bi Proximity Dependent Biotinylation: Key Enzymes and Adaptation to Proteomics Approaches [Reviews] By feedproxy.google.com Published On :: 2020-05-01T00:05:26-07:00 The study of protein subcellular distribution, their assembly into complexes and the set of proteins with which they interact with is essential to our understanding of fundamental biological processes. Complementary to traditional assays, proximity-dependent biotinylation (PDB) approaches coupled with mass spectrometry (such as BioID or APEX) have emerged as powerful techniques to study proximal protein interactions and the subcellular proteome in the context of living cells and organisms. Since their introduction in 2012, PDB approaches have been used in an increasing number of studies and the enzymes themselves have been subjected to intensive optimization. How these enzymes have been optimized and considerations for their use in proteomics experiments are important questions. Here, we review the structural diversity and mechanisms of the two main classes of PDB enzymes: the biotin protein ligases (BioID) and the peroxidases (APEX). We describe the engineering of these enzymes for PDB and review emerging applications, including the development of PDB for coincidence detection (split-PDB). Lastly, we briefly review enzyme selection and experimental design guidelines and reflect on the labeling chemistries and their implication for data interpretation. Full Article
bi A comprehensive evaluation of a typical plant telomeric G-quadruplex (G4) DNA reveals the dynamics of G4 formation, rearrangement, and unfolding [Plant Biology] By feedproxy.google.com Published On :: 2020-04-17T00:06:05-07:00 Telomeres are specific nucleoprotein structures that are located at the ends of linear eukaryotic chromosomes and play crucial roles in genomic stability. Telomere DNA consists of simple repeats of a short G-rich sequence: TTAGGG in mammals and TTTAGGG in most plants. In recent years, the mammalian telomeric G-rich repeats have been shown to form G-quadruplex (G4) structures, which are crucial for modulating telomere functions. Surprisingly, even though plant telomeres are essential for plant growth, development, and environmental adaptions, only few reports exist on plant telomeric G4 DNA (pTG4). Here, using bulk and single-molecule assays, including CD spectroscopy, and single-molecule FRET approaches, we comprehensively characterized the structure and dynamics of a typical plant telomeric sequence, d[GGG(TTTAGGG)3]. We found that this sequence can fold into mixed G4s in potassium, including parallel and antiparallel structures. We also directly detected intermediate dynamic transitions, including G-hairpin, parallel G-triplex, and antiparallel G-triplex structures. Moreover, we observed that pTG4 is unfolded by the AtRecQ2 helicase but not by AtRecQ3. The results of our work shed light on our understanding about the existence, topological structures, stability, intermediates, unwinding, and functions of pTG4. Full Article
bi Structural basis of specific inhibition of extracellular activation of pro- or latent myostatin by the monoclonal antibody SRK-015 [Molecular Biophysics] By feedproxy.google.com Published On :: 2020-04-17T00:06:05-07:00 Myostatin (or growth/differentiation factor 8 (GDF8)) is a member of the transforming growth factor β superfamily of growth factors and negatively regulates skeletal muscle growth. Its dysregulation is implicated in muscle wasting diseases. SRK-015 is a clinical-stage mAb that prevents extracellular proteolytic activation of pro- and latent myostatin. Here we used integrated structural and biochemical approaches to elucidate the molecular mechanism of antibody-mediated neutralization of pro-myostatin activation. The crystal structure of pro-myostatin in complex with 29H4-16 Fab, a high-affinity variant of SRK-015, at 2.79 Å resolution revealed that the antibody binds to a conformational epitope in the arm region of the prodomain distant from the proteolytic cleavage sites. This epitope is highly sequence-divergent, having only limited similarity to other closely related members of the transforming growth factor β superfamily. Hydrogen/deuterium exchange MS experiments indicated that antibody binding induces conformational changes in pro- and latent myostatin that span the arm region, the loops contiguous to the protease cleavage sites, and the latency-associated structural elements. Moreover, negative-stain EM with full-length antibodies disclosed a stable, ring-like antigen–antibody structure in which the two Fab arms of a single antibody occupy the two arm regions of the prodomain in the pro- and latent myostatin homodimers, suggesting a 1:1 (antibody:myostatin homodimer) binding stoichiometry. These results suggest that SRK-015 binding stabilizes the latent conformation and limits the accessibility of protease cleavage sites within the prodomain. These findings shed light on approaches that specifically block the extracellular activation of growth factors by targeting their precursor forms. Full Article
bi Biochemical and structural insights into how amino acids regulate pyruvate kinase muscle isoform 2 [Enzymology] By feedproxy.google.com Published On :: 2020-04-17T00:06:05-07:00 Pyruvate kinase muscle isoform 2 (PKM2) is a key glycolytic enzyme involved in ATP generation and critical for cancer metabolism. PKM2 is expressed in many human cancers and is regulated by complex mechanisms that promote tumor growth and proliferation. Therefore, it is considered an attractive therapeutic target for modulating tumor metabolism. Various stimuli allosterically regulate PKM2 by cycling it between highly active and less active states. Several small molecules activate PKM2 by binding to its intersubunit interface. Serine and cysteine serve as an activator and inhibitor of PKM2, respectively, by binding to its amino acid (AA)-binding pocket, which therefore represents a potential druggable site. Despite binding similarly to PKM2, how cysteine and serine differentially regulate this enzyme remains elusive. Using kinetic analyses, fluorescence binding, X-ray crystallography, and gel filtration experiments with asparagine, aspartate, and valine as PKM2 ligands, we examined whether the differences in the side-chain polarity of these AAs trigger distinct allosteric responses in PKM2. We found that Asn (polar) and Asp (charged) activate PKM2 and that Val (hydrophobic) inhibits it. The results also indicate that both Asn and Asp can restore the activity of Val-inhibited PKM2. AA-bound crystal structures of PKM2 displayed distinctive interactions within the binding pocket, causing unique allosteric effects in the enzyme. These structure-function analyses of AA-mediated PKM2 regulation shed light on the chemical requirements in the development of mechanism-based small-molecule modulators targeting the AA-binding pocket of PKM2 and provide broader insights into the regulatory mechanisms of complex allosteric enzymes. Full Article
bi X-ray structures of catalytic intermediates of cytochrome c oxidase provide insights into its O2 activation and unidirectional proton-pump mechanisms [Molecular Biophysics] By feedproxy.google.com Published On :: 2020-04-24T06:08:45-07:00 Cytochrome c oxidase (CcO) reduces O2 to water, coupled with a proton-pumping process. The structure of the O2-reduction site of CcO contains two reducing equivalents, Fea32+ and CuB1+, and suggests that a peroxide-bound state (Fea33+–O−–O−–CuB2+) rather than an O2-bound state (Fea32+–O2) is the initial catalytic intermediate. Unexpectedly, however, resonance Raman spectroscopy results have shown that the initial intermediate is Fea32+–O2, whereas Fea33+–O−–O−–CuB2+ is undetectable. Based on X-ray structures of static noncatalytic CcO forms and mutation analyses for bovine CcO, a proton-pumping mechanism has been proposed. It involves a proton-conducting pathway (the H-pathway) comprising a tandem hydrogen-bond network and a water channel located between the N- and P-side surfaces. However, a system for unidirectional proton-transport has not been experimentally identified. Here, an essentially identical X-ray structure for the two catalytic intermediates (P and F) of bovine CcO was determined at 1.8 Å resolution. A 1.70 Å Fe–O distance of the ferryl center could best be described as Fea34+ = O2−, not as Fea34+–OH−. The distance suggests an ∼800-cm−1 Raman stretching band. We found an interstitial water molecule that could trigger a rapid proton-coupled electron transfer from tyrosine-OH to the slowly forming Fea33+–O−–O−–CuB2+ state, preventing its detection, consistent with the unexpected Raman results. The H-pathway structures of both intermediates indicated that during proton-pumping from the hydrogen-bond network to the P-side, a transmembrane helix closes the water channel connecting the N-side with the hydrogen-bond network, facilitating unidirectional proton-pumping during the P-to-F transition. Full Article
bi Structural basis of cell-surface signaling by a conserved sigma regulator in Gram-negative bacteria [Molecular Biophysics] By feedproxy.google.com Published On :: 2020-04-24T06:08:45-07:00 Cell-surface signaling (CSS) in Gram-negative bacteria involves highly conserved regulatory pathways that optimize gene expression by transducing extracellular environmental signals to the cytoplasm via inner-membrane sigma regulators. The molecular details of ferric siderophore-mediated activation of the iron import machinery through a sigma regulator are unclear. Here, we present the 1.56 Å resolution structure of the periplasmic complex of the C-terminal CSS domain (CCSSD) of PupR, the sigma regulator in the Pseudomonas capeferrum pseudobactin BN7/8 transport system, and the N-terminal signaling domain (NTSD) of PupB, an outer-membrane TonB-dependent transducer. The structure revealed that the CCSSD consists of two subdomains: a juxta-membrane subdomain, which has a novel all-β-fold, followed by a secretin/TonB, short N-terminal subdomain at the C terminus of the CCSSD, a previously unobserved topological arrangement of this domain. Using affinity pulldown assays, isothermal titration calorimetry, and thermal denaturation CD spectroscopy, we show that both subdomains are required for binding the NTSD with micromolar affinity and that NTSD binding improves CCSSD stability. Our findings prompt us to present a revised model of CSS wherein the CCSSD:NTSD complex forms prior to ferric-siderophore binding. Upon siderophore binding, conformational changes in the CCSSD enable regulated intramembrane proteolysis of the sigma regulator, ultimately resulting in transcriptional regulation. Full Article
bi Single-molecule level structural dynamics of DNA unwinding by human mitochondrial Twinkle helicase [Molecular Biophysics] By feedproxy.google.com Published On :: 2020-04-24T06:08:45-07:00 Knowledge of the molecular events in mitochondrial DNA (mtDNA) replication is crucial to understanding the origins of human disorders arising from mitochondrial dysfunction. Twinkle helicase is an essential component of mtDNA replication. Here, we employed atomic force microscopy imaging in air and liquids to visualize ring assembly, DNA binding, and unwinding activity of individual Twinkle hexamers at the single-molecule level. We observed that the Twinkle subunits self-assemble into hexamers and higher-order complexes that can switch between open and closed-ring configurations in the absence of DNA. Our analyses helped visualize Twinkle loading onto and unloading from DNA in an open-ringed configuration. They also revealed that closed-ring conformers bind and unwind several hundred base pairs of duplex DNA at an average rate of ∼240 bp/min. We found that the addition of mitochondrial single-stranded (ss) DNA–binding protein both influences the ways Twinkle loads onto defined DNA substrates and stabilizes the unwound ssDNA product, resulting in a ∼5-fold stimulation of the apparent DNA-unwinding rate. Mitochondrial ssDNA-binding protein also increased the estimated translocation processivity from 1750 to >9000 bp before helicase disassociation, suggesting that more than half of the mitochondrial genome could be unwound by Twinkle during a single DNA-binding event. The strategies used in this work provide a new platform to examine Twinkle disease variants and the core mtDNA replication machinery. They also offer an enhanced framework to investigate molecular mechanisms underlying deletion and depletion of the mitochondrial genome as observed in mitochondrial diseases. Full Article
bi Biophysical characterization of SARAH domain-mediated multimerization of Hippo pathway complexes in Drosophila [Signal Transduction] By feedproxy.google.com Published On :: 2020-05-01T00:06:09-07:00 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. Full Article
bi Delineating an extracellular redox-sensitive module in T-type Ca2+ channels [Membrane Biology] By feedproxy.google.com Published On :: 2020-05-01T00:06:09-07:00 T-type (Cav3) Ca2+ channels are important regulators of excitability and rhythmic activity of excitable cells. Among other voltage-gated Ca2+ channels, Cav3 channels are uniquely sensitive to oxidation and zinc. Using recombinant protein expression in HEK293 cells, patch clamp electrophysiology, site-directed mutagenesis, and homology modeling, we report here that modulation of Cav3.2 by redox agents and zinc is mediated by a unique extracellular module containing a high-affinity metal-binding site formed by the extracellular IS1–IS2 and IS3–IS4 loops of domain I and a cluster of extracellular cysteines in the IS1–IS2 loop. Patch clamp recording of recombinant Cav3.2 currents revealed that two cysteine-modifying agents, sodium (2-sulfonatoethyl) methanethiosulfonate (MTSES) and N-ethylmaleimide, as well as a reactive oxygen species–producing neuropeptide, substance P (SP), inhibit Cav3.2 current to similar degrees and that this inhibition is reversed by a reducing agent and a zinc chelator. Pre-application of MTSES prevented further SP-mediated current inhibition. Substitution of the zinc-binding residue His191 in Cav3.2 reduced the channel's sensitivity to MTSES, and introduction of the corresponding histidine into Cav3.1 sensitized it to MTSES. Removal of extracellular cysteines from the IS1–IS2 loop of Cav3.2 reduced its sensitivity to MTSES and SP. We hypothesize that oxidative modification of IS1–IS2 loop cysteines induces allosteric changes in the zinc-binding site of Cav3.2 so that it becomes sensitive to ambient zinc. Full Article
bi Structure-based discovery of a small-molecule inhibitor of methicillin-resistant Staphylococcus aureus virulence [Molecular Biophysics] By feedproxy.google.com Published On :: 2020-05-01T00:06:09-07:00 The rapid emergence and dissemination of methicillin-resistant Staphylococcus aureus (MRSA) strains poses a major threat to public health. MRSA possesses an arsenal of secreted host-damaging virulence factors that mediate pathogenicity and blunt immune defenses. Panton–Valentine leukocidin (PVL) and α-toxin are exotoxins that create lytic pores in the host cell membrane. They are recognized as being important for the development of invasive MRSA infections and are thus potential targets for antivirulence therapies. Here, we report the high-resolution X-ray crystal structures of both PVL and α-toxin in their soluble, monomeric, and oligomeric membrane-inserted pore states in complex with n-tetradecylphosphocholine (C14PC). The structures revealed two evolutionarily conserved phosphatidylcholine-binding mechanisms and their roles in modulating host cell attachment, oligomer assembly, and membrane perforation. Moreover, we demonstrate that the soluble C14PC compound protects primary human immune cells in vitro against cytolysis by PVL and α-toxin and hence may serve as the basis for the development of an antivirulence agent for managing MRSA infections. Full Article
bi Templated folding of intrinsically disordered proteins [Molecular Biophysics] By feedproxy.google.com Published On :: 2020-05-08T03:41:14-07:00 Much of our current knowledge of biological chemistry is founded in the structure-function relationship, whereby sequence determines structure that determines function. Thus, the discovery that a large fraction of the proteome is intrinsically disordered, while being functional, has revolutionized our understanding of proteins and raised new and interesting questions. Many intrinsically disordered proteins (IDPs) have been determined to undergo a disorder-to-order transition when recognizing their physiological partners, suggesting that their mechanisms of folding are intrinsically different from those observed in globular proteins. However, IDPs also follow some of the classic paradigms established for globular proteins, pointing to important similarities in their behavior. In this review, we compare and contrast the folding mechanisms of globular proteins with the emerging features of binding-induced folding of intrinsically disordered proteins. Specifically, whereas disorder-to-order transitions of intrinsically disordered proteins appear to follow rules of globular protein folding, such as the cooperative nature of the reaction, their folding pathways are remarkably more malleable, due to the heterogeneous nature of their folding nuclei, as probed by analysis of linear free-energy relationship plots. These insights have led to a new model for the disorder-to-order transition in IDPs termed “templated folding,” whereby the binding partner dictates distinct structural transitions en route to product, while ensuring a cooperative folding. Full Article
bi Crystallographic and kinetic analyses of the FdsBG subcomplex of the cytosolic formate dehydrogenase FdsABG from Cupriavidus necator [Molecular Biophysics] By feedproxy.google.com Published On :: 2020-05-08T03:41:14-07:00 Formate oxidation to carbon dioxide is a key reaction in one-carbon compound metabolism, and its reverse reaction represents the first step in carbon assimilation in the acetogenic and methanogenic branches of many anaerobic organisms. The molybdenum-containing dehydrogenase FdsABG is a soluble NAD+-dependent formate dehydrogenase and a member of the NADH dehydrogenase superfamily. Here, we present the first structure of the FdsBG subcomplex of the cytosolic FdsABG formate dehydrogenase from the hydrogen-oxidizing bacterium Cupriavidus necator H16 both with and without bound NADH. The structures revealed that the two iron-sulfur clusters, Fe4S4 in FdsB and Fe2S2 in FdsG, are closer to the FMN than they are in other NADH dehydrogenases. Rapid kinetic studies and EPR measurements of rapid freeze-quenched samples of the NADH reduction of FdsBG identified a neutral flavin semiquinone, FMNH•, not previously observed to participate in NADH-mediated reduction of the FdsABG holoenzyme. We found that this semiquinone forms through the transfer of one electron from the fully reduced FMNH−, initially formed via NADH-mediated reduction, to the Fe2S2 cluster. This Fe2S2 cluster is not part of the on-path chain of iron-sulfur clusters connecting the FMN of FdsB with the active-site molybdenum center of FdsA. According to the NADH-bound structure, the nicotinamide ring stacks onto the re-face of the FMN. However, NADH binding significantly reduced the electron density for the isoalloxazine ring of FMN and induced a conformational change in residues of the FMN-binding pocket that display peptide-bond flipping upon NAD+ binding in proper NADH dehydrogenases. Full Article
bi Quantification of the affinities of CRISPR-Cas9 nucleases for cognate protospacer adȷacent motif (PAM) sequences [Molecular Biophysics] By feedproxy.google.com Published On :: 2020-05-08T03:41:14-07:00 The CRISPR/Cas9 nucleases have been widely applied for genome editing in various organisms. Cas9 nucleases complexed with a guide RNA (Cas9–gRNA) find their targets by scanning and interrogating the genomic DNA for sequences complementary to the gRNA. Recognition of the DNA target sequence requires a short protospacer adjacent motif (PAM) located outside this sequence. Given that the efficiency of target location may depend on the strength of interactions that promote target recognition, here we sought to compare affinities of different Cas9 nucleases for their cognate PAM sequences. To this end, we measured affinities of Cas9 nucleases from Streptococcus pyogenes, Staphylococcus aureus, and Francisella novicida complexed with guide RNAs (gRNAs) (SpCas9–gRNA, SaCas9–gRNA, and FnCas9–gRNA, respectively) and of three engineered SpCas9–gRNA variants with altered PAM specificities for short, PAM-containing DNA probes. We used a “beacon” assay that measures the relative affinities of DNA probes by determining their ability to competitively affect the rate of Cas9–gRNA binding to fluorescently labeled target DNA derivatives called “Cas9 beacons.” We observed significant differences in the affinities for cognate PAM sequences among the studied Cas9 enzymes. The relative affinities of SpCas9–gRNA and its engineered variants for canonical and suboptimal PAMs correlated with previous findings on the efficiency of these PAM sequences in genome editing. These findings suggest that high affinity of a Cas9 nuclease for its cognate PAM promotes higher genome-editing efficiency. Full Article
bi A neuroglobin-based high-affinity ligand trap reverses carbon monoxide-induced mitochondrial poisoning [Molecular Biophysics] By feedproxy.google.com Published On :: 2020-05-08T03:41:14-07:00 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. Full Article
bi Breaking the Habit: Why Major Oil Companies Are Not ‘Paris-Aligned’ By feedproxy.google.com Published On :: Mon, 07 Oct 2019 14:50:01 +0000 Invitation Only Research Event 23 October 2019 - 8:30am to 10:00am Chatham House | 10 St James's Square | London | SW1Y 4LE Event participants Andrew Grant, Carbon Tracker InitiativeChair: Siân Bradley, Research Fellow, Energy, Environment and Resources, Chatham House The investment community is increasingly seeking to assess the alignment of their portfolios with the Paris Agreement. In a recent update to their Two Degrees of Separation report, Carbon Tracker assessed the capital expenditure of listed oil and gas producers against ‘well below’ 2C targets, and for the first time, against short-term actions at the project level.The speaker will present the key findings of the report and will argue that every oil major is betting heavily against a low-carbon world by investing in projects that are contrary to the Paris goals.This roundtable discussion will further explore the report findings and consider what investors, regulators and oil and gas companies can do to encourage alignment with the Paris Agreement ahead of 2020. Attendance at this event is by invitation only. Event attributes Chatham House Rule Department/project Energy, Environment and Resources Programme Full Article
bi A Transformative Agenda for Greater Sustainability in Trade By feedproxy.google.com Published On :: Fri, 15 Nov 2019 10:25:01 +0000 Corporate Members Event Nominees Breakfast Briefing Partners and Major Corporates 3 December 2019 - 8:00am to 9:15am Chatham House | 10 St James's Square | London | SW1Y 4LE Event participants Christophe Bellmann, Associate Fellow, Hoffmann Centre for Sustainable Resource Economy, Chatham HouseCarolyn Deere Birkbeck, Associate Fellow, Global Economy and Finance Department and Hoffmann Centre for Sustainable Resource Economy, Chatham House International trade rules and policies are deeply relevant to environmental performance. On the one hand, trade flows, rules and policies can exacerbate environmental challenges as consumers regularly purchase goods produced or disposed of in unsustainable ways in other countries therefore 'exporting' environmental costs. On the other hand, trade rules and flows can be harnessed to support environmental agendas and impact commercial and trade prospects positively.The speakers will discuss the urgent need for greater political leadership and inclusive policy dialogue on environment and trade to address its development and competitiveness. Which priorities should form the heart of a forward-looking environment and trade 2.0 agenda in the context of the UN’s SDGs? What role can international trade play in helping deliver sustainable food and land use systems? And how can stakeholders promote the scaling-up of the many initiatives underway and serve as a vehicle for transformative change toward a more sustainable economy at the national and international level?This event is only open to Major Corporate Member and Partner organizations of Chatham House. If you'd like to attend, please RSVP to Linda Bedford.To enable as open a debate as possible, this event will be held under the Chatham House Rule. Members Events Team Email Full Article
bi Net Zero and Beyond: What Role for Bioenergy with Carbon Capture and Storage? By feedproxy.google.com Published On :: Mon, 06 Jan 2020 13:55:01 +0000 Invitation Only Research Event 23 January 2020 - 8:30am to 10:00am Chatham House | 10 St James's Square | London | SW1Y 4LE Event participants Richard King, Senior Research Fellow, Energy, Environment and Resources Department, Chatham HouseChair: Duncan Brack, Associate Fellow, Energy, Environment and Resources Department, Chatham House In the context of the feasibility of reducing greenhouse gas emissions to net zero, policymakers are beginning to pay more attention to options for removing carbon dioxide from the atmosphere. A wide range of potential carbon dioxide removal (CDR) options are currently being discussed and modelled though the most prominent among them are bioenergy with carbon capture and storage (BECCS) and afforestation and reforestation.There are many reasons to question the reliance on BECCS assumed in the models including the carbon balances achievable, its substantial needs for land, water and other inputs and technically and economically viable carbon capture and storage technologies.This meeting will examine the potentials and challenges of BECCS in the context of other CDR and emissions abatement options. It will discuss the requisite policy and regulatory frameworks to minimize sustainability and socio-political risks of CDR approaches while also avoiding overshooting climate goals.Attendance at this event is by invitation only. Event attributes Chatham House Rule Department/project Energy, Environment and Resources Programme, Sustainable Transitions Series Chloé Prendleloup Email Full Article
bi Net Zero and Beyond: What Role for Bioenergy with Carbon Capture and Storage? By feedproxy.google.com Published On :: Wed, 29 Jan 2020 11:51:45 +0000 29 January 2020 Policymakers are in danger of sleepwalking into ineffective carbon dioxide removal solutions in the quest to tackle climate change. This paper warns against overreliance on bioenergy with carbon capture and storage (BECCS). Read online Download PDF Duncan Brack Associate Fellow, Energy, Environment and Resources Programme @DuncanBrack Google Scholar Richard King Senior Research Fellow, Energy, Environment and Resources Programme LinkedIn Reaching Net Zero: Does BECCS Work? Policymakers can be influenced by ineffective carbon dioxide removal solutions in the quest to tackle climate change. This animation explores the risks of using bioenergy with carbon capture and storage (BECCS). SummaryCurrent climate efforts are not progressing quickly enough to prevent the world from overshooting the global emissions targets set in the Paris Agreement; accordingly, attention is turning increasingly to options for removing carbon dioxide from the atmosphere – ‘carbon dioxide removal’ (CDR). Alongside afforestation and reforestation, the main option under discussion is bioenergy with carbon capture and storage (BECCS): processes through which the carbon emissions from burning biomass for energy are captured before release into the atmosphere and stored in underground reservoirs.This pre-eminent status is not, however, based on a comprehensive analysis of the feasibility and impacts of BECCS. In reality, BECCS has many drawbacks.Models generally assume that biomass for energy is inherently carbon-neutral (and thus that BECCS, by capturing and storing the emissions from combustion, is carbon-negative), but in reality this is not a valid assumption.On top of this, the deployment of BECCS at the scales assumed in most models would consume land on a scale comparable to half that currently taken up by global cropland, entailing massive land-use change, potentially endangering food security and biodiversity. There is also significant doubt about the likely energy output of BECCS solutions.BECCS may still have some role to play in strategies for CDR, depending mainly on the feedstock used; but it should be evaluated on the same basis as other CDR options, such as nature-based solutions or direct air carbon capture and storage (DACCS). Analysis should take full account of carbon balances over time, the requirements of each CDR option in terms of demand for land, water and other inputs, and the consequences of that demand.There is an urgent need for policymakers to engage with these debates. The danger at the moment is that policymakers are ‘sleepwalking towards BECCS’ simply because most models incorporate it – or, almost as bad, it may be that they are simply ignoring the need for any meaningful action on CDR as a whole. Department/project Energy, Environment and Resources Programme, Bioenergy, Carbon Capture and Storage (BECCS) Full Article
bi China's 2020: Economic Transition, Sustainability and the Coronavirus By feedproxy.google.com Published On :: Tue, 04 Feb 2020 21:15:01 +0000 Corporate Members Event 10 March 2020 - 12:15pm to 2:00pm Chatham House | 10 St James's Square | London | SW1Y 4LE Event participants Dr Yu Jie, Senior Research Fellow on China, Asia-Pacific Programme, Chatham HouseDavid Lubin, Associate Fellow, Global Economy and Finance Programme, Chatham House; Managing Director and Head of Emerging Markets Economics, CitiJinny Yan, Managing Director and Chief China Economist, ICBC StandardChair: Creon Butler, Director, Global Economy and Finance Programme, Chatham House Read all our analysis on the Coronavirus ResponseThe coronavirus outbreak comes at a difficult time for China’s ruling party. A tumultuous 2019 saw the country fighting an economic slowdown coupled with an increasingly hostile international environment. As authorities take assertive steps to contain the virus, the emergency has - at least temporarily - disrupted global trade and supply chains, depressed asset prices and forced multinational businesses to make consequential decisions with limited information. Against this backdrop, panellists reflect on the country’s nascent economic transition from 2020 onward. What has been China’s progress towards a sustainable innovation-led economy so far? To what extent is the ruling party addressing growing concerns over job losses, wealth inequality and a lack of social mobility? And how are foreign investors responding to these developments in China? Members Events Team Email Full Article
bi Webinar: OPEC, Falling Oil Prices and COVID-19 By feedproxy.google.com Published On :: Tue, 31 Mar 2020 12:00:01 +0000 Corporate Members Event Webinar 7 April 2020 - 1:00pm to 2:00pm Online Event participants Julian Lee, Oil Strategist, Bloomberg LP LondonDr John Sfakianakis, Associate Fellow, Middle East and North Africa Programme, Chatham House; Chief Economist and Head of Research, Gulf Research CenterProfessor Paul Stevens, Distinguished Fellow, Energy, Environment and Resources Programme, Chatham HouseEmily Stromquist, Director, Castlereagh AssociatesChair: Dr Sanam Vakil, Deputy Director and Senior Research Fellow, Middle East and North Africa Programme, Chatham House In early March, global oil prices fell sharply, hitting lows of under $30 a barrel. Two factors explain this collapse: firstly the decrease in global demand for oil as a result of the COVID-19 pandemic and, secondly, the breakdown in OPEC-Russian relations and the subsequent Saudi-Russian price war which has seen both countries move to flood the market with cheap oil. Against this backdrop, the panellists will reflect on the challenges currently facing OPEC as well as the oil industry as a whole. How are OPEC countries affected by the ever-evolving Covid-19 pandemic? What are the underlying causes behind the Saudi-Russian price war? Is the conflict likely to be resolved soon? And what are the implications of these challenges for the oil industry?This event is part of a fortnightly series of 'Business in Focus' webinars reflecting on the impact of COVID-19 on areas of particular professional interest for our corporate members and giving circles.Not a corporate member? Find out more. Full Article
bi COP26 Diplomatic Briefing: Climate Ambition in Europe and its Potential Global Impact By feedproxy.google.com Published On :: Fri, 03 Apr 2020 14:05:01 +0000 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 CommissionImke 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 StrategyJen Austin, Policy Director, We Mean Business CoalitionChair: 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. Read meeting summarypdf | 118.6 KB Anna Aberg Research Analyst, Energy, Environment and Resources Programme 020 7314 3629 Email Department/project Energy, Environment and Resources Programme, COP26 Diplomatic Briefing Series Full Article
bi Webinar: The Opportunity of Crisis? Transitioning to a Sustainable Global Economy By feedproxy.google.com Published On :: Thu, 16 Apr 2020 09:55:02 +0000 Corporate Members Event Webinar 22 April 2020 - 1:00pm to 1:45pm Event participants Professor Tim Benton, Research Director, Emerging Risks and Director, Energy, Environment and Resources Programme, Chatham HouseCreon Butler, Research Director, Trade, Investment & New Governance Models; Director, Global Economy and Finance Programme, Chatham HouseElsa Palanza, Managing Director, Global Head of Sustainability and ESG, BarclaysChair: Laura Wellesley, Research Fellow, Energy, Environment and Resources Programme, Chatham House With the Asian Development Bank estimating that the COVID-19 outbreak’s global cost could reach $4.1 trillion and the OECD warning that the shock caused by the pandemic is already greater than the financial crisis of 2007, the global economic impact of the health emergency is not only vast but also unpredictable. The disruption to a number of industries and sectors including, but not limited to, the airline and energy industries, could result in long-term damage to global trade flows, supply and demand. But does the pandemic also present an opportunity to build sustainable economies that can cope with such threats?This panel will explore the ways in which the coronavirus outbreak has highlighted vulnerabilities in global systems and what this might mean for a transition towards a sustainable economy. How do we explain the failure of businesses and governments to prepare for systemic shocks and the lack of resilience in global structures and models? How should governments prepare to reshape policy, business practices and societal behaviour to better tackle climate change while addressing the current emergency? And might the emergency offer opportunities to kick start a sustainable path towards a greener future?This event is part of a fortnightly series of 'Business in Focus' webinars reflecting on the impact of COVID-19 on areas of particular professional interest for our corporate members and giving circles.Not a corporate member? Find out more. Full Article
bi Episode 17: The Hobbit Review & Christmas Movies By feedproxy.google.com Published On :: Mon, 24 Dec 2012 07:13:00 +0000 The Hobbit ReviewChristmas MoviesWhat We Watched: Sunshine/Silver Lining's Playbook/The Grey/ArgoDownload the episode here (right click to save). Full Article
bi Episode 39: American Hustle/The Hobbit 2/Anchorman 2/Out of the Furnace By feedproxy.google.com Published On :: Fri, 27 Dec 2013 07:32:00 +0000 American HustleThe Hobbit: The Desolation of SmaugAnchorman 2: The Legend ContinuesOut of the Furnace2014 Bucket List FilmsWhat We Watched: Bully, Prisoners, Powwow Highway, Miss Representation, The Spectacular Now, Knuckle, Shut Up And Play The Hits, Mike Birbiglia: My Girlfriend's Boyfriend and The Act of Killing. You can download the episode here. (right click to save) Next Episode: Martin Scorcese's The Wolf of Wall Street and Spike Jonze's Her. Full Article
bi Reviewing Antimicrobial Resistance: Where Are We Now and What Needs to Be Done? By feedproxy.google.com Published On :: Fri, 30 Aug 2019 14:55:01 +0000 Research Event 8 October 2019 - 10:30am to 12:00pm RSA House, 8 John Adam Street, London, WC2N 6EZ Event participants Tim Jinks, Head of Drug-Resistant Infections Programme, WellcomeJim O’Neill, Chair, Review on Antimicrobial Resistance; Chair, Chatham HouseHaileyesus Getahun, Director of Global Coordination and Partnership on Antimicrobial Resistance, World Health Organization Juan Lubroth, Chief Veterinary Officer, Food and Agriculture Organization (Videolink)Jyoti Joshi, Head, South Asia, Center for Disease Dynamics, Economics & PolicyEstelle Mbadiwe, Coordinator-Nigeria, Global Antibiotic Resistance PartnershipCharles Clift, Senior Consulting Fellow, Chatham House; Report Author The Review on Antimicrobial Resistance, chaired by Jim O’Neill, was commissioned by former UK prime minister, David Cameron, in July 2014. Supported by the UK government and the Wellcome Trust, the final report of the review was published in May 2016 and has had a global impact in terms of motivating political leaders and decision-makers to take more seriously the threat posed by antimicrobial resistance.Yet there is now a perception that the political momentum to address the issue is waning and needs to be reinvigorated.In a further report produced by Chatham House, the progress of the recommendations of the review is assessed and the key ways to move forward are identified.Panellists at this event, where highlights of the report are presented, provide their assessment of the progress so far and discuss priorities for future action.The report was funded by Wellcome. Department/project Global Health Programme, Antimicrobial Resistance Alexandra Squires McCarthy Programme Coordinator, Global Health Programme +44 (0)207 314 2789 Email Full Article
bi Review of Progress on Antimicrobial Resistance By feedproxy.google.com Published On :: Fri, 04 Oct 2019 13:28:22 +0000 8 October 2019 A startling lack of progress on critical recommendations to tackle antimicrobial resistance is highlighted in this new global progress report, as well as opportunities for further action and key obstacles that need to be overcome.Use the Download button to choose either the Research Paper, or the Background and Analysis Paper. Read online Research Paper Background and Analysis Dr Charles Clift Senior Consulting Fellow, Global Health Programme @CliftWorks 2019-10-04-AMR.jpg A PhD student at Melbourne’s Doherty Institute inspects the superbug Staphylcocus epidermidis on an agar plate on 4 September 2018. Photo: Getty Images. The 2016 Review on Antimicrobial Resistance has had a global impact: as an advocacy tool, in raising the profile of antimicrobial resistance (AMR) on the international agenda, and in helping to stimulate a number of new initiatives, in particular relating to the funding of early-stage research.However, there has been very little progress on the review’s central and most expensive recommendations for transforming research and development incentives for antibiotics, vaccines and diagnostics.There have been significant advances in reducing antibiotic use in agriculture, particularly in high-income countries, but there is a long way to go in low- and middle-income countries (LMICs).There has been greater investment in awareness raising but questions remain about its impact and effectiveness in changing behaviour.Proposals to restrict over-the-counter sales of antibiotics, as recommended by the Review, have foundered in the face of poor living conditions and access to healthcare in LMICs.A major reason for the use of antibiotics in LMICs is the prevalence of unhygienic conditions in the community and in healthcare facilities, which contribute to infection and limit the impact of messages about awareness and infection prevention and control.Providing quality healthcare to all and moving towards universal health coverage in LMICs will be crucial in addressing the problems of both adequate access to antibiotics and in restricting over-the-counter sales.A greater emphasis on investments in water, sanitation and housing will be central to reducing reliance on antibiotics in LMICs in the longer term. This agenda should inform the operations of governments and funding agencies such as the International Monetary Fund (IMF) and the World Bank.Investments have been made in improving surveillance of antibiotic use and resistance, particularly for humans, but more effort is required to create surveillance systems that provide data sufficiently accurate to influence policy and action. This applies also to antibiotics and resistant genes circulating in the environment.The emerging innovations in the global governance of AMR need to lead to action rather than more words. Department/project Global Health Programme, Antimicrobial Resistance Full Article
bi Strengthening National Accountability and Preparedness for Global Health Security (SNAP-GHS) By feedproxy.google.com Published On :: Thu, 19 Dec 2019 15:43:55 +0000 The project aims to identify the enablers and barriers to enhance data use by National Public Health Institutes (NPHIs), producing outputs that will facilitate strengthening of the role of NPHIs in monitoring potential public health threats, and in shaping and informing domestic policies on health security and preparedness. Global health security is underpinned by the actions taken at a national level to ensure capacities exist to sufficiently prepare for and respond to acute threats and crises. In many contexts, National Public Health Institutes (NPHIs) were first established because of, and in response to, specific public health challenges typically related to infectious diseases.The Strengthening National Accountability and Preparedness for Global Health Security (SNAP-GHS) project evolved from a series of roundtables and discussions hosted by the Centre on Global Health Security at Chatham House, in collaboration with the Graduate Institute of Geneva.The outcome of the project is a SNAP-GHS Toolkit to support NPHIs in better diagnosing and understanding the challenges to data use within their own institutes, as well as in relation to external stakeholders and agencies. The toolkit is intended to be used for further circulation and dissemination by the International Association of National Public Health Institutes (IANPHI).The project is led by the Centre on Global Health Security at Chatham House in collaboration with the Ethiopian Public Health Institute, the Nigeria Centre for Disease Control, and the National Institute for Health in Pakistan. Full Article
bi Biosecurity: Preparing for the Aftermath of Global Health Crises By feedproxy.google.com Published On :: Thu, 09 Jan 2020 14:16:59 +0000 9 January 2020 Professor David R Harper CBE Senior Consulting Fellow, Global Health Programme @DavidRossHarper Benjamin Wakefield Research Associate, Global Health Programme @BCWakefield LinkedIn The Ebola outbreak in the Democratic Republic of the Congo is a reminder that the security of samples taken during global health emergencies is a vital part of safeguarding biosecurity. 2020-01-09-DRC.jpg A nurse prepares a vaccine against Ebola in Goma in August 2019. Photo: Getty Images. The world’s second-largest Ebola outbreak is ongoing in the Democratic Republic of the Congo (DRC) and experts from around the world have been parachuted in to support the country’s operation to stamp out the outbreak. The signs are encouraging, but we need to remain cautious.In such emergencies, little thought is usually given to what happens to the body-fluid samples taken during the course of the outbreak after the crisis is over. What gets left behind has considerable implications for global biosecurity.Having unsecured samples poses the obvious risk of accidental exposures to people who might come into contact with them, but what of the risk of malicious use? Bioterrorists would have ready access to materials that have the characteristics essential to their purpose: the potential to cause disease that is transmissible from person to person, the capacity to result in high fatality rates and, importantly, the ability to cause panic and social disruption at the very mention of them.Comparisons can be drawn with the significant international impact of the anthrax attacks in the US in 2001. Not only was there a direct effect in the US with five deaths and a further 17 people infected, but there was a paralysis of public health systems in other countries involved in the testing of countless samples from the so-called ‘white-powder incidents’ that followed.Many laboratory tests were done purely on a precautionary basis to eliminate any possibility of a risk, no matter how remote. However, the UK was also hit when a hoaxer sent envelopes of white powder labelled as anthrax to 15 MPs.The threat of the pathogen alone resulted in widespread fear, the deployment of officers trained in response to chemical, biological, radiological and nuclear incidents and the evacuation of a hospital emergency department.We learned from the 2014–16 West Africa Ebola outbreaks that during the emergency, the future biosecurity implications of the many thousands of samples taken from people were given very little consideration. It is impossible to be sure where they all are and whether they have been secured.It is widely recognized that the systems needed at the time for tracking and monitoring resources, including those necessary for samples, were weak or absent, and this has to be addressed urgently along with other capacity-building initiatives.In Sierra Leone, for example, the remaining biosecurity risk is only being addressed after the fact. To help achieve this, the government of Canada is in the process of providing a secure biobank in the Sierra Leonean capital of Freetown. The aim is to provide the proper means of storage for these hazardous samples and to allow them to remain in-country, with Sierra Leonean ownership.However, it is already more three years since the emergency was declared over by the then director-general of the World Health Organization (WHO), Margaret Chan, and the biobank and its associated laboratory are yet to be fully operational.There are many understandable reasons for this delay, including the critical issue of how best to ensure the sustainability of any new facility. But what is clear is that these solutions take time to implement and must be planned for in advance.The difficulties of responding to an outbreak in a conflict zone have been well documented, and the frequent violence in DRC has undoubtedly caused delays in controlling the outbreak. According to figures from WHO, during 2019 approximately 390 attacks on health facilities in DRC killed 11 and injured 83 healthcare workers and patients.Not only does the conflict inhibit the response, but it could also increase the risk posed by unsecured samples. There are two main potential concerns.First is the risk of accidental release during an attack on a health facility, under which circumstances sample containers may be compromised or destroyed. Second is that the samples may be stolen for malicious use or to sell them to a third-party for malicious use. It is very important in all outbreaks to ensure the necessary measures are in place to secure samples; in conflict-affected areas, this is particularly challenging.The sooner the samples in the DRC are secured, the sooner this risk to global biosecurity is reduced. And preparations for the next emergency must be made without further delay.The following steps need to be taken:Affected countries must ‘own’ the problem, with clear national government commitment to take the required actions.Funding partners must coordinate their actions and work closely with the countries to find the best solutions.If samples are to be kept in-country, secure biobanks must be established to contain them.Sustainable infrastructure must be built for samples to be kept secure into the future.An international agreement should be reached on the best approach to take to prepare for the aftermath of global health emergencies. Full Article
bi SSO and other putative inhibitors of FA transport across membranes by CD36 disrupt intracellular metabolism, but do not affect FA translocation [Research Articles] By feedproxy.google.com Published On :: 2020-05-01T00:05:28-07:00 Membrane-bound proteins have been proposed to mediate the transport of long-chain FA (LCFA) transport through the plasma membrane (PM). These proposals are based largely on reports that PM transport of LCFAs can be blocked by a number of enzymes and purported inhibitors of LCFA transport. Here, using the ratiometric pH indicator (2',7'-bis-(2-carboxyethyl)-5-(and-6-)-carboxyfluorescein and acrylodated intestinal FA-binding protein-based dual fluorescence assays, we investigated the effects of nine inhibitors of the putative FA transporter protein CD36 on the binding and transmembrane movement of LCFAs. We particularly focused on sulfosuccinimidyl oleate (SSO), reported to be a competitive inhibitor of CD36-mediated LCFA transport. Using these assays in adipocytes and inhibitor-treated protein-free lipid vesicles, we demonstrate that rapid LCFA transport across model and biological membranes remains unchanged in the presence of these purported inhibitors. We have previously shown in live cells that CD36 does not accelerate the transport of unesterified LCFAs across the PM. Our present experiments indicated disruption of LCFA metabolism inside the cell within minutes upon treatment with many of the "inhibitors" previously assumed to inhibit LCFA transport across the PM. Furthermore, using confocal microscopy and a specific anti-SSO antibody, we found that numerous intracellular and PM-bound proteins are SSO-modified in addition to CD36. Our results support the hypothesis that LCFAs diffuse rapidly across biological membranes and do not require an active protein transporter for their transmembrane movement. Full Article
bi Schnyder corneal dystrophy-associated UBIAD1 is defective in MK-4 synthesis and resists autophagy-mediated degradation [Research Articles] By feedproxy.google.com Published On :: 2020-05-01T00:05:27-07:00 The autosomal dominant disorder Schnyder corneal dystrophy (SCD) is caused by mutations in UbiA prenyltransferase domain-containing protein-1 (UBIAD1), which uses geranylgeranyl pyrophosphate (GGpp) to synthesize the vitamin K2 subtype menaquinone-4 (MK-4). SCD is characterized by opacification of the cornea, owing to aberrant build-up of cholesterol in the tissue. We previously discovered that sterols stimulate association of UBIAD1 with ER-localized HMG-CoA reductase, which catalyzes a rate-limiting step in the synthesis of cholesterol and nonsterol isoprenoids, including GGpp. Binding to UBIAD1 inhibits sterol-accelerated ER-associated degradation (ERAD) of reductase and permits continued synthesis of GGpp in cholesterol-replete cells. GGpp disrupts UBIAD1-reductase binding and thereby allows for maximal ERAD of reductase as well as ER-to-Golgi translocation of UBIAD1. SCD-associated UBIAD1 is refractory to GGpp-mediated dissociation from reductase and remains sequestered in the ER to inhibit ERAD. Here, we report development of a biochemical assay for UBIAD1-mediated synthesis of MK-4 in isolated membranes and intact cells. Using this assay, we compared enzymatic activity of WT UBIAD1 with that of SCD-associated variants. Our studies revealed that SCD-associated UBIAD1 exhibited reduced MK-4 synthetic activity, which may result from its reduced affinity for GGpp. Sequestration in the ER protects SCD-associated UBIAD1 from autophagy and allows intracellular accumulation of the mutant protein, which amplifies the inhibitory effect on reductase ERAD. These findings have important implications not only for the understanding of SCD etiology but also for the efficacy of cholesterol-lowering statin therapy, which becomes limited, in part, because of UBIAD1-mediated inhibition of reductase ERAD. Full Article
bi The grease trap: uncovering the mechanism of the hydrophobic lid in Cutibacterium acnes lipase [Research Articles] By feedproxy.google.com Published On :: 2020-05-01T00:05:27-07:00 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. Full Article
bi Biology of Lipid Rafts: Introduction to the Thematic Review Series [Thematic Reviews] By feedproxy.google.com Published On :: 2020-05-01T00:05:27-07:00 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. Full Article
bi Commentary on SSO and other putative inhibitors of FA transport across membranes by CD36 disrupt intracellular metabolism, but do not affect fatty acid translocation [Commentaries] By feedproxy.google.com Published On :: 2020-05-01T00:05:27-07:00 Full Article
bi Will the ICJ Myanmar Ruling Help Bring Accountability for the Rohingya Crisis? By feedproxy.google.com Published On :: Wed, 06 May 2020 17:30:43 +0000 Source The Diplomat URL https://thediplomat.com/2020/03/will-the-icj-myanmar-ruling-help-bring-accountab... Release date 18 March 2020 Expert Dr Champa Patel In the news type Op-ed Hide date on homepage Full Article
bi The insurgency in northern Mozambique has got worse. Why? By feedproxy.google.com Published On :: Wed, 06 May 2020 17:41:31 +0000 Source Mail & Guardian URL https://mg.co.za/article/2020-03-31-the-insurgency-in-northern-mozambique-has-go... Release date 31 March 2020 Expert Dr Alex Vines OBE In the news type Op-ed Hide date on homepage Full Article
bi X-ray structures of catalytic intermediates of cytochrome c oxidase provide insights into its O2 activation and unidirectional proton-pump mechanisms [Molecular Biophysics] By feedproxy.google.com Published On :: 2020-04-24T06:08:45-07:00 Cytochrome c oxidase (CcO) reduces O2 to water, coupled with a proton-pumping process. The structure of the O2-reduction site of CcO contains two reducing equivalents, Fea32+ and CuB1+, and suggests that a peroxide-bound state (Fea33+–O−–O−–CuB2+) rather than an O2-bound state (Fea32+–O2) is the initial catalytic intermediate. Unexpectedly, however, resonance Raman spectroscopy results have shown that the initial intermediate is Fea32+–O2, whereas Fea33+–O−–O−–CuB2+ is undetectable. Based on X-ray structures of static noncatalytic CcO forms and mutation analyses for bovine CcO, a proton-pumping mechanism has been proposed. It involves a proton-conducting pathway (the H-pathway) comprising a tandem hydrogen-bond network and a water channel located between the N- and P-side surfaces. However, a system for unidirectional proton-transport has not been experimentally identified. Here, an essentially identical X-ray structure for the two catalytic intermediates (P and F) of bovine CcO was determined at 1.8 Å resolution. A 1.70 Å Fe–O distance of the ferryl center could best be described as Fea34+ = O2−, not as Fea34+–OH−. The distance suggests an ∼800-cm−1 Raman stretching band. We found an interstitial water molecule that could trigger a rapid proton-coupled electron transfer from tyrosine-OH to the slowly forming Fea33+–O−–O−–CuB2+ state, preventing its detection, consistent with the unexpected Raman results. The H-pathway structures of both intermediates indicated that during proton-pumping from the hydrogen-bond network to the P-side, a transmembrane helix closes the water channel connecting the N-side with the hydrogen-bond network, facilitating unidirectional proton-pumping during the P-to-F transition. Full Article
bi The short variant of optic atrophy 1 (OPA1) improves cell survival under oxidative stress [Bioenergetics] By feedproxy.google.com Published On :: 2020-05-08T03:41:14-07:00 Optic atrophy 1 (OPA1) is a dynamin protein that mediates mitochondrial fusion at the inner membrane. OPA1 is also necessary for maintaining the cristae and thus essential for supporting cellular energetics. OPA1 exists as membrane-anchored long form (L-OPA1) and short form (S-OPA1) that lacks the transmembrane region and is generated by cleavage of L-OPA1. Mitochondrial dysfunction and cellular stresses activate the inner membrane–associated zinc metallopeptidase OMA1 that cleaves L-OPA1, causing S-OPA1 accumulation. The prevailing notion has been that L-OPA1 is the functional form, whereas S-OPA1 is an inactive cleavage product in mammals, and that stress-induced OPA1 cleavage causes mitochondrial fragmentation and sensitizes cells to death. However, S-OPA1 contains all functional domains of dynamin proteins, suggesting that it has a physiological role. Indeed, we recently demonstrated that S-OPA1 can maintain cristae and energetics through its GTPase activity, despite lacking fusion activity. Here, applying oxidant insult that induces OPA1 cleavage, we show that cells unable to generate S-OPA1 are more sensitive to this stress under obligatory respiratory conditions, leading to necrotic death. These findings indicate that L-OPA1 and S-OPA1 differ in maintaining mitochondrial function. Mechanistically, we found that cells that exclusively express L-OPA1 generate more superoxide and are more sensitive to Ca2+-induced mitochondrial permeability transition, suggesting that S-OPA1, and not L-OPA1, protects against cellular stress. Importantly, silencing of OMA1 expression increased oxidant-induced cell death, indicating that stress-induced OPA1 cleavage supports cell survival. Our findings suggest that S-OPA1 generation by OPA1 cleavage is a survival mechanism in stressed cells. Full Article
bi A kainate receptor-selective RNA aptamer [Neurobiology] By feedproxy.google.com Published On :: 2020-05-08T03:41:14-07:00 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. Full Article
bi Andrei Andreevich Shkalikov (on his seventieth birthday) By www.ams.org Published On :: Fri, 10 Apr 2020 08:09 EDT Trans. Moscow Math. Soc. 80 (2020), 113-122. Abstract, references and article information Full Article
bi On the solvability of a class of nonlinear integral equations in the problem of a spread of an epidemic By www.ams.org Published On :: Fri, 10 Apr 2020 08:09 EDT A. G. Sergeev and Kh. A. Khachatryan Trans. Moscow Math. Soc. 80 (2020), 95-111. Abstract, references and article information Full Article
bi China's 2020: Economic Transition, Sustainability and the Coronavirus By feedproxy.google.com Published On :: Tue, 04 Feb 2020 21:15:01 +0000 Corporate Members Event 10 March 2020 - 12:15pm to 2:00pm Chatham House | 10 St James's Square | London | SW1Y 4LE Event participants Dr Yu Jie, Senior Research Fellow on China, Asia-Pacific Programme, Chatham HouseDavid Lubin, Associate Fellow, Global Economy and Finance Programme, Chatham House; Managing Director and Head of Emerging Markets Economics, CitiJinny Yan, Managing Director and Chief China Economist, ICBC StandardChair: Creon Butler, Director, Global Economy and Finance Programme, Chatham House Read all our analysis on the Coronavirus ResponseThe coronavirus outbreak comes at a difficult time for China’s ruling party. A tumultuous 2019 saw the country fighting an economic slowdown coupled with an increasingly hostile international environment. As authorities take assertive steps to contain the virus, the emergency has - at least temporarily - disrupted global trade and supply chains, depressed asset prices and forced multinational businesses to make consequential decisions with limited information. Against this backdrop, panellists reflect on the country’s nascent economic transition from 2020 onward. What has been China’s progress towards a sustainable innovation-led economy so far? To what extent is the ruling party addressing growing concerns over job losses, wealth inequality and a lack of social mobility? And how are foreign investors responding to these developments in China? Members Events Team Email Full Article
bi Webinar: Director's Briefing – China's Economic Outlook By feedproxy.google.com Published On :: Fri, 03 Apr 2020 16:00:02 +0000 Corporate Members Event Webinar Partners and Major Corporates 8 April 2020 - 1:00pm to 2:00pm Online Event participants Dr Yu Jie, Senior Research Fellow on China, Asia-Pacific Programme, Chatham HouseJames Kynge, Global China Editor, Financial Times; Editor, Tech Scroll AsiaChair: Dr Robin Niblett, Director and Chief Executive, Chatham House Only a few months into 2020, the coronavirus pandemic has presented a huge challenge for China’s ruling party against an already tumultuous 12 months of economic slowdown coupled with an increasingly hostile international environment. The crisis looks set to worsen a deteriorating relationship between the US and China as the two countries battle to avoid further economic ramifications. It has also undermined President Xi Jinping and the Chinese Communist Party’s domestic political legitimacy and economic growth.The panellists will examine the wider geopolitical fallout of the coronavirus pandemic and discuss China’s future economic planning. How will the COVID-19 outbreak further strain the US-China relationship? What effect will this have on global trade and vulnerable supply chains at a time when cooperation is needed more than ever? And to what extent is the ruling party addressing growing concerns over job losses, wealth inequality and a lack of social mobility?This event is only open to Major Corporate Member and Partner organizations and selected giving circles of Chatham House. If you'd like to attend, please RSVP to Linda Bedford. Full Article
bi Webinar: Is It All Over For Globalization? By feedproxy.google.com Published On :: Wed, 08 Apr 2020 12:55:01 +0000 Research Event 15 April 2020 - 1:00pm to 2:00pm Event participants James Crabtree, Associate Fellow, Asia-Pacific ProgrammeWill Hutton, Political Economist; Principal, Hertford College Oxford Chair: Champa Patel, Director, Asia-Pacific Programme, Chatham House The coronavirus pandemic has led many to predict the end of globalization. Confronted with unprecedented social and economic challenges, countries are prioritizing their own citizens. Now, more than ever, international cooperation is necessary but, amidst the rise of nationalist-populist governments, global partnerships are absent or faltering. And as economies grind to a halt, so does international commerce — particularly in trade-dependent Asia, a region whose rise drove the period of 'hyper-globalization' which preceded the global financial crisis. Yet there are other possible futures too. The level of scientific collaboration and information-sharing now underway in search of a vaccine is unprecedented, and after a hesitant beginning the major powers have woken up to the importance of concerted economic stimuli. The virus may in some ways have the paradoxical result of bringing countries together, not driving them apart. Rather than causing its demise, it could help begin a new period in which globalization is not as deep, but at least is better managed and more equitable? Could this be the catalyst for a new coming together at home and abroad?In this webinar, speakers debate what impact the COVID-19 pandemic will have on the future of globalization, both in Asia and around the world. Department/project Asia-Pacific Programme, Geopolitics and Governance, Sustainable and Inclusive Growth, Technology and Society, Trade, Investment and Economics Lucy Ridout Programme Administrator, Asia-Pacific Programme +44 (0) 207 314 2761 Email Full Article
bi Webinar: Hong Kong: Dissent in the Age of Coronavirus By feedproxy.google.com Published On :: Wed, 08 Apr 2020 12:55:01 +0000 Research Event 17 April 2020 - 12:00pm to 1:00pm Event participants Antony Dapiran, Writer; Lawyer; Author of City on Fire: The Fight for Hong KongChair: Jessie Lau, Journalist; Researcher; Artist; Board Member and Online Editor-in-Chief, NüVoices Street protests demanding greater autonomy and democratization in Hong Kong upended the city for seven months last year. However, with the outbreak of the coronavirus in China in late January, the protests quickly died out. What does this mean for the city's protest movement?The speaker will argue that, despite the lack of high-profile street rallies, protest in the city is continuing. It is building on and evolving from last year's protest movement albeit in different forms. At the same time, the Hong Kong authorities, emboldened by a hard line from Beijing, have begun cracking down on activists and protesters in the city as they seek to put a lid on dissent ahead of important Legislative Council elections scheduled for this September.In this webinar, the speaker will look at the current state of dissent in Hong Kong and prospects for Hong Kong's future.This event will be held on the record. Department/project Asia-Pacific Programme, Conflict, Peace and Stability, Demographics, Population and Migration, Geopolitics and Governance, Technology and Society Lucy Ridout Programme Administrator, Asia-Pacific Programme +44 (0) 207 314 2761 Email Full Article
bi Webinar: Make or Break: China and the Geopolitical Impacts of COVID-19 By feedproxy.google.com Published On :: Fri, 24 Apr 2020 15:50:01 +0000 Research Event 28 April 2020 - 12:00pm to 12:45pm Event participants Yu Jie, Senior Research Fellow on China, Asia-Pacific Programme, Chatham HouseKerry Brown, Associate Fellow, Asia-Pacific Programme, Chatham House; Professor of Chinese Studies and Director of Lau China Institute, King’s College London The COVID-19 crisis has accelerated geopolitical tensions that, in part, have arisen from US-China tensions. At a time when the world needs strong and collective leadership to fight the coronavirus, both countries have been locked in a battle of words characterized by escalating hostility, polarizing narratives, blame and misinformation. Caught in the crossfire, many people of Chinese descent across differing countries have reported an increase in xenophobic attacks.Middle powers such as the UK and Australia have swerved between recognition of the global collaboration needed to solve this pandemic and calls for China to be held ‘accountable’ for its initial response. Others such, as France and Japan, have been trying to foster international cooperation. Against this context, speakers will discuss China’s response to the crisis, including the initial delay and Beijing’s later containment strategies. How do we best assess the delay amidst all the heated rhetoric? What was the response of people within China to the measures? Does COVID-19 mark a point of no return for US-China relations? How might this impact on relations between US allies and China? And what kind of China will emerge from this current crisis? Department/project Asia-Pacific Programme, Geopolitics and Governance, Technology and Society, Trade, Investment and Economics Lucy Ridout Programme Administrator, Asia-Pacific Programme +44 (0) 207 314 2761 Email Full Article
bi Putting the auto in automobile By www.ams.org Published On :: Wed, 22 Aug 2012 10:48:09 -0400 It may be hard to accept but it.s likely that we.d all be much safer in autonomous vehicles driven by computers, not humans. Annually more than 30,000 Americans die in car crashes, almost all due to human error. Autonomous vehicles will communicate position and speed to each other and avoid potential collisions-without the possibility of dozing off or road rage. There are still many legal (and insurance) issues to resolve, but researchers who are revving up the development of autonomous vehicles are relying on geometry for recognizing and tracking objects, probability to assess risk, and logic to prove that systems will perform as required. The advent of autonomous vehicles will bring in new systems to manage traffic as well, for example, at automated intersections. Cars will communicate to intersection-managing computers and secure reservations to pass through. In a matter of milliseconds, the computers will use trigonometry and differential equations to simulate vehicles. paths through the intersection and grant entry as long as there is no conflict with other vehicles. paths. Waiting won.t be completely eliminated but will be substantially reduced, as will the fuel--and patience--currently wasted. Although the intersection at the left might look wild, experiments indicate that because vehicles would follow precise paths, such intersections will be much safer and more efficient than the ones we drive through now. Full Article
bi Describing the Oceans By www.ams.org Published On :: Mon, 1 Oct 2012 10:25:09 -0400 Imagine trying to describe the circulation and temperatures across the vast expanse of our oceans. Good models of our oceans not only benefit fishermen on our coasts but farmers inland as well. Until recently, there were neither adequate tools nor enough data to construct models. Now with new data and new mathematics, short-range climate forecasting for example, of an upcoming El Nino is possible.There is still much work to be done in long-term climate forecasting, however, and we only barely understand the oceans. Existing equations describe ocean dynamics, but solutions to the equations are currently out of reach. No computer can accommodate the data required to approximate a good solution to these equations. Researchers therefore make simplifying assumptions in order to solve the equations. New data are used to test the accuracy of models derived from these assumptions. This research is essential because we cannot understand our climate until we understand the oceans. For More Information: What.s Happening in the Mathematical Sciences, Vol 1, Barry Cipra. Full Article
bi Going Back to the Beginning - The Big Bang By www.ams.org Published On :: Wed, 3 Dec 2014 09:43:26 -0500 Edward Witten talks about math and physics. Full Article
bi Designing Better Bicycles By www.ams.org Published On :: Wed, 10 May 2017 14:50:34 -0400 Researcher: Jim Papadopoulos, Northeastern University Description: Jim Papadopoulos talks about his years of research analyzing bicycles. Full Article
bi L.A. County's biodiversity is on the map, thanks to UCLA researchers By newsroom.ucla.edu Published On :: Thu, 30 Apr 2020 00:00:00 GMT Located in a global hotspot for biodiversity, Los Angeles County is home to more than 4,000 distinct species of plants and animals, including 52 endangered species - more than any county outside of Hawaii. And with 1 million animal and plant species facing extinction due to human activity, according to the United Nations, efforts to better understand the factors that shape biodiversity in Los Angeles could help shape global conservation efforts. Full Article