficking. Moreover, the mechanisms by which Rit2 controls PKC-stimulated DAT endocytosis are unknown. Here, we directly examined these important questions. Ex vivo studies revealed that PKC activation acutely decreased DAT surface expression selectively in ventral, but not dorsal, striatum. AAV-mediated, conditional Rit2 knockdown in DAergic neurons impacted baseline DAT surface:intracellular distribution in DAergic terminals from female ventral, but not dorsal, striatum. Further, Rit2 was required for PKC-stimulated DAT internalization in both male and female ventral striatum. FRET and surface pulldown studies in cell lines revealed that PKC activation drives DAT-Rit2 surface dissociation and that the DAT N terminus is required for both PKC-mediated DAT-Rit2 dissociation and DAT internalization. Finally, we found that Rit2 and Ack1 independently converge on DAT to facilitate PKC-stimulated DAT endocytosis. Together, our data provide greater insight into mechanisms that mediate PKC-regulated DAT internalization and reveal unexpected region-specific differences in PKC-stimulated DAT trafficking in bona fide DAergic terminals.




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S-Palmitoylation of the sodium channel Nav1.6 regulates its activity and neuronal excitability [Cell Biology]

S-Palmitoylation is a reversible post-translational lipid modification that dynamically regulates protein functions. Voltage-gated sodium channels are subjected to S-palmitoylation and exhibit altered functions in different S-palmitoylation states. Our aim was to investigate whether and how S-palmitoylation regulates Nav1.6 channel function and to identify S-palmitoylation sites that can potentially be pharmacologically targeted. Acyl-biotin exchange assay showed that Nav1.6 is modified by S-palmitoylation in the mouse brain and in a Nav1.6 stable HEK 293 cell line. Using whole-cell voltage clamp, we discovered that enhancing S-palmitoylation with palmitic acid increases Nav1.6 current, whereas blocking S-palmitoylation with 2-bromopalmitate reduces Nav1.6 current and shifts the steady-state inactivation in the hyperpolarizing direction. Three S-palmitoylation sites (Cys1169, Cys1170, and Cys1978) were identified. These sites differentially modulate distinct Nav1.6 properties. Interestingly, Cys1978 is exclusive to Nav1.6 among all Nav isoforms and is evolutionally conserved in Nav1.6 among most species. Cys1978 S-palmitoylation regulates current amplitude uniquely in Nav1.6. Furthermore, we showed that eliminating S-palmitoylation at specific sites alters Nav1.6-mediated excitability in dorsal root ganglion neurons. Therefore, our study reveals S-palmitoylation as a potential isoform-specific mechanism to modulate Nav activity and neuronal excitability in physiological and diseased conditions.




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Roles of the DOCK-D family proteins in a mouse model of neuroinflammation [Neurobiology]

The DOCK-D (dedicator of cytokinesis D) family proteins are atypical guanine nucleotide exchange factors that regulate Rho GTPase activity. The family consists of Zizimin1 (DOCK9), Zizimin2 (DOCK11), and Zizimin3 (DOCK10). Functions of the DOCK-D family proteins are presently not well-explored, and the role of the DOCK-D family in neuroinflammation is unknown. In this study, we generated three mouse lines in which DOCK9 (DOCK9−/−), DOCK10 (DOCK10−/−), or DOCK11 (DOCK11−/−) had been deleted and examined the phenotypic effects of these gene deletions in MOG35–55 peptide-induced experimental autoimmune encephalomyelitis, an animal model of the neuroinflammatory disorder multiple sclerosis. We found that all the gene knockout lines were healthy and viable. The only phenotype observed under normal conditions was a slightly smaller proportion of B cells in splenocytes in DOCK10−/− mice than in the other mouse lines. We also found that the migration ability of macrophages is impaired in DOCK10−/− and DOCK11−/− mice and that the severity of experimental autoimmune encephalomyelitis was ameliorated only in DOCK10−/− mice. No apparent phenotype was observed for DOCK9−/− mice. Further investigations indicated that lipopolysaccharide stimulation up-regulates DOCK10 expression in microglia and that microglial migration is decreased in DOCK10−/− mice. Up-regulation of C–C motif chemokine ligand 2 (CCL2) expression induced by activation of Toll-like receptor 4 or 9 signaling was reduced in DOCK10−/− astrocytes compared with WT astrocytes. Taken together, our findings suggest that DOCK10 plays a role in innate immunity and neuroinflammation and might represent a potential therapeutic target for managing multiple sclerosis.




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A kinesin adapter directly mediates dendritic mRNA localization during neural development in mice [Neurobiology]

Motor protein-based active transport is essential for mRNA localization and local translation in animal cells, yet how mRNA granules interact with motor proteins remains poorly understood. Using an unbiased yeast two–hybrid screen for interactions between murine RNA-binding proteins (RBPs) and motor proteins, here we identified protein interaction with APP tail-1 (PAT1) as a potential direct adapter between zipcode-binding protein 1 (ZBP1, a β-actin RBP) and the kinesin-I motor complex. The amino acid sequence of mouse PAT1 is similar to that of the kinesin light chain (KLC), and we found that PAT1 binds to KLC directly. Studying PAT1 in mouse primary hippocampal neuronal cultures from both sexes and using structured illumination microscopic imaging of these neurons, we observed that brain-derived neurotrophic factor (BDNF) enhances co-localization of dendritic ZBP1 and PAT1 within granules that also contain kinesin-I. PAT1 is essential for BDNF-stimulated neuronal growth cone development and dendritic protrusion formation, and we noted that ZBP1 and PAT1 co-locate along with β-actin mRNA in actively transported granules in living neurons. Acute disruption of the PAT1–ZBP1 interaction in neurons with PAT1 siRNA or a dominant-negative ZBP1 construct diminished localization of β-actin mRNA but not of Ca2+/calmodulin-dependent protein kinase IIα (CaMKIIα) mRNA in dendrites. The aberrant β-actin mRNA localization resulted in abnormal dendritic protrusions and growth cone dynamics. These results suggest a critical role for PAT1 in BDNF-induced β-actin mRNA transport during postnatal development and reveal a new molecular mechanism for mRNA localization in vertebrates.




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Small-molecule agonists of the RET receptor tyrosine kinase activate biased trophic signals that are influenced by the presence of GFRa1 co-receptors [Neurobiology]

Glial cell line–derived neurotrophic factor (GDNF) is a growth factor that regulates the health and function of neurons and other cells. GDNF binds to GDNF family receptor α1 (GFRa1), and the resulting complex activates the RET receptor tyrosine kinase and subsequent downstream signals. This feature restricts GDNF activity to systems in which GFRa1 and RET are both present, a scenario that may constrain GDNF breadth of action. Furthermore, this co-dependence precludes the use of GDNF as a tool to study a putative functional cross-talk between GFRa1 and RET. Here, using biochemical techniques, terminal deoxynucleotidyl transferase dUTP nick end labeling staining, and immunohistochemistry in murine cells, tissues, or retinal organotypic cultures, we report that a naphthoquinone/quinolinedione family of small molecules (Q compounds) acts as RET agonists. We found that, like GDNF, signaling through the parental compound Q121 is GFRa1-dependent. Structural modifications of Q121 generated analogs that activated RET irrespective of GFRa1 expression. We used these analogs to examine RET–GFRa1 interactions and show that GFRa1 can influence RET-mediated signaling and enhance or diminish AKT Ser/Thr kinase or extracellular signal-regulated kinase signaling in a biased manner. In a genetic mutant model of retinitis pigmentosa, a lead compound, Q525, afforded sustained RET activation and prevented photoreceptor neuron loss in the retina. This work uncovers key components of the dynamic relationships between RET and its GFRa co-receptor and provides RET agonist scaffolds for drug development.




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Brain manganese and the balance between essential roles and neurotoxicity [Molecular Bases of Disease]

Manganese (Mn) is an essential micronutrient required for the normal development of many organs, including the brain. Although its roles as a cofactor in several enzymes and in maintaining optimal physiology are well-known, the overall biological functions of Mn are rather poorly understood. Alterations in body Mn status are associated with altered neuronal physiology and cognition in humans, and either overexposure or (more rarely) insufficiency can cause neurological dysfunction. The resultant balancing act can be viewed as a hormetic U-shaped relationship for biological Mn status and optimal brain health, with changes in the brain leading to physiological effects throughout the body and vice versa. This review discusses Mn homeostasis, biomarkers, molecular mechanisms of cellular transport, and neuropathological changes associated with disruptions of Mn homeostasis, especially in its excess, and identifies gaps in our understanding of the molecular and biochemical mechanisms underlying Mn homeostasis and neurotoxicity.




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A kainate receptor-selective RNA aptamer [Neurobiology]

Kainate and α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptors are two major, closely related receptor subtypes in the glutamate ion channel family. Excessive activities of these receptors have been implicated in a number of central nervous system diseases. Designing potent and selective antagonists of these receptors, especially of kainate receptors, is useful for developing potential treatment strategies for these neurological diseases. Here, we report on two RNA aptamers designed to individually inhibit kainate and AMPA receptors. To improve the biostability of these aptamers, we also chemically modified these aptamers by substituting their 2'-OH group with 2'-fluorine. These 2'-fluoro aptamers, FB9s-b and FB9s-r, were markedly resistant to RNase-catalyzed degradation, with a half-life of ∼5 days in rat cerebrospinal fluid or serum-containing medium. Furthermore, FB9s-r blocked AMPA receptor activity. Aptamer FB9s-b selectively inhibited GluK1 and GluK2 kainate receptor subunits, and also GluK1/GluK5 and GluK2/GluK5 heteromeric kainate receptors with equal potency. This inhibitory profile makes FB9s-b a powerful template for developing tool molecules and drug candidates for treatment of neurological diseases involving excessive activities of the GluK1 and GluK2 subunits.




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Towards a Low-Carbon Future: China and the European Union

1 October 2007 , Number 7

Chinese goods seem to flood western markets: computers, light bulbs, sweaters, T-shirts and bras. The instinct is to try to protect home producers. A better plan would be to work with Beijing on producing products for the next industrial revolution – the creation of a low-carbon economy. But that would take real vision and political courage.

Bernice Lee OBE

Research Director; Executive Director, Hoffmann Centre for Sustainable Resource Economy

Nick Mabey

Founding director and Chief Executive, E3G




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The multilevel identity politics of the 2019 Eurovision Song Contest

7 May 2020 , Volume 96, Number 3

Galia Press-Barnathan and Naama Lutz

This article uses the 2019 Eurovision Song Contest (ESC) that took place in Tel Aviv to explore how cultural mega-events serve both as political arenas and as tools for identity construction, negotiation and contestation. These processes of identity politics are all conducted across national–subnational–international–transnational levels. The hosting of mega-events fleshes out these multiple processes in a very strong manner. We first discuss the politics of hosting mega-events in general. We then examine the identity politics associated more specifically with the Eurovision Song Contest, before examining in depth the complex forms of identity politics emerging around the competition following the 2018 Israeli victory. We suggest that it is important to study together the multiple processes—domestic, international and transnational—of identity politics that take place around the competition, as they interact with each other. Consequently, we follow the various stakeholders involved at these different levels and their interactions. We examine the internal identity negotiation process in Israel surrounding the event, the critical actors debating how to use the stage to challenge the liberal, western, ‘normal’ identity Israel hoped to project in the contest and how other stakeholders (participating states, national broadcasting agencies, participating artists) reacted to them, and finally we examine the behaviour of the institution in charge, the European Broadcasting Union, and national governments. We contribute to the study of mega-events as fields of contestation, to the understanding of the complex, multilevel nature of national identity construction, negotiation and contestation in the current era, and more broadly to the role that popular culture plays in this context.




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The Rise of the Far Right Across Europe




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Restructuring the European State




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Undercurrents: Episode 3 – Duterte’s War on Drugs, and European Security




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Keeping the Peace: The New Landscape for European Security and Defence




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Undercurrents: Episode 6 - Tribes of Europe, and the International Women's Rights Agenda at the UN




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Islam, Immigration and Identity in Europe




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The European Union Before, During and After Brexit




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Cyber Security Series: Comparing Best Practice Across Europe




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Can Europe Save the Liberal International Order?




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The Geopolitical Positioning of Europe




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Screening Room: Inside Europe - We Quit




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Are ‘Digital Parties’ the Future of Democracy in Europe?




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Undercurrents: Bonus Episode - Germany and the European Elections




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Serbia, the Balkans and the European Union




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




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Getting to a New Deal: Guidance for the United States, Europe and Iran




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How Far Does the European Union’s Influence Extend?




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




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The Climate Briefing: Episode 2 - European Climate Ambitions




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A neuroglobin-based high-affinity ligand trap reverses carbon monoxide-induced mitochondrial poisoning [Molecular Biophysics]

Carbon monoxide (CO) remains the most common cause of human poisoning. The consequences of CO poisoning include cardiac dysfunction, brain injury, and death. CO causes toxicity by binding to hemoglobin and by inhibiting mitochondrial cytochrome c oxidase (CcO), thereby decreasing oxygen delivery and inhibiting oxidative phosphorylation. We have recently developed a CO antidote based on human neuroglobin (Ngb-H64Q-CCC). This molecule enhances clearance of CO from red blood cells in vitro and in vivo. Herein, we tested whether Ngb-H64Q-CCC can also scavenge CO from CcO and attenuate CO-induced inhibition of mitochondrial respiration. Heart tissue from mice exposed to 3% CO exhibited a 42 ± 19% reduction in tissue respiration rate and a 33 ± 38% reduction in CcO activity compared with unexposed mice. Intravenous infusion of Ngb-H64Q-CCC restored respiration rates to that of control mice correlating with higher electron transport chain CcO activity in Ngb-H64Q-CCC–treated compared with PBS-treated, CO-poisoned mice. Further, using a Clark-type oxygen electrode, we measured isolated rat liver mitochondrial respiration in the presence and absence of saturating solutions of CO (160 μm) and nitric oxide (100 μm). Both CO and NO inhibited respiration, and treatment with Ngb-H64Q-CCC (100 and 50 μm, respectively) significantly reversed this inhibition. These results suggest that Ngb-H64Q-CCC mitigates CO toxicity by scavenging CO from carboxyhemoglobin, improving systemic oxygen delivery and reversing the inhibitory effects of CO on mitochondria. We conclude that Ngb-H64Q-CCC or other CO scavengers demonstrate potential as antidotes that reverse the clinical and molecular effects of CO poisoning.




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What the European Green Deal Means for the UK

26 February 2020

Patrick Schröder

Senior Research Fellow, Energy, Environment and Resources Programme
As a COP26 host, Britain’s climate policy is in the spotlight. It has three routes it can take in response to the latest climate policy developments of the EU.

2020-02-25-Leyen.jpg

European Commission President Ursula von der Leyen unveils the European Green Deal in December 2019. Photo: Getty Images.

In December 2019, the EU launched the European Green Deal, a comprehensive policy package which aims to make the continent carbon-neutral by 2050. It contains a wide range of legal and policy measures including support for restoring ecosystems and biodiversity, low-carbon mobility, and sustainable food systems and healthy diets.

Even though the UK has now left the EU, and the UK government has made clear that there will be no regulatory alignment and no rule-taking from the EU, this will affect Britain’s markets, trade negotiations and stance in global climate action.

The UK has essentially three choices in how to react. First, non-alignment, with low ambition for domestic climate and environmental policies and product standards; second, so-called dynamic alignment, which means non-regression on existing environmental regulations, with domestic UK policies mirroring those of the EU in the future; third, non-alignment but higher ambition, with a domestic policy agenda to emerge as global leader on climate and green industrial development.

What would be the consequences of each of these three options?  

Non-alignment

There is concern that the UK might be going down this route, swapping an established set of stringent EU environmental protections for a new set of deliberately loose regulations. For instance, standards on air pollution have been watered down in the new UK Environment Bill.

As part of the European Green Deal, a carbon border adjustment tax to prevent ‘carbon leakage’  – companies relocating to countries with laxer climate policy outside the EU to avoid higher costs, with the result of increasing overall emissions  – was also announced. The EU has already threatened to potentially apply this mechanism against the UK as part of its policy to ensure a ‘level playing field’ in trade between the two.

Non-alignment on European carbon taxation and border adjustment would help to facilitate a quick trade deal with the US but it would clearly make it more difficult for UK businesses to sell into the EU market.

Furthermore, the UK’s and the EU’s climate security concerns and interests continue to be closely tied together. Ignoring European climate policy developments might jeopardize the UK’s long-term climate security.

Dynamic alignment and mirroring future standards

This would be beneficial to the future industrial competitiveness of the UK’s manufacturing sector.

The European Green Deal is more than a set of ambitious environmental policies. It also includes comprehensive plans for industrial policies, digitalization, financing mechanisms and investment programmes.

A new Circular Economy Action Plan to be published in March 2020 (a leaked draft version is available) will introduce a set of new targets and regulations on a range of products. The aim is that ‘by 2030, only safer, circular and sustainable products should be placed on the EU market’.

We can expect to see new eco-design requirements for information and communication technologies, and a revision of laws on hazardous substances in electrical and electronic equipment. The European Green Deal also aims to boost trade in secondary raw materials with regional initiatives aimed at ‘harmonizing national end-of-waste and by-product criteria’. Those could be a first step towards EU-wide criteria.

Furthermore, the European Strategy for Data will facilitate the development of a ‘single market for data’ and develop electronic product passports which can improve the availability of information of products sold in the EU to tackle false green claims.

The UK would benefit from mirroring these industrial policies domestically to achieve equivalence of standards. This could facilitate a closer partnership and would potentially also offer chances to UK businesses in the green technology sector to benefit not only in terms of EU market access, but also from the European Green Deal investment plan – a €1 trillion opportunity.

Higher ambition: aiming for global leadership

This gives the UK the unique opportunity to become a frontrunner. There are many challenges to implementing the European Green Deal, such as member states with little interest in green issues, which the UK can avoid.

The new UK Environment Bill is the first example of a policy departure from EU regulations. While there are some elements that point to a loosening of standard, in statements accompanying the bill, the Department for Environment, Food and Rural Affairs has insisted that the UK will not be bound by future EU green rules and even ‘go beyond the EU’s level of ambition’ on the environment.

For example, the bill introduces new charges for single-use plastic items to minimize their use and incentivize reusable alternatives. Plus, the UK aims to exceed the EU’s level of ambition to create global action by introducing powers to stop the exports of plastic waste to developing countries.

Taking a global leadership role on climate would also benefit the UK's climate diplomacy to make this year’s COP 26 (jointly hosted with Italy) in Glasgow a success. The European Green Deal agenda sets a new benchmark for climate action and shows global leadership. If the UK also wants to be seen as leading the climate and sustainability agenda, it can scarcely afford to be seen as falling behind.




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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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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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A kainate receptor-selective RNA aptamer [Neurobiology]

Kainate and α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptors are two major, closely related receptor subtypes in the glutamate ion channel family. Excessive activities of these receptors have been implicated in a number of central nervous system diseases. Designing potent and selective antagonists of these receptors, especially of kainate receptors, is useful for developing potential treatment strategies for these neurological diseases. Here, we report on two RNA aptamers designed to individually inhibit kainate and AMPA receptors. To improve the biostability of these aptamers, we also chemically modified these aptamers by substituting their 2'-OH group with 2'-fluorine. These 2'-fluoro aptamers, FB9s-b and FB9s-r, were markedly resistant to RNase-catalyzed degradation, with a half-life of ∼5 days in rat cerebrospinal fluid or serum-containing medium. Furthermore, FB9s-r blocked AMPA receptor activity. Aptamer FB9s-b selectively inhibited GluK1 and GluK2 kainate receptor subunits, and also GluK1/GluK5 and GluK2/GluK5 heteromeric kainate receptors with equal potency. This inhibitory profile makes FB9s-b a powerful template for developing tool molecules and drug candidates for treatment of neurological diseases involving excessive activities of the GluK1 and GluK2 subunits.




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Vote for Naked Security in the European Blogger Awards 2020!

If you enjoy what you read, hear and see from the Naked Security team, please vote for us - it means a lot!



  • award
  • European Security Blogger Awards
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euromicron AG takes on Funkwerk as a strategic anchor investor

euromicron AG, a medium-sized technology group and specialist for networking business and production processes, has taken on Funkwerk AG, Kölleda, as a strategic anchor investor. Funkwerk AG is a leading provider of innovative communication, information and security systems and intends to acquire a total of up to around 28% of euromicron AG’s increased share capital following the implementation of the resolved capital measures.




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euromicron AG improves earnings in first half of 2019

Consolidated sales of EUR 146.7 million EBITDA (before IFRS 16) increased strongly by EUR 3.8 million to EUR 2.1 million Forecast for 2019 as a whole confirmed Working capital ratio declines by 2 percentage points to 10.6% euromicron AG, a medium-sized technology group and specialist for the digital networking of business and production processes, published its preliminary figures for the first half of 2019 today.




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euromicron AG publishes 2019 Half-Year Report

Final half-year figures equivalent to the published figures EUR 3.8 million increase in EBITDA (before IFRS 16) shows improved quality of the margin Forecast for 2019 as a whole confirmed euromicron AG, a medium-sized technology group and specialist for the digital networking of business and production processes, published its report for the first half of 2019 today.




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euromicron AG bundles digital competencies and forms Digital Hub

euromicron AG, a medium-sized technology group and specialist for the digital support of business processes through secure infrastructures, is pooling its digital expertise at KORAMIS GmbH, the group subsidiary that specializes in cyber security and automation. With focus on digital platforms and services KORAMIS’ portfolio will also cover the areas Smart IoT, Smart Building as well as Data Management in the future. For this step the management of KORAMIS GmbH was extended by Andreas Schmidt.




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euromicron AG successfully completes 2019 capital increase

euromicron AG, a medium-sized technology group and expert on the digital networking of business and production processes, has now fully placed the capital increase it resolved on July 10, 2019.




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euromicron AG’s Annual General Meeting adopts all agenda items and elects new Supervisory Board

euromicron AG, a medium-sized technology group and expert on digital networking of business and production processes, held its Annual General Meeting 2019 in Frankfurt/Main on August 29, 2019. 42 percent of the share capital was represented. At the Annual General Meeting, the Executive Board reported on the operating performance in fiscal year 2018 and in the first half of 2019 and gave an outlook on the current fiscal year. One focus was on the implementation of the measures initiated to focus on and further develop the business model.