sea

Inhibition of the erythropoietin-producing receptor EPHB4 antagonizes androgen receptor overexpression and reduces enzalutamide resistance [Molecular Bases of Disease]

Prostate cancer (PCa) cells heavily rely on an active androgen receptor (AR) pathway for their survival. Enzalutamide (MDV3100) is a second-generation antiandrogenic drug that was approved by the Food and Drug Administration in 2012 to treat patients with castration-resistant prostate cancer (CRPC). However, emergence of resistance against this drug is inevitable, and it has been a major challenge to develop interventions that help manage enzalutamide-resistant CRPC. Erythropoietin-producing human hepatocellular (Eph) receptors are targeted by ephrin protein ligands and have a broad range of functions. Increasing evidence indicates that this signaling pathway plays an important role in tumorigenesis. Overexpression of EPH receptor B4 (EPHB4) has been observed in multiple types of cancer, being closely associated with proliferation, invasion, and metastasis of tumors. Here, using RNA-Seq analyses of clinical and preclinical samples, along with several biochemical and molecular methods, we report that enzalutamide-resistant PCa requires an active EPHB4 pathway that supports drug resistance of this tumor type. Using a small kinase inhibitor and RNAi-based gene silencing to disrupt EPHB4 activity, we found that these disruptions re-sensitize enzalutamide-resistant PCa to the drug both in vitro and in vivo. Mechanistically, we found that EPHB4 stimulates the AR by inducing proto-oncogene c-Myc (c-Myc) expression. Taken together, these results provide critical insight into the mechanism of enzalutamide resistance in PCa, potentially offering a therapeutic avenue for enhancing the efficacy of enzalutamide to better manage this common malignancy.




sea

Heterotrimeric Gq proteins as therapeutic targets? [Molecular Bases of Disease]

Heterotrimeric G proteins are the core upstream elements that transduce and amplify the cellular signals from G protein–coupled receptors (GPCRs) to intracellular effectors. GPCRs are the largest family of membrane proteins encoded in the human genome and are the targets of about one-third of prescription medicines. However, to date, no single therapeutic agent exerts its effects via perturbing heterotrimeric G protein function, despite a plethora of evidence linking G protein malfunction to human disease. Several recent studies have brought to light that the Gq family–specific inhibitor FR900359 (FR) is unexpectedly efficacious in silencing the signaling of Gq oncoproteins, mutant Gq variants that mostly exist in the active state. These data not only raise the hope that researchers working in drug discovery may be able to potentially strike Gq oncoproteins from the list of undruggable targets, but also raise questions as to how FR achieves its therapeutic effect. Here, we place emphasis on these recent studies and explain why they expand our pharmacological armamentarium for targeting Gq protein oncogenes as well as broaden our mechanistic understanding of Gq protein oncogene function. We also highlight how this novel insight impacts the significance and utility of using G(q) proteins as targets in drug discovery efforts.




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N{alpha}-Acetylation of the virulence factor EsxA is required for mycobacterial cytosolic translocation and virulence [Molecular Bases of Disease]

The Mycobacterium tuberculosis virulence factor EsxA and its chaperone EsxB are secreted as a heterodimer (EsxA:B) and are crucial for mycobacterial escape from phagosomes and cytosolic translocation. Current findings support the idea that for EsxA to interact with host membranes, EsxA must dissociate from EsxB at low pH. However, the molecular mechanism by which the EsxA:B heterodimer separates is not clear. In the present study, using liposome-leakage and cytotoxicity assays, LC-MS/MS–based proteomics, and CCF-4 FRET analysis, we obtained evidence that the Nα-acetylation of the Thr-2 residue on EsxA, a post-translational modification that is present in mycobacteria but absent in Escherichia coli, is required for the EsxA:B separation. Substitutions at Thr-2 that precluded Nα-acetylation inhibited the heterodimer separation and hence prevented EsxA from interacting with the host membrane, resulting in attenuated mycobacterial cytosolic translocation and virulence. Molecular dynamics simulations revealed that at low pH, the Nα-acetylated Thr-2 makes direct and frequent “bind-and-release” contacts with EsxB, which generates a force that pulls EsxB away from EsxA. In summary, our findings provide evidence that the Nα-acetylation at Thr-2 of EsxA facilitates dissociation of the EsxA:B heterodimer required for EsxA membrane permeabilization and mycobacterial cytosolic translocation and virulence.




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ER stress increases store-operated Ca2+ entry (SOCE) and augments basal insulin secretion in pancreatic beta cells [Molecular Bases of Disease]

Type 2 diabetes mellitus (T2DM) is characterized by impaired glucose-stimulated insulin secretion and increased peripheral insulin resistance. Unremitting endoplasmic reticulum (ER) stress can lead to beta-cell apoptosis and has been linked to type 2 diabetes. Although many studies have attempted to link ER stress and T2DM, the specific effects of ER stress on beta-cell function remain incompletely understood. To determine the interrelationship between ER stress and beta-cell function, here we treated insulin-secreting INS-1(832/13) cells or isolated mouse islets with the ER stress–inducer tunicamycin (TM). TM induced ER stress as expected, as evidenced by activation of the unfolded protein response. Beta cells treated with TM also exhibited concomitant alterations in their electrical activity and cytosolic free Ca2+ oscillations. As ER stress is known to reduce ER Ca2+ levels, we tested the hypothesis that the observed increase in Ca2+ oscillations occurred because of reduced ER Ca2+ levels and, in turn, increased store-operated Ca2+ entry. TM-induced cytosolic Ca2+ and membrane electrical oscillations were acutely inhibited by YM58483, which blocks store-operated Ca2+ channels. Significantly, TM-treated cells secreted increased insulin under conditions normally associated with only minimal release, e.g. 5 mm glucose, and YM58483 blocked this secretion. Taken together, these results support a critical role for ER Ca2+ depletion–activated Ca2+ current in mediating Ca2+-induced insulin secretion in response to ER stress.




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Modification of a PE/PPE substrate pair reroutes an Esx substrate pair from the mycobacterial ESX-1 type VII secretion system to the ESX-5 system [Molecular Bases of Disease]

Bacterial type VII secretion systems secrete a wide range of extracellular proteins that play important roles in bacterial viability and in interactions of pathogenic mycobacteria with their hosts. Mycobacterial type VII secretion systems consist of five subtypes, ESX-1–5, and have four substrate classes, namely, Esx, PE, PPE, and Esp proteins. At least some of these substrates are secreted as heterodimers. Each ESX system mediates the secretion of a specific set of Esx, PE, and PPE proteins, raising the question of how these substrates are recognized in a system-specific fashion. For the PE/PPE heterodimers, it has been shown that they interact with their cognate EspG chaperone and that this chaperone determines the designated secretion pathway. However, both structural and pulldown analyses have suggested that EspG cannot interact with the Esx proteins. Therefore, the determining factor for system specificity of the Esx proteins remains unknown. Here, we investigated the secretion specificity of the ESX-1 substrate pair EsxB_1/EsxA_1 in Mycobacterium marinum. Although this substrate pair was hardly secreted when homologously expressed, it was secreted when co-expressed together with the PE35/PPE68_1 pair, indicating that this pair could stimulate secretion of the EsxB_1/EsxA_1 pair. Surprisingly, co-expression of EsxB_1/EsxA_1 with a modified PE35/PPE68_1 version that carried the EspG5 chaperone-binding domain, previously shown to redirect this substrate pair to the ESX-5 system, also resulted in redirection and co-secretion of the Esx pair via ESX-5. Our results suggest a secretion model in which PE35/PPE68_1 determines the system-specific secretion of EsxB_1/EsxA_1.




sea

{alpha}-Synuclein filaments from transgenic mouse and human synucleinopathy-containing brains are maȷor seed-competent species [Molecular Bases of Disease]

Assembled α-synuclein in nerve cells and glial cells is the defining pathological feature of neurodegenerative diseases called synucleinopathies. Seeds of α-synuclein can induce the assembly of monomeric protein. Here, we used sucrose gradient centrifugation and transiently transfected HEK 293T cells to identify the species of α-synuclein from the brains of homozygous, symptomatic mice transgenic for human mutant A53T α-synuclein (line M83) that seed aggregation. The most potent fractions contained Sarkosyl-insoluble assemblies enriched in filaments. We also analyzed six cases of idiopathic Parkinson's disease (PD), one case of familial PD, and six cases of multiple system atrophy (MSA) for their ability to induce α-synuclein aggregation. The MSA samples were more potent than those of idiopathic PD in seeding aggregation. We found that following sucrose gradient centrifugation, the most seed-competent fractions from PD and MSA brains are those that contain Sarkosyl-insoluble α-synuclein. The fractions differed between PD and MSA, consistent with the presence of distinct conformers of assembled α-synuclein in these different samples. We conclude that α-synuclein filaments are the main driving force for amplification and propagation of pathology in synucleinopathies.




sea

Non-photopic and photopic visual cycles differentially regulate immediate, early, and late phases of cone photoreceptor-mediated vision [Molecular Bases of Disease]

Cone photoreceptors in the retina enable vision over a wide range of light intensities. However, the processes enabling cone vision in bright light (i.e. photopic vision) are not adequately understood. Chromophore regeneration of cone photopigments may require the retinal pigment epithelium (RPE) and/or retinal Müller glia. In the RPE, isomerization of all-trans-retinyl esters to 11-cis-retinol is mediated by the retinoid isomerohydrolase Rpe65. A putative alternative retinoid isomerase, dihydroceramide desaturase-1 (DES1), is expressed in RPE and Müller cells. The retinol-isomerase activities of Rpe65 and Des1 are inhibited by emixustat and fenretinide, respectively. Here, we tested the effects of these visual cycle inhibitors on immediate, early, and late phases of cone photopic vision. In zebrafish larvae raised under cyclic light conditions, fenretinide impaired late cone photopic vision, while the emixustat-treated zebrafish unexpectedly had normal vision. In contrast, emixustat-treated larvae raised under extensive dark-adaptation displayed significantly attenuated immediate photopic vision concomitant with significantly reduced 11-cis-retinaldehyde (11cRAL). Following 30 min of light, early photopic vision was recovered, despite 11cRAL levels remaining significantly reduced. Defects in immediate cone photopic vision were rescued in emixustat- or fenretinide-treated larvae following exogenous 9-cis-retinaldehyde supplementation. Genetic knockout of Des1 (degs1) or retinaldehyde-binding protein 1b (rlbp1b) did not eliminate photopic vision in zebrafish. Our findings define molecular and temporal requirements of the nonphotopic or photopic visual cycles for mediating vision in bright light.




sea

Reactive dicarbonyl compounds cause Calcitonin Gene-Related Peptide release and synergize with inflammatory conditions in mouse skin and peritoneum [Molecular Bases of Disease]

The plasmas of diabetic or uremic patients and of those receiving peritoneal dialysis treatment have increased levels of the glucose-derived dicarbonyl metabolites like methylglyoxal (MGO), glyoxal (GO), and 3-deoxyglucosone (3-DG). The elevated dicarbonyl levels can contribute to the development of painful neuropathies. Here, we used stimulated immunoreactive Calcitonin Gene–Related Peptide (iCGRP) release as a measure of nociceptor activation, and we found that each dicarbonyl metabolite induces a concentration-, TRPA1-, and Ca2+-dependent iCGRP release. MGO, GO, and 3-DG were about equally potent in the millimolar range. We hypothesized that another dicarbonyl, 3,4-dideoxyglucosone-3-ene (3,4-DGE), which is present in peritoneal dialysis (PD) solutions after heat sterilization, activates nociceptors. We also showed that at body temperatures 3,4-DGE is formed from 3-DG and that concentrations of 3,4-DGE in the micromolar range effectively induced iCGRP release from isolated murine skin. In a novel preparation of the isolated parietal peritoneum PD fluid or 3,4-DGE alone, at concentrations found in PD solutions, stimulated iCGRP release. We also tested whether inflammatory tissue conditions synergize with dicarbonyls to induce iCGRP release from isolated skin. Application of MGO together with bradykinin or prostaglandin E2 resulted in an overadditive effect on iCGRP release, whereas MGO applied at a pH of 5.2 resulted in reduced release, probably due to an MGO-mediated inhibition of transient receptor potential (TRP) V1 receptors. These results indicate that several reactive dicarbonyls activate nociceptors and potentiate inflammatory mediators. Our findings underline the roles of dicarbonyls and TRPA1 receptors in causing pain during diabetes or renal disease.




sea

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.




sea

Inhibition of the polyamine synthesis enzyme ornithine decarboxylase sensitizes triple-negative breast cancer cells to cytotoxic chemotherapy [Molecular Bases of Disease]

Treatment of patients with triple-negative breast cancer (TNBC) is limited by a lack of effective molecular therapies targeting this disease. Recent studies have identified metabolic alterations in cancer cells that can be targeted to improve responses to standard-of-care chemotherapy regimens. Using MDA-MB-468 and SUM-159PT TNBC cells, along with LC-MS/MS and HPLC metabolomics profiling, we found here that exposure of TNBC cells to the cytotoxic chemotherapy drugs cisplatin and doxorubicin alter arginine and polyamine metabolites. This alteration was because of a reduction in the levels and activity of a rate-limiting polyamine biosynthetic enzyme, ornithine decarboxylase (ODC). Using gene silencing and inhibitor treatments, we determined that the reduction in ODC was mediated by its negative regulator antizyme, targeting ODC to the proteasome for degradation. Treatment with the ODC inhibitor difluoromethylornithine (DFMO) sensitized TNBC cells to chemotherapy, but this was not observed in receptor-positive breast cancer cells. Moreover, TNBC cell lines had greater sensitivity to single-agent DFMO, and ODC levels were elevated in TNBC patient samples. The alterations in polyamine metabolism in response to chemotherapy, as well as DFMO-induced preferential sensitization of TNBC cells to chemotherapy, reported here suggest that ODC may be a targetable metabolic vulnerability in TNBC.




sea

Modification of a PE/PPE substrate pair reroutes an Esx substrate pair from the mycobacterial ESX-1 type VII secretion system to the ESX-5 system [Molecular Bases of Disease]

Bacterial type VII secretion systems secrete a wide range of extracellular proteins that play important roles in bacterial viability and in interactions of pathogenic mycobacteria with their hosts. Mycobacterial type VII secretion systems consist of five subtypes, ESX-1–5, and have four substrate classes, namely, Esx, PE, PPE, and Esp proteins. At least some of these substrates are secreted as heterodimers. Each ESX system mediates the secretion of a specific set of Esx, PE, and PPE proteins, raising the question of how these substrates are recognized in a system-specific fashion. For the PE/PPE heterodimers, it has been shown that they interact with their cognate EspG chaperone and that this chaperone determines the designated secretion pathway. However, both structural and pulldown analyses have suggested that EspG cannot interact with the Esx proteins. Therefore, the determining factor for system specificity of the Esx proteins remains unknown. Here, we investigated the secretion specificity of the ESX-1 substrate pair EsxB_1/EsxA_1 in Mycobacterium marinum. Although this substrate pair was hardly secreted when homologously expressed, it was secreted when co-expressed together with the PE35/PPE68_1 pair, indicating that this pair could stimulate secretion of the EsxB_1/EsxA_1 pair. Surprisingly, co-expression of EsxB_1/EsxA_1 with a modified PE35/PPE68_1 version that carried the EspG5 chaperone-binding domain, previously shown to redirect this substrate pair to the ESX-5 system, also resulted in redirection and co-secretion of the Esx pair via ESX-5. Our results suggest a secretion model in which PE35/PPE68_1 determines the system-specific secretion of EsxB_1/EsxA_1.




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Chatham House appoints Tim Benton as Research Director for Energy, Environment and Resources

30 May 2019

Chatham House is pleased to announce that Professor Tim Benton has been appointed as research director of the Energy, Environment and Resources Department.

He brings substantial expertise on food systems and environmental change to the role and will focus on establishing new initiatives at the intersection of research and policymaking.

Tim was appointed as a distinguished visiting fellow of Chatham House in the Energy, Environment and Resources Department in 2016. He has since contributed to the institute in a number of ways, not least through leading the GCRF-AFRICAP project which aims to enhance policy making in Sub-Saharan Africa, through building climate-smart food systems.

Tim’s research focuses on food security and building food systems that are resilient and sustainable, working within the broader areas of ecology, natural resources and climate change impacts. He has published over 150 academic papers, most tackling the core themes of agriculture’s environmental impact and more generally how systems respond to environmental change. He is a lead author of the upcoming Intergovernmental Panel on Climate Change (IPCC) special report on climate change and land. He is also coordinating lead author on international risks for the UK’s Climate Change Risk Assessment, which draws on his broader interests in sustainable finance, trade and energy. He has advised other governments as well as global companies on related issues.

Tim joins Chatham House in his new capacity from the University of Leeds where he is dean of strategic research initiatives. Prior to this, from 2011 to 2016, Tim was the champion of the UK’s Global Food Security programme, a large multi-agency partnership of the UK’s public bodies involved in addressing challenges around food. He has also been research dean in the Faculty of Biological Sciences, and head of department, at Leeds.

Dr Robin Niblett, director of Chatham House, said: 'Tim’s wealth of experience will be especially valuable as we build up our interdisciplinary Chatham House research theme of promoting sustainable growth. We look forward to welcoming Tim to his new role in early July.'

Tim Benton said: 'I am honoured to be joining Chatham House as Research Director for Energy, Environment and Resources. Chatham House has a global reputation in these areas, on which we can build. Informed analysis, combined with effective action to transition towards sustainable economies, is needed now, more than ever.'

About the Energy, Environment and Resources Department

The Energy, Environment and Resources department at Chatham House seeks to advance the international debate on energy, environment and development policy and to influence and enable decision-makers – governments, NGOs and business – to take well-informed decisions that contribute to achieving sustainable development. Independent of any actor or ideology, we do this by carrying out innovative research on major policy challenges, bringing together diverse perspectives and constituencies and injecting new ideas into the international arena.

Tim Benton takes over the role from Rob Bailey who has joined Marsh & McLennan Insights as Director, Climate Resilience.




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In Search of the American State

6 April 2020

Dr Leslie Vinjamuri

Dean, Queen Elizabeth II Academy for Leadership in International Affairs; Director, US and the Americas Programme
The urgent need for US leadership to drive forward a coordinated international response to coronavirus is developing rapidly alongside snowballing demands for Washington to step up its efforts at home.

2020-04-06-US-covid-washington

Exercising in front of a deserted Lincoln Memorial in Washington, DC. Photo by Win McNamee/Getty Images.

As the US surgeon general warns Americans to brace for ‘our Pearl Harbor moment’, the US faces a week in which it may see the worst of the global pandemic. The absence of US leadership at the global level has enabled the Security Council’s inaction. And at the G7, President Trump actively obstructed efforts to agree a joint statement.

US efforts to increase its support of international aid to the tune of $274million are minimal, not least in light of a 50% reduction in its support for the World Health Organization (WHO) and radically diminished support for other global health programmes as well. International coordination is essential to mitigate unregulated competition for critical medical supplies, manage border closures, and guarantee international economic stability.

True, it won’t be possible to control the epidemic at home if the global effort to defeat the pandemic fails. But the absence of leadership from Washington at home is palpable. And what happens at home sets a natural limit on America’s internationalism.

Both solution and problem

In response to the coronavirus crisis, the US state is proving to be a solution - and a problem. The dramatic response to the economic crisis is evident with the $2.3trillion stimulus package signed into law by President Trump boldly supported by both Democrats and Republicans in the most significant piece of bipartisan legislation passed in decades.

America’s political economy is unrecognisable, moving left and looking increasingly more European each week as Congress and the executive branch agree a series of stimulus packages designed to protect citizens and businesses. Some elements of this legislation were more familiar to Americans, notably $200bn in corporate tax breaks.

But Congress also agreed unemployment insurance, and cheques - one in April, one in May – to be sent directly to those Americans most directly hit by the economic impact of COVID-19. In effect, this is adopting a temporary universal basic income.

The stimulus plan also dedicated $367bn to keep small businesses afloat for as long as the economy is shuttered. Already the government is negotiating a fourth stimulus package, but the paradox is that without rigorous steps to halt the health crisis, no level of state intervention designed to solve the economic response will be sufficient.

The scale of the state’s economic intervention is unprecedented, but it stands in stark contrast to Washington’s failure to coordinate a national response to America’s health crisis. An unregulated market for personal protective equipment and ventilators is driving up competition between cities, states, and even the federal government.

In some cases, cities and states are reaching out directly beyond national borders to international organisations, foreign firms and even America’s geopolitical competitors as they search for suppliers. In late March, the city of New York secured a commitment from the United Nations to donate 250,000 protective face masks.

Now Governor Cuomo has announced New York has secured a shipment of 140 ventilators from the state of Oregon, and 1,000 ventilators from China. The Patriots even sent their team plane to China to pick up medical supplies for the state of Massachusetts. And following a phone call between President Putin and President Trump, Russia sent a plane with masks and medical equipment to JFK airport in New York.

Networks of Chinese-Americans in the United States are rapidly mobilising their networks to access supplies and send them to doctors and nurses in need. And innovative and decisive action by governors, corporates, universities and mayors drove America’s early response to coronavirus.

This was critical to slowing the spread of COVID-19 by implementing policies that rapidly drove social distancing. But the limits of decentralized and uncoordinated action are now coming into sharp focus. President Trump has so far refused to require stay-at-home orders across all states, leaving this authority to individual governors. Unregulated competition has driven up prices with the consequence that critical supplies are going to the highest bidder, not those most in need.

Governor Cuomo’s call for a nationwide buying consortium has so far gone unheeded and, although the Federal Emergency Management Agency has attempted to deliver supplies to states most in need, the Strategic National Stockpile is depleting fast. Without critical action, the federal government risks hindering the ability of cities and states to get the supplies they need.

But President Trump is reluctant to fully deploy his powers under the Defense Production Act (DPA). In March, he did invoke the DPA to require certain domestic manufacturers to produce ventilators. But calls for it to be used to require manufacturers to produce PPE (personal protective equipment), control costs, and manage allocations has so far gone unheeded by a president generally opposed to state interventions for managing the economy.

It is true that federalism and a deep belief in competition are critical to the fabric of US history and politics, and innovations made possible by market values of entrepreneurism and competition cannot be underestimated. In the search for a vaccine, this could still prove to be key.

But with current estimates that more Americans will die from coronavirus than were killed in the Korean and Vietnam wars combined, it is clear now is the time to reimagine and reinvent the role of the American state.

In the absence of a coordinated effort driven by the White House, governors are working together to identify the areas of greatest need. Whether this will lead to a recasting of the American state and greater demand for a deeper and more permanent social safety net is a key question in the months ahead.

In the short-term the need for coordinated state action at the national level is self-evident. US leadership globally, to manage the health crisis and its economic impacts, is also vital. But this is unlikely to be forthcoming until America gets its own house in order.




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The Paragon Algorithm, a Next Generation Search Engine That Uses Sequence Temperature Values and Feature Probabilities to Identify Peptides from Tandem Mass Spectra

Ignat V. Shilov
Sep 1, 2007; 6:1638-1655
Technology




sea

Heterotrimeric Gq proteins as therapeutic targets? [Molecular Bases of Disease]

Heterotrimeric G proteins are the core upstream elements that transduce and amplify the cellular signals from G protein–coupled receptors (GPCRs) to intracellular effectors. GPCRs are the largest family of membrane proteins encoded in the human genome and are the targets of about one-third of prescription medicines. However, to date, no single therapeutic agent exerts its effects via perturbing heterotrimeric G protein function, despite a plethora of evidence linking G protein malfunction to human disease. Several recent studies have brought to light that the Gq family–specific inhibitor FR900359 (FR) is unexpectedly efficacious in silencing the signaling of Gq oncoproteins, mutant Gq variants that mostly exist in the active state. These data not only raise the hope that researchers working in drug discovery may be able to potentially strike Gq oncoproteins from the list of undruggable targets, but also raise questions as to how FR achieves its therapeutic effect. Here, we place emphasis on these recent studies and explain why they expand our pharmacological armamentarium for targeting Gq protein oncogenes as well as broaden our mechanistic understanding of Gq protein oncogene function. We also highlight how this novel insight impacts the significance and utility of using G(q) proteins as targets in drug discovery efforts.




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Indonesia and the ASEAN outlook on the Indo-Pacific

8 January 2020 , Volume 96, Number 1

Dewi Fortuna Anwar

Indonesia has taken a leadership role within the Association of Southeast Asian Nations (ASEAN) in drafting a common outlook on the Indo-Pacific concept. The widening of Indonesia's geostrategic canvas from the Asia–Pacific to the Indo-Pacific is in line with President Joko Widodo's intent to make Indonesia a Global Maritime Fulcrum (GMF). In view of the rivalry between the US and China and the emergence of various Indo-Pacific initiatives from other countries, Indonesia believes that ASEAN must try to maintain its centrality. The draft of Indonesia's perspective for an ASEAN outlook on the Indo-Pacific: towards a peaceful, prosperous, and inclusive region was submitted for considerations by ASEAN, and after 18 months of intensive lobbying by Indonesia the concept was finally adopted at the ASEAN Summit in June 2019. The ASEAN outlook promotes the principles of openness, inclusiveness, transparency, respect for international law and ASEAN centrality in the Indo-Pacific region. It proposes a building-block approach, seeking commonalities between existing regional initiatives in which ASEAN-led mechanisms will act as a fulcrum for both norm-setting and concrete cooperation. Rather than creating a new regional architecture, the East Asia Summit (EAS) is proposed as the platform for advancing the Indo-Pacific discourse and cooperation. Indonesia's ASEAN outlook on the Indo-Pacific marks its renewed foreign policy activism as a middle power and underlines the continuing importance that Indonesia places on ASEAN as the cornerstone of its foreign policy, emphasising ASEAN's centrality as the primary vehicle for managing relations with the major powers in the Indo-Pacific region.




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Virtual Roundtable: Evaluating Outcomes in Fragile Contexts: Adapting Research Methods in the Time of COVID-19

Invitation Only Research Event

5 May 2020 - 12:00pm to 1:00pm

Event participants

Rebecca Wolfe, Lecturer, Harris School for Public Policy and Associate, Pearson Institute for the Study and Resolution of Global Conflicts, University of Chicago
Tom Gillhespy, Principal Consultant, Itad
Shodmon Hojibekov, Chief Executive Officer, Aga Khan Agency for Habitat (Afghanistan)
Chair: Champa Patel, Director, Asia-Pacific Programme, Chatham House

This virtual roundtable has been co-convened by Chatham House and the Aga Khan Foundation.  

While conducting research in fragile and conflict-affected contexts has always presented challenges, the outbreak of COVID-19 creates additional challenges including travel restrictions, ethical challenges, and disruptions to usual modes of working. This virtual roundtable will explore how organizations can adapt their research and monitoring and evaluation models in response to the coronavirus pandemic. This event aims to discuss the research methods being used to mitigate the impact of the COVID-19 crisis; the important role of technology; and ways to engage policy and decision-makers during this time.

 

Event attributes

Chatham House Rule

Lucy Ridout

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




sea

In Search of the American State

6 April 2020

Dr Leslie Vinjamuri

Dean, Queen Elizabeth II Academy for Leadership in International Affairs; Director, US and the Americas Programme
The urgent need for US leadership to drive forward a coordinated international response to coronavirus is developing rapidly alongside snowballing demands for Washington to step up its efforts at home.

2020-04-06-US-covid-washington

Exercising in front of a deserted Lincoln Memorial in Washington, DC. Photo by Win McNamee/Getty Images.

As the US surgeon general warns Americans to brace for ‘our Pearl Harbor moment’, the US faces a week in which it may see the worst of the global pandemic. The absence of US leadership at the global level has enabled the Security Council’s inaction. And at the G7, President Trump actively obstructed efforts to agree a joint statement.

US efforts to increase its support of international aid to the tune of $274million are minimal, not least in light of a 50% reduction in its support for the World Health Organization (WHO) and radically diminished support for other global health programmes as well. International coordination is essential to mitigate unregulated competition for critical medical supplies, manage border closures, and guarantee international economic stability.

True, it won’t be possible to control the epidemic at home if the global effort to defeat the pandemic fails. But the absence of leadership from Washington at home is palpable. And what happens at home sets a natural limit on America’s internationalism.

Both solution and problem

In response to the coronavirus crisis, the US state is proving to be a solution - and a problem. The dramatic response to the economic crisis is evident with the $2.3trillion stimulus package signed into law by President Trump boldly supported by both Democrats and Republicans in the most significant piece of bipartisan legislation passed in decades.

America’s political economy is unrecognisable, moving left and looking increasingly more European each week as Congress and the executive branch agree a series of stimulus packages designed to protect citizens and businesses. Some elements of this legislation were more familiar to Americans, notably $200bn in corporate tax breaks.

But Congress also agreed unemployment insurance, and cheques - one in April, one in May – to be sent directly to those Americans most directly hit by the economic impact of COVID-19. In effect, this is adopting a temporary universal basic income.

The stimulus plan also dedicated $367bn to keep small businesses afloat for as long as the economy is shuttered. Already the government is negotiating a fourth stimulus package, but the paradox is that without rigorous steps to halt the health crisis, no level of state intervention designed to solve the economic response will be sufficient.

The scale of the state’s economic intervention is unprecedented, but it stands in stark contrast to Washington’s failure to coordinate a national response to America’s health crisis. An unregulated market for personal protective equipment and ventilators is driving up competition between cities, states, and even the federal government.

In some cases, cities and states are reaching out directly beyond national borders to international organisations, foreign firms and even America’s geopolitical competitors as they search for suppliers. In late March, the city of New York secured a commitment from the United Nations to donate 250,000 protective face masks.

Now Governor Cuomo has announced New York has secured a shipment of 140 ventilators from the state of Oregon, and 1,000 ventilators from China. The Patriots even sent their team plane to China to pick up medical supplies for the state of Massachusetts. And following a phone call between President Putin and President Trump, Russia sent a plane with masks and medical equipment to JFK airport in New York.

Networks of Chinese-Americans in the United States are rapidly mobilising their networks to access supplies and send them to doctors and nurses in need. And innovative and decisive action by governors, corporates, universities and mayors drove America’s early response to coronavirus.

This was critical to slowing the spread of COVID-19 by implementing policies that rapidly drove social distancing. But the limits of decentralized and uncoordinated action are now coming into sharp focus. President Trump has so far refused to require stay-at-home orders across all states, leaving this authority to individual governors. Unregulated competition has driven up prices with the consequence that critical supplies are going to the highest bidder, not those most in need.

Governor Cuomo’s call for a nationwide buying consortium has so far gone unheeded and, although the Federal Emergency Management Agency has attempted to deliver supplies to states most in need, the Strategic National Stockpile is depleting fast. Without critical action, the federal government risks hindering the ability of cities and states to get the supplies they need.

But President Trump is reluctant to fully deploy his powers under the Defense Production Act (DPA). In March, he did invoke the DPA to require certain domestic manufacturers to produce ventilators. But calls for it to be used to require manufacturers to produce PPE (personal protective equipment), control costs, and manage allocations has so far gone unheeded by a president generally opposed to state interventions for managing the economy.

It is true that federalism and a deep belief in competition are critical to the fabric of US history and politics, and innovations made possible by market values of entrepreneurism and competition cannot be underestimated. In the search for a vaccine, this could still prove to be key.

But with current estimates that more Americans will die from coronavirus than were killed in the Korean and Vietnam wars combined, it is clear now is the time to reimagine and reinvent the role of the American state.

In the absence of a coordinated effort driven by the White House, governors are working together to identify the areas of greatest need. Whether this will lead to a recasting of the American state and greater demand for a deeper and more permanent social safety net is a key question in the months ahead.

In the short-term the need for coordinated state action at the national level is self-evident. US leadership globally, to manage the health crisis and its economic impacts, is also vital. But this is unlikely to be forthcoming until America gets its own house in order.




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{alpha}-Synuclein filaments from transgenic mouse and human synucleinopathy-containing brains are maȷor seed-competent species [Molecular Bases of Disease]

Assembled α-synuclein in nerve cells and glial cells is the defining pathological feature of neurodegenerative diseases called synucleinopathies. Seeds of α-synuclein can induce the assembly of monomeric protein. Here, we used sucrose gradient centrifugation and transiently transfected HEK 293T cells to identify the species of α-synuclein from the brains of homozygous, symptomatic mice transgenic for human mutant A53T α-synuclein (line M83) that seed aggregation. The most potent fractions contained Sarkosyl-insoluble assemblies enriched in filaments. We also analyzed six cases of idiopathic Parkinson's disease (PD), one case of familial PD, and six cases of multiple system atrophy (MSA) for their ability to induce α-synuclein aggregation. The MSA samples were more potent than those of idiopathic PD in seeding aggregation. We found that following sucrose gradient centrifugation, the most seed-competent fractions from PD and MSA brains are those that contain Sarkosyl-insoluble α-synuclein. The fractions differed between PD and MSA, consistent with the presence of distinct conformers of assembled α-synuclein in these different samples. We conclude that α-synuclein filaments are the main driving force for amplification and propagation of pathology in synucleinopathies.




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Reactive dicarbonyl compounds cause Calcitonin Gene-Related Peptide release and synergize with inflammatory conditions in mouse skin and peritoneum [Molecular Bases of Disease]

The plasmas of diabetic or uremic patients and of those receiving peritoneal dialysis treatment have increased levels of the glucose-derived dicarbonyl metabolites like methylglyoxal (MGO), glyoxal (GO), and 3-deoxyglucosone (3-DG). The elevated dicarbonyl levels can contribute to the development of painful neuropathies. Here, we used stimulated immunoreactive Calcitonin Gene–Related Peptide (iCGRP) release as a measure of nociceptor activation, and we found that each dicarbonyl metabolite induces a concentration-, TRPA1-, and Ca2+-dependent iCGRP release. MGO, GO, and 3-DG were about equally potent in the millimolar range. We hypothesized that another dicarbonyl, 3,4-dideoxyglucosone-3-ene (3,4-DGE), which is present in peritoneal dialysis (PD) solutions after heat sterilization, activates nociceptors. We also showed that at body temperatures 3,4-DGE is formed from 3-DG and that concentrations of 3,4-DGE in the micromolar range effectively induced iCGRP release from isolated murine skin. In a novel preparation of the isolated parietal peritoneum PD fluid or 3,4-DGE alone, at concentrations found in PD solutions, stimulated iCGRP release. We also tested whether inflammatory tissue conditions synergize with dicarbonyls to induce iCGRP release from isolated skin. Application of MGO together with bradykinin or prostaglandin E2 resulted in an overadditive effect on iCGRP release, whereas MGO applied at a pH of 5.2 resulted in reduced release, probably due to an MGO-mediated inhibition of transient receptor potential (TRP) V1 receptors. These results indicate that several reactive dicarbonyls activate nociceptors and potentiate inflammatory mediators. Our findings underline the roles of dicarbonyls and TRPA1 receptors in causing pain during diabetes or renal disease.




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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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Virtual Roundtable: Evaluating Outcomes in Fragile Contexts: Adapting Research Methods in the Time of COVID-19

Invitation Only Research Event

5 May 2020 - 12:00pm to 1:00pm

Event participants

Rebecca Wolfe, Lecturer, Harris School for Public Policy and Associate, Pearson Institute for the Study and Resolution of Global Conflicts, University of Chicago
Tom Gillhespy, Principal Consultant, Itad
Shodmon Hojibekov, Chief Executive Officer, Aga Khan Agency for Habitat (Afghanistan)
Chair: Champa Patel, Director, Asia-Pacific Programme, Chatham House

This virtual roundtable has been co-convened by Chatham House and the Aga Khan Foundation.  

While conducting research in fragile and conflict-affected contexts has always presented challenges, the outbreak of COVID-19 creates additional challenges including travel restrictions, ethical challenges, and disruptions to usual modes of working. This virtual roundtable will explore how organizations can adapt their research and monitoring and evaluation models in response to the coronavirus pandemic. This event aims to discuss the research methods being used to mitigate the impact of the COVID-19 crisis; the important role of technology; and ways to engage policy and decision-makers during this time.

 

Event attributes

Chatham House Rule

Lucy Ridout

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




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The Militarization of the Black Sea After the Annexation of Crimea




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Brexit: In Search of A Solution - The Common Market 2.0 Option




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Proteomic Analysis of Salmonella-modified Membranes Reveals Adaptations to Macrophage Hosts [Research]

Systemic infection and proliferation of intracellular pathogens require the biogenesis of a growth-stimulating compartment. The gastrointestinal pathogen Salmonella enterica commonly forms highly dynamic and extensive tubular membrane compartments built from Salmonella-modified membranes (SMMs) in diverse host cells. Although the general mechanism involved in the formation of replication-permissive compartments of S. enterica is well researched, much less is known regarding specific adaptations to different host cell types. Using an affinity-based proteome approach, we explored the composition of SMMs in murine macrophages. The systematic characterization provides a broader landscape of host players to the maturation of Salmonella-containing compartments and reveals core host elements targeted by Salmonella in macrophages as well as epithelial cells. However, we also identified subtle host specific adaptations. Some of these observations, such as the differential involvement of the COPII system, Rab GTPases 2A, 8B, 11 and ER transport proteins Sec61 and Sec22B may explain cell line-dependent variations in the pathophysiology of Salmonella infections. In summary, our system-wide approach demonstrates a hitherto underappreciated impact of the host cell type in the formation of intracellular compartments by Salmonella.




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Phosphotyrosine-based Phosphoproteomics for Target Identification and Drug Response Prediction in AML Cell Lines [Research]

Acute myeloid leukemia (AML) is a clonal disorder arising from hematopoietic myeloid progenitors. Aberrantly activated tyrosine kinases (TK) are involved in leukemogenesis and are associated with poor treatment outcome. Kinase inhibitor (KI) treatment has shown promise in improving patient outcome in AML. However, inhibitor selection for patients is suboptimal.

In a preclinical effort to address KI selection, we analyzed a panel of 16 AML cell lines using phosphotyrosine (pY) enrichment-based, label-free phosphoproteomics. The Integrative Inferred Kinase Activity (INKA) algorithm was used to identify hyperphosphorylated, active kinases as candidates for KI treatment, and efficacy of selected KIs was tested.

Heterogeneous signaling was observed with between 241 and 2764 phosphopeptides detected per cell line. Of 4853 identified phosphopeptides with 4229 phosphosites, 4459 phosphopeptides (4430 pY) were linked to 3605 class I sites (3525 pY). INKA analysis in single cell lines successfully pinpointed driver kinases (PDGFRA, JAK2, KIT and FLT3) corresponding with activating mutations present in these cell lines. Furthermore, potential receptor tyrosine kinase (RTK) drivers, undetected by standard molecular analyses, were identified in four cell lines (FGFR1 in KG-1 and KG-1a, PDGFRA in Kasumi-3, and FLT3 in MM6). These cell lines proved highly sensitive to specific KIs. Six AML cell lines without a clear RTK driver showed evidence of MAPK1/3 activation, indicative of the presence of activating upstream RAS mutations. Importantly, FLT3 phosphorylation was demonstrated in two clinical AML samples with a FLT3 internal tandem duplication (ITD) mutation.

Our data show the potential of pY-phosphoproteomics and INKA analysis to provide insight in AML TK signaling and identify hyperactive kinases as potential targets for treatment in AML cell lines. These results warrant future investigation of clinical samples to further our understanding of TK phosphorylation in relation to clinical response in the individual patient.




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Identification of an Unconventional Subpeptidome Bound to the Behcet's Disease-associated HLA-B*51:01 that is Regulated by Endoplasmic Reticulum Aminopeptidase 1 (ERAP1) [Research]

Human leukocyte antigen (HLA) B*51:01 and endoplasmic reticulum aminopeptidase 1 (ERAP1) are strongly genetically associated with Behcet's disease (BD). Previous studies have defined two subgroups of HLA-B*51 peptidome containing proline (Pro) or alanine (Ala) at position 2 (P2). Little is known about the unconventional non-Pro/Ala2 HLA-B*51-bound peptides. We aimed to study the features of this novel subpeptidome, and investigate its regulation by ERAP1. CRISPR-Cas9 was used to generate an HLA-ABC-triple knockout HeLa cell line (HeLa.ABC-KO), which was subsequently transduced to express HLA-B*51:01 (HeLa.ABC-KO.B51). ERAP1 was silenced using lentiviral shRNA. Peptides bound to HLA-B*51:01 were eluted and analyzed by mass spectrometry. The characteristics of non-Pro/Ala2, Pro2, and Ala2 peptides and their alteration by ERAP1 silencing were investigated. Effects of ERAP1 silencing on cell surface expression of HLA-B*51:01 were studied using flow cytometry. More than 20% of peptides eluted from HLA-B*51:01 lacked Pro or Ala at P2. This unconventional group of HLA-B*51:01-bound peptides was relatively enriched for 8-mers (with relatively fewer 9-mers) compared with the Pro2 and Ala2 subpeptidomes and had similar N-terminal and C-terminal residue usages to Ala2 peptides (with the exception of the less abundant leucine at position ). Knockdown of ERAP1 increased the percentage of non-Pro/Ala2 from 20% to ~40%, increased the percentage of longer (10-mer and 11-mer) peptides eluted from HLA-B*51:01 complexes, and abrogated the predominance of leucine at P1. Interestingly knockdown of ERAP1 altered the length and N-terminal residue usage of non-Ala2&Pro2 and Ala2 but not the Pro2 peptides. Finally, ERAP1 silencing regulated the expression levels of cell surface HLA-B*51 in a cell-type-dependent manner. In conclusion, we have used a novel methodology to identify an unconventional but surprisingly abundant non-Pro/Ala2 HLA-B*51:01 subpeptidome. It is increased by knockdown of ERAP1, a gene affecting the risk of developing BD. This has implications for theories of disease pathogenesis.




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Discovery of a Redox Thiol Switch: Implications for Cellular Energy Metabolism [Research]

The redox-based modifications of cysteine residues in proteins regulate their function in many biological processes. The gas molecule H2S has been shown to persulfidate redox sensitive cysteine residues resulting in an H2S-modified proteome known as the sulfhydrome. Tandem Mass Tags (TMT) multiplexing strategies for large-scale proteomic analyses have become increasingly prevalent in detecting cysteine modifications. Here we developed a TMT-based proteomics approach for selectively trapping and tagging cysteine persulfides in the cellular proteomes. We revealed the natural protein sulfhydrome of two human cell lines, and identified insulin as a novel substrate in pancreatic beta cells. Moreover, we showed that under oxidative stress conditions, increased H2S can target enzymes involved in energy metabolism by switching specific cysteine modifications to persulfides. Specifically, we discovered a Redox Thiol Switch, from protein S-glutathioinylation to S-persulfidation (RTSGS). We propose that the RTSGS from S-glutathioinylation to S-persulfidation is a potential mechanism to fine tune cellular energy metabolism in response to different levels of oxidative stress.




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Quantitative Profiling of the Human Substantia Nigra Proteome from Laser-capture Microdissected FFPE Tissue [Research]

Laser-capture microdissection (LCM) allows the visualization and isolation of morphologically distinct subpopulations of cells from heterogeneous tissue specimens. In combination with formalin-fixed and paraffin-embedded (FFPE) tissue it provides a powerful tool for retrospective and clinically relevant studies of tissue proteins in a healthy and diseased context. We first optimized the protocol for efficient LCM analysis of FFPE tissue specimens. The use of SDS containing extraction buffer in combination with the single-pot solid-phase-enhanced sample preparation (SP3) digest method gave the best results regarding protein yield and protein/peptide identifications. Microdissected FFPE human substantia nigra tissue samples (~3,000 cells) were then analyzed, using tandem mass tag (TMT) labeling and LC-MS/MS, resulting in the quantification of >5,600 protein groups. Nigral proteins were classified and analyzed by abundance, showing an enrichment of extracellular exosome and neuron-specific gene ontology (GO) terms among the higher abundance proteins. Comparison of microdissected samples with intact tissue sections, using a label-free shotgun approach, revealed an enrichment of neuronal cell type markers, such as tyrosine hydroxylase and alpha-synuclein, as well as proteins annotated with neuron-specific GO terms. Overall, this study provides a detailed protocol for laser-capture proteomics using FFPE tissue and demonstrates the efficiency of LCM analysis of distinct cell subpopulations for proteomic analysis using low sample amounts.




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An Improved Boosting to Amplify Signal with Isobaric Labeling (iBASIL) Strategy for Precise Quantitative Single-cell Proteomics [Research]

Mass spectrometry (MS)-based proteomics has great potential for overcoming the limitations of antibody-based immunoassays for antibody-independent, comprehensive, and quantitative proteomic analysis of single cells. Indeed, recent advances in nanoscale sample preparation have enabled effective processing of single cells. In particular, the concept of using boosting/carrier channels in isobaric labeling to increase the sensitivity in MS detection has also been increasingly used for quantitative proteomic analysis of small-sized samples including single cells. However, the full potential of such boosting/carrier approaches has not been significantly explored, nor has the resulting quantitation quality been carefully evaluated. Herein, we have further evaluated and optimized our recent boosting to amplify signal with isobaric labeling (BASIL) approach, originally developed for quantifying phosphorylation in small number of cells, for highly effective analysis of proteins in single cells. This improved BASIL (iBASIL) approach enables reliable quantitative single-cell proteomics analysis with greater proteome coverage by carefully controlling the boosting-to-sample ratio (e.g. in general <100x) and optimizing MS automatic gain control (AGC) and ion injection time settings in MS/MS analysis (e.g. 5E5 and 300 ms, respectively, which is significantly higher than that used in typical bulk analysis). By coupling with a nanodroplet-based single cell preparation (nanoPOTS) platform, iBASIL enabled identification of ~2500 proteins and precise quantification of ~1500 proteins in the analysis of 104 FACS-isolated single cells, with the resulting protein profiles robustly clustering the cells from three different acute myeloid leukemia cell lines. This study highlights the importance of carefully evaluating and optimizing the boosting ratios and MS data acquisition conditions for achieving robust, comprehensive proteomic analysis of single cells.




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

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




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The Secretome Profiling of a Pediatric Airway Epithelium Infected with hRSV Identified Aberrant Apical/Basolateral Trafficking and Novel Immune Modulating (CXCL6, CXCL16, CSF3) and Antiviral (CEACAM1) Proteins [Research]

The respiratory epithelium comprises polarized cells at the interface between the environment and airway tissues. Polarized apical and basolateral protein secretions are a feature of airway epithelium homeostasis. Human respiratory syncytial virus (hRSV) is a major human pathogen that primarily targets the respiratory epithelium. However, the consequences of hRSV infection on epithelium secretome polarity and content remain poorly understood. To investigate the hRSV-associated apical and basolateral secretomes, a proteomics approach was combined with an ex vivo pediatric human airway epithelial (HAE) model of hRSV infection (data are available via ProteomeXchange and can be accessed at https://www.ebi.ac.uk/pride/ with identifier PXD013661). Following infection, a skewing of apical/basolateral abundance ratios was identified for several individual proteins. Novel modulators of neutrophil and lymphocyte activation (CXCL6, CSF3, SECTM1 or CXCL16), and antiviral proteins (BST2 or CEACAM1) were detected in infected, but not in uninfected cultures. Importantly, CXCL6, CXCL16, CSF3 were also detected in nasopharyngeal aspirates (NPA) from hRSV-infected infants but not healthy controls. Furthermore, the antiviral activity of CEACAM1 against RSV was confirmed in vitro using BEAS-2B cells. hRSV infection disrupted the polarity of the pediatric respiratory epithelial secretome and was associated with immune modulating proteins (CXCL6, CXCL16, CSF3) never linked with this virus before. In addition, the antiviral activity of CEACAM1 against hRSV had also never been previously characterized. This study, therefore, provides novel insights into RSV pathogenesis and endogenous antiviral responses in pediatric airway epithelium.




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Decreased Immunoglobulin G Core Fucosylation, A Player in Antibody-dependent Cell-mediated Cytotoxicity, is Associated with Autoimmune Thyroid Diseases [Research]

Autoimmune thyroid diseases (AITD) are the most common group of autoimmune diseases, associated with lymphocyte infiltration and the production of thyroid autoantibodies, like thyroid peroxidase antibodies (TPOAb), in the thyroid gland. Immunoglobulins and cell-surface receptors are glycoproteins with distinctive glycosylation patterns that play a structural role in maintaining and modulating their functions. We investigated associations of total circulating IgG and peripheral blood mononuclear cells glycosylation with AITD and the influence of genetic background in a case-control study with several independent cohorts and over 3,000 individuals in total. The study revealed an inverse association of IgG core fucosylation with TPOAb and AITD, as well as decreased peripheral blood mononuclear cells antennary α1,2 fucosylation in AITD, but no shared genetic variance between AITD and glycosylation. These data suggest that the decreased level of IgG core fucosylation is a risk factor for AITD that promotes antibody-dependent cell-mediated cytotoxicity previously associated with TPOAb levels.




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Will a Devastating Bushfire Season Change Australia’s Climate Stance?

23 January 2020

Madeleine Forster

Richard and Susan Hayden Academy Fellow, International Law Programme

Professor Tim Benton

Research Director, Emerging Risks; Director, Energy, Environment and Resources Programme
With Australians experiencing first-hand the risks of climate change, Madeleine Forster and Tim Benton examine the influencers, at home or abroad, that could push the government towards more action.

2020-01-23-FireNSW.jpg

Residents look on as flames burn through bush on 4 January 2020 in Lake Tabourie, NSW. Photo: Getty Images.

The 2019–20 fire season in Australia has been unprecedented. To date, an estimated 18 million hectares of fire has cut swathes through the bush – an area greater than that of the average European country and over five times the size of blazes in the Amazon.

This reflects previous predictions of Australian science. Since 2008 and as recently as 2018, scientific bodies have warned that climate change will exacerbate existing conditions for fires and other climatic disasters in Australia. What used to be once-in-a-generation fires now re-appear within 10–15 years with increased ferocity, over longer seasons.

In a country known for climate denial and division, debate has erupted around bushfire management and climate change. One of these is whether controlled burns are the answer to Australia’s climate-affected fire conditions.

There is no single risk reduction strategy. Controlled burning remains key, if adapted to the environment and climate

But when three out of four seasons in a year can support destructive bushfires, there are clear limits to what controlled burning and other fire management techniques can achieve. Other ‘adaptation’ measures are also likely to provoke intense debate – including bush clearance. As one Australian expert offered to highlight where Australia has got to, families should probably not go on holiday to bush and beach during the height of summer when temperatures and fire risk peaks. 

So, unless Australia is prepared to debate radical changes to where people live and how land is used, the limits to adaptation imply the need for mitigation. This means supporting ambitious global greenhouse emissions reductions targets. As research from Victoria, one fire-prone state in Australia, highlights, ‘the emissions pathway we follow is the largest determinant of change to many variables [such as temperature] beyond the next few decades.’

Can Australia become a more active global partner on emissions?

Australia accounts for just over one per cent of global emissions, so reducing domestic emissions – even though on a per capita basis they are the highest in the world – will not reduce Australia’s climate risk. Showing international leadership and supporting a powerful coalition of the willing to tackle climate change is the only way ahead. By showing a willingness to adopt climate ambition, Australia can help more constructive worldwide action, and thereby reduce its own risk exposure. 

Leading by example is a politically difficult issue for Australia. Prime Minister Scott Morrison was re-elected in May 2019 on an economic stability platform, and a promise not to imperil employment growth through climate action. Australia has contested UN estimates that it will not meet its existing modest goals for domestic emissions, by seeking to rely on carryover credits from action under the Kyoto Protocol as proof of progress.

It has also distanced itself from concerns over global supply and demand in fossil fuels. Australia remains a global supplier for fossil fuels, including coal – the nation’s coal exports accounted for $67 billion in revenues in 2019 in an expanding but changing Asian market, supplying ‘some of the cheapest electricity in the world’.

Possible influencers of change

With Australians experiencing first-hand the risks of climate change, there is already pressure to do more. Many are sceptical this will translate into domestic targets or export policies that give Australia the moral authority to ask for more action on the global stage.

Here, diverse groups who share a common interest in seeing Australia recover from the bushfires and address future climate risks could be key.

Importantly this includes rural and urban-fringe communities affected by the bushfires. They were part of Morrison’s traditional supporter-base but are angry at the government’s handling of the crisis and increasingly see how tiptoeing around emissions (including exports) has also ‘buried’ open discussion at home on climate-readiness.

Australian states could also find themselves taking a lead role. Virtually all jurisdictions have now committed to their own goals, most based on zero-carbon goals by 2050 (as has New Zealand). These can support modelling for Australia’s energy transition from coal, through gas, to market competitive renewables, while also help to ensure this reflects community expectations on jobs, electricity prices and other costs. 

Other emerging voices include the insurance and banking sectors (the Reserve Bank of Australia warned of the long-term financial stability risks of climate change before the fires) and indigenous Australians (one group of Torres Strait Islanders have filed a complaint to the UN Human Rights Committee which, if heard, will place Australia’s emissions record under the spotlight again). Their challenge now is finding a common language on what a cohesive approach to addressing climate change risk looks like. 

The international picture is mixed. The United States’ poor federal climate policy is a buffer for Australia. French President Emmanuel Macron has tried to raise the cost of inaction for Australia in current EU–Australia trade negotiations, but many large emitters in the Indo-Pacific region remain key Australian trading partners, investors and buyers of Australian coal. 

In the meantime, the United Kingdom is preparing for the meeting of parties to the Paris Agreement in Glasgow in November. A key global event following Brexit, the UK will no doubt be hoping to encourage a leadership circle with national commitments that meet global need to make the Glasgow meeting a success.

The UK public has expressed enormous sympathy for Australia in the bushfires and outrage over ‘climate denialism.’ Australia’s experience will be a cautionary tale of the effects of climate change at the meeting. Could the UK also support Australia to become a less reluctant partner in global climate action?




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SSO and other putative inhibitors of FA transport across membranes by CD36 disrupt intracellular metabolism, but do not affect FA translocation [Research Articles]

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.




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Hepatic monoamine oxidase B is involved in endogenous geranylgeranoic acid synthesis in mammalian liver cells [Research Articles]

Geranylgeranoic acid (GGA) originally was identified in some animals and has been developed as an agent for preventing second primary hepatoma. We previously have also identified GGA as an acyclic diterpenoid in some medicinal herbs. Recently, we reported that in human hepatoma-derived HuH-7 cells, GGA is metabolically labeled from 13C-mevalonate. Several cell-free experiments have demonstrated that GGA is synthesized through geranylgeranial by oxygen-dependent oxidation of geranylgeraniol (GGOH), but the exact biochemical events giving rise to GGA in hepatoma cells remain unclear. Monoamine oxidase B (MOAB) has been suggested to be involved in GGOH oxidation. Here, using two human hepatoma cell lines, we investigated whether MAOB contributes to GGA biosynthesis. Using either HuH-7 cell lysates or recombinant human MAOB, we found that: 1) the MAO inhibitor tranylcypromine dose-dependently downregulates endogenous GGA levels in HuH-7 cells; and 2) siRNA-mediated MAOB silencing reduces intracellular GGA levels in HuH-7 and Hep3B cells. Unexpectedly, however, CRISPR/Cas9-generated MAOB-KO human hepatoma Hep3B cells had GGA levels similar to those in MAOB-WT cells. A sensitivity of GGA levels to siRNA-mediated MAOB downregulation was recovered when the MAOB-KO cells were transfected with a MAOB-expression plasmid, suggesting that MAOB is the enzyme primarily responsible for GGOH oxidation and that some other latent metabolic pathways may maintain endogenous GGA levels in the MAOB-KO hepatoma cells. Along with the previous findings, these results provide critical insights into the biological roles of human MAOB and provide evidence that hepatic MAOB is involved in endogenous GGA biosynthesis via GGOH oxidation.




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A novel GPER antagonist protects against the formation of estrogen-induced cholesterol gallstones in female mice [Research Articles]

Many clinical studies and epidemiological investigations have clearly demonstrated that women are twice as likely to develop cholesterol gallstones as men, and oral contraceptives and other estrogen therapies dramatically increase that risk. Further, animal studies have revealed that estrogen promotes cholesterol gallstone formation through the estrogen receptor (ER) α, but not ERβ, pathway. More importantly, some genetic and pathophysiological studies have found that G protein-coupled estrogen receptor (GPER) 1 is a new gallstone gene, Lith18, on chromosome 5 in mice and produces additional lithogenic actions, working independently of ERα, to markedly increase cholelithogenesis in female mice. Based on computational modeling of GPER, a novel series of GPER-selective antagonists were designed, synthesized, and subsequently assessed for their therapeutic effects via calcium mobilization, cAMP, and ERα and ERβ fluorescence polarization binding assays. From this series of compounds, one new compound, 2-cyclohexyl-4-isopropyl-N-(4-methoxybenzyl)aniline (CIMBA), exhibits superior antagonism and selectivity exclusively for GPER. Furthermore, CIMBA reduces the formation of 17β-estradiol-induced gallstones in a dose-dependent manner in ovariectomized mice fed a lithogenic diet for 8 weeks. At 32 μg/day/kg CIMBA, no gallstones are found, even in ovariectomized ERα (–/–) mice treated with 6 μg/day 17β-estradiol and fed the lithogenic diet for 8 weeks. In conclusion, CIMBA treatment protects against the formation of estrogen-induced cholesterol gallstones by inhibiting the GPER signaling pathway in female mice. CIMBA may thus be a new agent for effectively treating cholesterol gallstone disease in women.­




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

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




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Schnyder corneal dystrophy-associated UBIAD1 is defective in MK-4 synthesis and resists autophagy-mediated degradation [Research Articles]

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.




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Slc43a3 is a regulator of free fatty acid flux [Research Articles]

Adipocytes take up long chain FAs through diffusion and protein-mediated transport, whereas FA efflux is considered to occur by diffusion. To identify potential membrane proteins that are involved in regulating FA flux in adipocytes, the expression levels of 55 membrane transporters without known function were screened in subcutaneous adipose samples from obese patients before and after bariatric surgery using branched DNA methodology. Among the 33 solute carrier (SLC) transporter family members screened, the expression of 14 members showed significant changes before and after bariatric surgery. One of them, Slc43a3, increased about 2.5-fold after bariatric surgery. Further investigation demonstrated that Slc43a3 is highly expressed in murine adipose tissue and induced during adipocyte differentiation in primary preadipocytes and in OP9 cells. Knockdown of Slc43a3 with siRNA in differentiated OP9 adipocytes reduced both basal and forskolin-stimulated FA efflux, while also increasing FA uptake and lipid droplet accumulation. In contrast, overexpression of Slc43a3 decreased FA uptake in differentiated OP9 cells and resulted in decreased lipid droplet accumulation. Therefore, Slc43a3 seems to regulate FA flux in adipocytes, functioning as a positive regulator of FA efflux and as a negative regulator of FA uptake.




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

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




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Vitamin E does not prevent Western diet-induced NASH progression and increases metabolic flux dysregulation in mice [Research Articles]

Fatty liver involves ectopic lipid accumulation and dysregulated hepatic oxidative metabolism, which can progress to a state of elevated inflammation and fibrosis referred to as nonalcoholic steatohepatitis (NASH). The factors that control progression from simple steatosis to NASH are not fully known. Here, we tested the hypothesis that dietary vitamin E (VitE) supplementation would prevent NASH progression and associated metabolic alterations induced by a Western diet (WD). Hyperphagic melanocortin-4 receptor-deficient (MC4R–/–) mice were fed chow, chow+VitE, WD, or WD+VitE starting at 8 or 20 weeks of age. All groups exhibited extensive hepatic steatosis by the end of the study (28 weeks of age). WD feeding exacerbated liver disease severity without inducing proportional changes in liver triglycerides. Eight weeks of WD accelerated liver pyruvate cycling, and 20 weeks of WD extensively upregulated liver glucose and oxidative metabolism assessed by 2H/13C flux analysis. VitE supplementation failed to reduce the histological features of NASH. Rather, WD+VitE increased the abundance and saturation of liver ceramides and accelerated metabolic flux dysregulation compared with 8 weeks of WD alone. In summary, VitE did not limit NASH pathogenesis in genetically obese mice, but instead increased some indicators of metabolic dysfunction.




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Myeloid-specific deficiency of pregnane X receptor decreases atherosclerosis in LDL receptor-deficient mice [Research Articles]

The pregnane X receptor (PXR) is a nuclear receptor that can be activated by numerous drugs and xenobiotic chemicals. PXR thereby functions as a xenobiotic sensor to coordinately regulate host responses to xenobiotics by transcriptionally regulating many genes involved in xenobiotic metabolism. We have previously reported that PXR has pro-atherogenic effects in animal models, but how PXR contributes to atherosclerosis development in different tissues or cell types remains elusive. In this study, we generated an LDL receptor-deficient mouse model with myeloid-specific PXR deficiency (PXRMyeLDLR–/–) to elucidate the role of macrophage PXR signaling in atherogenesis. The myeloid PXR deficiency did not affect metabolic phenotypes and plasma lipid profiles, but PXRMyeLDLR–/– mice had significantly decreased atherosclerosis at both aortic root and brachiocephalic arteries compared with control littermates. Interestingly, the PXR deletion did not affect macrophage adhesion and migration properties, but reduced lipid accumulation and foam cell formation in the macrophages. PXR deficiency also led to decreased expression of the scavenger receptor CD36 and impaired lipid uptake in macrophages of the PXRMyeLDLR–/– mice. Further, RNA-Seq analysis indicated that treatment with a prototypical PXR ligand affects the expression of many atherosclerosis-related genes in macrophages in vitro. These findings reveal a pivotal role of myeloid PXR signaling in atherosclerosis development and suggest that PXR may be a potential therapeutic target in atherosclerosis management.




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

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




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




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Images in Lipid Research [Editorials]





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Indonesia and the ASEAN outlook on the Indo-Pacific

8 January 2020 , Volume 96, Number 1

Dewi Fortuna Anwar

Indonesia has taken a leadership role within the Association of Southeast Asian Nations (ASEAN) in drafting a common outlook on the Indo-Pacific concept. The widening of Indonesia's geostrategic canvas from the Asia–Pacific to the Indo-Pacific is in line with President Joko Widodo's intent to make Indonesia a Global Maritime Fulcrum (GMF). In view of the rivalry between the US and China and the emergence of various Indo-Pacific initiatives from other countries, Indonesia believes that ASEAN must try to maintain its centrality. The draft of Indonesia's perspective for an ASEAN outlook on the Indo-Pacific: towards a peaceful, prosperous, and inclusive region was submitted for considerations by ASEAN, and after 18 months of intensive lobbying by Indonesia the concept was finally adopted at the ASEAN Summit in June 2019. The ASEAN outlook promotes the principles of openness, inclusiveness, transparency, respect for international law and ASEAN centrality in the Indo-Pacific region. It proposes a building-block approach, seeking commonalities between existing regional initiatives in which ASEAN-led mechanisms will act as a fulcrum for both norm-setting and concrete cooperation. Rather than creating a new regional architecture, the East Asia Summit (EAS) is proposed as the platform for advancing the Indo-Pacific discourse and cooperation. Indonesia's ASEAN outlook on the Indo-Pacific marks its renewed foreign policy activism as a middle power and underlines the continuing importance that Indonesia places on ASEAN as the cornerstone of its foreign policy, emphasising ASEAN's centrality as the primary vehicle for managing relations with the major powers in the Indo-Pacific region.




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Will a Devastating Bushfire Season Change Australia’s Climate Stance?

23 January 2020

Madeleine Forster

Richard and Susan Hayden Academy Fellow, International Law Programme

Professor Tim Benton

Research Director, Emerging Risks; Director, Energy, Environment and Resources Programme
With Australians experiencing first-hand the risks of climate change, Madeleine Forster and Tim Benton examine the influencers, at home or abroad, that could push the government towards more action.

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Residents look on as flames burn through bush on 4 January 2020 in Lake Tabourie, NSW. Photo: Getty Images.

The 2019–20 fire season in Australia has been unprecedented. To date, an estimated 18 million hectares of fire has cut swathes through the bush – an area greater than that of the average European country and over five times the size of blazes in the Amazon.

This reflects previous predictions of Australian science. Since 2008 and as recently as 2018, scientific bodies have warned that climate change will exacerbate existing conditions for fires and other climatic disasters in Australia. What used to be once-in-a-generation fires now re-appear within 10–15 years with increased ferocity, over longer seasons.

In a country known for climate denial and division, debate has erupted around bushfire management and climate change. One of these is whether controlled burns are the answer to Australia’s climate-affected fire conditions.

There is no single risk reduction strategy. Controlled burning remains key, if adapted to the environment and climate

But when three out of four seasons in a year can support destructive bushfires, there are clear limits to what controlled burning and other fire management techniques can achieve. Other ‘adaptation’ measures are also likely to provoke intense debate – including bush clearance. As one Australian expert offered to highlight where Australia has got to, families should probably not go on holiday to bush and beach during the height of summer when temperatures and fire risk peaks. 

So, unless Australia is prepared to debate radical changes to where people live and how land is used, the limits to adaptation imply the need for mitigation. This means supporting ambitious global greenhouse emissions reductions targets. As research from Victoria, one fire-prone state in Australia, highlights, ‘the emissions pathway we follow is the largest determinant of change to many variables [such as temperature] beyond the next few decades.’

Can Australia become a more active global partner on emissions?

Australia accounts for just over one per cent of global emissions, so reducing domestic emissions – even though on a per capita basis they are the highest in the world – will not reduce Australia’s climate risk. Showing international leadership and supporting a powerful coalition of the willing to tackle climate change is the only way ahead. By showing a willingness to adopt climate ambition, Australia can help more constructive worldwide action, and thereby reduce its own risk exposure. 

Leading by example is a politically difficult issue for Australia. Prime Minister Scott Morrison was re-elected in May 2019 on an economic stability platform, and a promise not to imperil employment growth through climate action. Australia has contested UN estimates that it will not meet its existing modest goals for domestic emissions, by seeking to rely on carryover credits from action under the Kyoto Protocol as proof of progress.

It has also distanced itself from concerns over global supply and demand in fossil fuels. Australia remains a global supplier for fossil fuels, including coal – the nation’s coal exports accounted for $67 billion in revenues in 2019 in an expanding but changing Asian market, supplying ‘some of the cheapest electricity in the world’.

Possible influencers of change

With Australians experiencing first-hand the risks of climate change, there is already pressure to do more. Many are sceptical this will translate into domestic targets or export policies that give Australia the moral authority to ask for more action on the global stage.

Here, diverse groups who share a common interest in seeing Australia recover from the bushfires and address future climate risks could be key.

Importantly this includes rural and urban-fringe communities affected by the bushfires. They were part of Morrison’s traditional supporter-base but are angry at the government’s handling of the crisis and increasingly see how tiptoeing around emissions (including exports) has also ‘buried’ open discussion at home on climate-readiness.

Australian states could also find themselves taking a lead role. Virtually all jurisdictions have now committed to their own goals, most based on zero-carbon goals by 2050 (as has New Zealand). These can support modelling for Australia’s energy transition from coal, through gas, to market competitive renewables, while also help to ensure this reflects community expectations on jobs, electricity prices and other costs. 

Other emerging voices include the insurance and banking sectors (the Reserve Bank of Australia warned of the long-term financial stability risks of climate change before the fires) and indigenous Australians (one group of Torres Strait Islanders have filed a complaint to the UN Human Rights Committee which, if heard, will place Australia’s emissions record under the spotlight again). Their challenge now is finding a common language on what a cohesive approach to addressing climate change risk looks like. 

The international picture is mixed. The United States’ poor federal climate policy is a buffer for Australia. French President Emmanuel Macron has tried to raise the cost of inaction for Australia in current EU–Australia trade negotiations, but many large emitters in the Indo-Pacific region remain key Australian trading partners, investors and buyers of Australian coal. 

In the meantime, the United Kingdom is preparing for the meeting of parties to the Paris Agreement in Glasgow in November. A key global event following Brexit, the UK will no doubt be hoping to encourage a leadership circle with national commitments that meet global need to make the Glasgow meeting a success.

The UK public has expressed enormous sympathy for Australia in the bushfires and outrage over ‘climate denialism.’ Australia’s experience will be a cautionary tale of the effects of climate change at the meeting. Could the UK also support Australia to become a less reluctant partner in global climate action?