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CBD News: Over the next two weeks, the Convention on Biological Diversity's (CBD) bodies on science and implementation will meet to provide further guidance on accelerated efforts to achieve the Aichi Biodiversity Targets by the end of the year 2020,




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Evolution, expression, and substrate specificities of aldehyde oxidase enzymes in eukaryotes [Enzymology]

Aldehyde oxidases (AOXs) are a small group of enzymes belonging to the larger family of molybdo-flavoenzymes, along with the well-characterized xanthine oxidoreductase. The two major types of reactions that are catalyzed by AOXs are the hydroxylation of heterocycles and the oxidation of aldehydes to their corresponding carboxylic acids. Different animal species have different complements of AOX genes. The two extremes are represented in humans and rodents; whereas the human genome contains a single active gene (AOX1), those of rodents, such as mice, are endowed with four genes (Aox1-4), clustering on the same chromosome, each encoding a functionally distinct AOX enzyme. It still remains enigmatic why some species have numerous AOX enzymes, whereas others harbor only one functional enzyme. At present, little is known about the physiological relevance of AOX enzymes in humans and their additional forms in other mammals. These enzymes are expressed in the liver and play an important role in the metabolisms of drugs and other xenobiotics. In this review, we discuss the expression, tissue-specific roles, and substrate specificities of the different mammalian AOX enzymes and highlight insights into their physiological roles.




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12-LOX catalyzes the oxidation of 2-arachidonoyl-lysolipids in platelets generating eicosanoid-lysolipids that are attenuated by iPLA2{gamma} knockout [Signal Transduction]

The canonical pathway of eicosanoid production in most mammalian cells is initiated by phospholipase A2-mediated release of arachidonic acid, followed by its enzymatic oxidation resulting in a vast array of eicosanoid products. However, recent work has demonstrated that the major phospholipase in mitochondria, iPLA2γ (patatin-like phospholipase domain containing 8 (PNPLA8)), possesses sn-1 specificity, with polyunsaturated fatty acids at the sn-2 position generating polyunsaturated sn-2-acyl lysophospholipids. Through strategic chemical derivatization, chiral chromatographic separation, and multistage tandem MS, here we first demonstrate that human platelet-type 12-lipoxygenase (12-LOX) can directly catalyze the regioselective and stereospecific oxidation of 2-arachidonoyl-lysophosphatidylcholine (2-AA-LPC) and 2-arachidonoyl-lysophosphatidylethanolamine (2-AA-LPE). Next, we identified these two eicosanoid-lysophospholipids in murine myocardium and in isolated platelets. Moreover, we observed robust increases in 2-AA-LPC, 2-AA-LPE, and their downstream 12-LOX oxidation products, 12(S)-HETE-LPC and 12(S)-HETE-LPE, in calcium ionophore (A23187)-stimulated murine platelets. Mechanistically, genetic ablation of iPLA2γ markedly decreased the calcium-stimulated production of 2-AA-LPC, 2-AA-LPE, and 12-HETE-lysophospholipids in mouse platelets. Importantly, a potent and selective 12-LOX inhibitor, ML355, significantly inhibited the production of 12-HETE-LPC and 12-HETE-LPE in activated platelets. Furthermore, we found that aging is accompanied by significant changes in 12-HETE-LPC in murine serum that were also markedly attenuated by iPLA2γ genetic ablation. Collectively, these results identify previously unknown iPLA2γ-initiated signaling pathways mediated by direct 12-LOX oxidation of 2-AA-LPC and 2-AA-LPE. This oxidation generates previously unrecognized eicosanoid-lysophospholipids that may serve as biomarkers for age-related diseases and could potentially be used as targets in therapeutic interventions.




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Glucocerebrosidases catalyze a transgalactosylation reaction that yields a newly-identified brain sterol metabolite, galactosylated cholesterol [Glycobiology and Extracellular Matrices]

β-Glucocerebrosidase (GBA) hydrolyzes glucosylceramide (GlcCer) to generate ceramide. Previously, we demonstrated that lysosomal GBA1 and nonlysosomal GBA2 possess not only GlcCer hydrolase activity, but also transglucosylation activity to transfer the glucose residue from GlcCer to cholesterol to form β-cholesterylglucoside (β-GlcChol) in vitro. β-GlcChol is a member of sterylglycosides present in diverse species. How GBA1 and GBA2 mediate β-GlcChol metabolism in the brain is unknown. Here, we purified and characterized sterylglycosides from rodent and fish brains. Although glucose is thought to be the sole carbohydrate component of sterylglycosides in vertebrates, structural analysis of rat brain sterylglycosides revealed the presence of galactosylated cholesterol (β-GalChol), in addition to β-GlcChol. Analyses of brain tissues from GBA2-deficient mice and GBA1- and/or GBA2-deficient Japanese rice fish (Oryzias latipes) revealed that GBA1 and GBA2 are responsible for β-GlcChol degradation and formation, respectively, and that both GBA1 and GBA2 are responsible for β-GalChol formation. Liquid chromatography–tandem MS revealed that β-GlcChol and β-GalChol are present throughout development from embryo to adult in the mouse brain. We found that β-GalChol expression depends on galactosylceramide (GalCer), and developmental onset of β-GalChol biosynthesis appeared to be during myelination. We also found that β-GlcChol and β-GalChol are secreted from neurons and glial cells in association with exosomes. In vitro enzyme assays confirmed that GBA1 and GBA2 have transgalactosylation activity to transfer the galactose residue from GalCer to cholesterol to form β-GalChol. This is the first report of the existence of β-GalChol in vertebrates and how β-GlcChol and β-GalChol are formed in the brain.




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X-ray structures of catalytic intermediates of cytochrome c oxidase provide insights into its O2 activation and unidirectional proton-pump mechanisms [Molecular Biophysics]

Cytochrome c oxidase (CcO) reduces O2 to water, coupled with a proton-pumping process. The structure of the O2-reduction site of CcO contains two reducing equivalents, Fea32+ and CuB1+, and suggests that a peroxide-bound state (Fea33+–O−–O−–CuB2+) rather than an O2-bound state (Fea32+–O2) is the initial catalytic intermediate. Unexpectedly, however, resonance Raman spectroscopy results have shown that the initial intermediate is Fea32+–O2, whereas Fea33+–O−–O−–CuB2+ is undetectable. Based on X-ray structures of static noncatalytic CcO forms and mutation analyses for bovine CcO, a proton-pumping mechanism has been proposed. It involves a proton-conducting pathway (the H-pathway) comprising a tandem hydrogen-bond network and a water channel located between the N- and P-side surfaces. However, a system for unidirectional proton-transport has not been experimentally identified. Here, an essentially identical X-ray structure for the two catalytic intermediates (P and F) of bovine CcO was determined at 1.8 Å resolution. A 1.70 Å Fe–O distance of the ferryl center could best be described as Fea34+ = O2−, not as Fea34+–OH−. The distance suggests an ∼800-cm−1 Raman stretching band. We found an interstitial water molecule that could trigger a rapid proton-coupled electron transfer from tyrosine-OH to the slowly forming Fea33+–O−–O−–CuB2+ state, preventing its detection, consistent with the unexpected Raman results. The H-pathway structures of both intermediates indicated that during proton-pumping from the hydrogen-bond network to the P-side, a transmembrane helix closes the water channel connecting the N-side with the hydrogen-bond network, facilitating unidirectional proton-pumping during the P-to-F transition.




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Masks provided for HKDSE candidates




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Archaeologists verify Florida's Mound Key as location of elusive Spanish fort

(Florida Museum of Natural History) Florida and Georgia archaeologists have discovered the location of Fort San Antón de Carlos, home of one of the first Jesuit missions in North America. The Spanish fort was built in 1566 in the capital of the Calusa, the most powerful Native American tribe in the region, on present-day Mound Key in the center of Estero Bay on Florida's Gulf Coast.




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During tough times, ancient 'tourists' sought solace in Florida oyster feasts

(Florida Museum of Natural History) More than a thousand years ago, people from across the Southeast regularly traveled to a small island on Florida's Gulf Coast to bond over oysters, likely as a means of coping with climate change and social upheaval.




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Mats made from nanofibers linked to a red wine chemical could help prevent oxidation

(Texas A&M University) Spoiling foods, souring wine and worsening wounds have a common culprit -- a process called oxidation. Although the ill effects of these chemical reactions can be curtailed by antioxidants, creating a sturdy platform capable of providing prolonged antioxidant activity is an ongoing challenge.




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12-LOX catalyzes the oxidation of 2-arachidonoyl-lysolipids in platelets generating eicosanoid-lysolipids that are attenuated by iPLA2{gamma} knockout [Signal Transduction]

The canonical pathway of eicosanoid production in most mammalian cells is initiated by phospholipase A2-mediated release of arachidonic acid, followed by its enzymatic oxidation resulting in a vast array of eicosanoid products. However, recent work has demonstrated that the major phospholipase in mitochondria, iPLA2γ (patatin-like phospholipase domain containing 8 (PNPLA8)), possesses sn-1 specificity, with polyunsaturated fatty acids at the sn-2 position generating polyunsaturated sn-2-acyl lysophospholipids. Through strategic chemical derivatization, chiral chromatographic separation, and multistage tandem MS, here we first demonstrate that human platelet-type 12-lipoxygenase (12-LOX) can directly catalyze the regioselective and stereospecific oxidation of 2-arachidonoyl-lysophosphatidylcholine (2-AA-LPC) and 2-arachidonoyl-lysophosphatidylethanolamine (2-AA-LPE). Next, we identified these two eicosanoid-lysophospholipids in murine myocardium and in isolated platelets. Moreover, we observed robust increases in 2-AA-LPC, 2-AA-LPE, and their downstream 12-LOX oxidation products, 12(S)-HETE-LPC and 12(S)-HETE-LPE, in calcium ionophore (A23187)-stimulated murine platelets. Mechanistically, genetic ablation of iPLA2γ markedly decreased the calcium-stimulated production of 2-AA-LPC, 2-AA-LPE, and 12-HETE-lysophospholipids in mouse platelets. Importantly, a potent and selective 12-LOX inhibitor, ML355, significantly inhibited the production of 12-HETE-LPC and 12-HETE-LPE in activated platelets. Furthermore, we found that aging is accompanied by significant changes in 12-HETE-LPC in murine serum that were also markedly attenuated by iPLA2γ genetic ablation. Collectively, these results identify previously unknown iPLA2γ-initiated signaling pathways mediated by direct 12-LOX oxidation of 2-AA-LPC and 2-AA-LPE. This oxidation generates previously unrecognized eicosanoid-lysophospholipids that may serve as biomarkers for age-related diseases and could potentially be used as targets in therapeutic interventions.




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Glucocerebrosidases catalyze a transgalactosylation reaction that yields a newly-identified brain sterol metabolite, galactosylated cholesterol [Glycobiology and Extracellular Matrices]

β-Glucocerebrosidase (GBA) hydrolyzes glucosylceramide (GlcCer) to generate ceramide. Previously, we demonstrated that lysosomal GBA1 and nonlysosomal GBA2 possess not only GlcCer hydrolase activity, but also transglucosylation activity to transfer the glucose residue from GlcCer to cholesterol to form β-cholesterylglucoside (β-GlcChol) in vitro. β-GlcChol is a member of sterylglycosides present in diverse species. How GBA1 and GBA2 mediate β-GlcChol metabolism in the brain is unknown. Here, we purified and characterized sterylglycosides from rodent and fish brains. Although glucose is thought to be the sole carbohydrate component of sterylglycosides in vertebrates, structural analysis of rat brain sterylglycosides revealed the presence of galactosylated cholesterol (β-GalChol), in addition to β-GlcChol. Analyses of brain tissues from GBA2-deficient mice and GBA1- and/or GBA2-deficient Japanese rice fish (Oryzias latipes) revealed that GBA1 and GBA2 are responsible for β-GlcChol degradation and formation, respectively, and that both GBA1 and GBA2 are responsible for β-GalChol formation. Liquid chromatography–tandem MS revealed that β-GlcChol and β-GalChol are present throughout development from embryo to adult in the mouse brain. We found that β-GalChol expression depends on galactosylceramide (GalCer), and developmental onset of β-GalChol biosynthesis appeared to be during myelination. We also found that β-GlcChol and β-GalChol are secreted from neurons and glial cells in association with exosomes. In vitro enzyme assays confirmed that GBA1 and GBA2 have transgalactosylation activity to transfer the galactose residue from GalCer to cholesterol to form β-GalChol. This is the first report of the existence of β-GalChol in vertebrates and how β-GlcChol and β-GalChol are formed in the brain.




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Modulation of natural HLA-B*27:05 ligandome by ankylosing spondylitis-associated endoplasmic reticulum aminopeptidase 2 (ERAP2)

Elena Lorente
Apr 7, 2020; 0:RA120.002014v1-mcp.RA120.002014
Research




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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)

Liye Chen
May 1, 2020; 19:871-883
Research




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Who Runs the Internet: Internet Consolidation and Control

Research Event

10 December 2019 - 6:00pm to 7:15pm

Chatham House, London

Event participants

Andrew Sullivan, President and CEO, Internet Society
Jennifer Cobbe, Research Associate, Department of Computer Science and Technology, University of Cambridge
Jesse Sowell, Assistant Professor, Department of International Affairs, Bush School of Government and Public Service, Texas A&M University
Chair: Emily Taylor, Associate Fellow, International Security, Chatham House, Editor, Journal of Cyber Policy

In recent years, there has been a growing debate around the influence of a few large internet technology companies on the internet’s infrastructure and over the popular applications and social media platforms that we use every day.

The internet which was once widely viewed as a collective platform for limitless, permissionless innovation, competition and growth, is now increasingly viewed as a consolidated environment dominated by a few. Such market dominance threatens to undermine the internet’s fundamental benefits as a distributed network in which no single entity has control.  

The panel examines the risks of consolidation throughout the internet’s technology stack such as the impact on complex supply chains that support applications, including cloud provisions, ‘as a service’.

It also explores the potential benefits, for example, when building out essential infrastructure to support faster and cheaper internet services in developing economies, consolidation can create economies of scale that bring the resource-intensive building blocks of the internet economy within the reach of new start-ups and innovators.

The panel provides an interdisciplinary perspective exploring the relationship between consolidation and evolutions in the internet infrastructure as well as unpacking its policy implications.

This event supports a special issue of the Journal of Cyber Policy as part of a collaboration between Chatham House and the Internet Society which explores the impact of the consolidation on the internet’s fundamental architecture.

Nilza Amaral

Project Manager, International Security Programme




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Individual mapping of innate immune cell activation is a candidate marker of patient-specific trajectories of disability worsening in Multiple Sclerosis

Objective: To develop a novel approach to generate individual maps of white matter (WM) innate immune cell activation using 18F-DPA-714 translocator protein (TSPO) positron emission tomography (PET), and to explore the relationship between these maps and individual trajectories of disability worsening in patients with multiple sclerosis (MS). Methods: Patients with MS (n = 37), whose trajectories of disability worsening over the 2 years preceding study entry were calculated, and healthy controls (n = 19) underwent magnetic resonance magnetic and 18F-DPA-714 PET. A threshold of significant activation of 18F-DPA-714 binding was calculated with a voxel-wise randomized permutation-based comparison between patients and controls, and used to classify each WM voxel in patients as characterized by a significant activation of innate immune cells (DPA+) or not. Individual maps of innate immune cell activation in the WM were employed to calculate the extent of activation in WM regions-of-interests and to classify each WM lesion as "DPA-active", "DPA-inactive" or "unclassified". Results: Compared with the WM of healthy controls, patients with MS had a significantly higher percentage of DPA+ voxels in the normal-appearing WM, (NAWM in patients=24.9±9.7%; WM in controls=14.0±7.8%, p<0.001). In patients with MS, the percentage of DPA+ voxels showed a significant increase from NAWM, to perilesional areas, T2 hyperintense lesions and T1 hypointense lesions (38.1±13.5%, 45.0±17.9%, and 51.9±22.9%, respectively, p<0.001). Among the 1379 T2 lesions identified, 512 were defined as DPA-active and 258 as DPA-inactive. A higher number of lesions classified as DPA-active (OR=1.13, P = 0.009), a higher percentage of DPA+ voxels in the NAWM (OR=1.16, P = 0.009) and in T1-spin-echo lesions (OR=1.06, P = 0.036), were significantly associated with a retrospective more severe clinical trajectory in patients with MS. Conclusion: A more severe trajectory of disability worsening in MS is associated with an innate immune cells activation inside and around WM lesions. 18F-DPA-714 PET may provide a promising biomarker to identify patients at risk of severe clinical trajectory.




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Digital Solid-State SPECT/CT Quantitation of Absolute 177Lu-Radiotracer Concentration: In Vivo/In Vitro Validation

The accuracy of lutetium-177 (177Lu) radiotracer concentration measurements using quantitative clinical software was determined by comparing in vivo results for a digital solid-state cadmium-zinc-telluride SPECT/CT (single photon emission computed tomography / x-ray computed tomography) system to in vitro sampling. First, image acquisition parameters were assessed for an International Electrotechnical Commission (IEC) body phantom emulating clinical count rates loaded with a "lung" insert and 6 hot spheres with a 12:1 target-to-background ratio of 177Lu solution. Then, the data of 28 whole-body SPECT/CT scans of 7 patients who underwent 177Lu prostate membrane antigen (177Lu-PSMA) radioligand therapy was retrospectively analyzed. Three users analyzed SPECT/CT images for in vivo urinary bladder radiotracer uptake using quantitative software (Q.Metrix, GE Healthcare). In vitro radiopharmaceutical concentrations were calculated using urine sampling obtained immediately after each scan, scaled to standardized uptake values (SUVs). Any in vivo/in vitro identity relations were determined by linear regression (ideally slope=1, intercept=0), within a 95 % confidence interval (CI). Phantom results demonstrated lower quantitative error for acquisitions using the 113 keV 177Lu energy peak rather than including the 208 keV peak, given that only low-energy collimation was available in this camera configuration. In the clinical study, 24 in vivo/in vitro pairs were eligible for further analysis, having rejected 4 as outliers (via Cook’s distance calculations). All linear regressions (R2 ≥ 0.92, P<0.0001) provided identity in vivo/in vitro relations (95 % CI), with SUV averages from all users giving a slope of 1.03±0.09, an intercept of –0.25±0.64 g/mL, and an average residual difference of 20.4 %. Acquiring with the lower energy 177Lu energy peak, solid-state SPECT/CT imaging provides an accuracy to within ~20 % for in vivo urinary bladder radiotracer concentrations. This non-invasive in vivo quantitation method can potentially improve diagnosis, improve patient management and treatment response assessment, and provide data essential to 177Lu dosimetry.




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Correction: Graph Algorithms for Condensing and Consolidating Gene Set Analysis Results. [Additions and Corrections]




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Concentration Determination of >200 Proteins in Dried Blood Spots for Biomarker Discovery and Validation [Technological Innovation and Resources]

The use of protein biomarkers as surrogates for clinical endpoints requires extensive multilevel validation including development of robust and sensitive assays for precise measurement of protein concentration. Multiple reaction monitoring (MRM) is a well-established mass-spectrometric method that can be used for reproducible protein-concentration measurements in biological specimens collected via microsampling. The dried blood spot (DBS) microsampling technique can be performed non-invasively without the expertise of a phlebotomist, and can enhance analyte stability which facilitate the application of this technique in retrospective studies while providing lower storage and shipping costs, because cold-chain logistics can be eliminated. Thus, precise, sensitive, and multiplexed methods for measuring protein concentrations in DBSs can be used for de novo biomarker discovery and for biomarker quantification or verification experiments. To achieve this goal, MRM assays were developed for multiplexed concentration measurement of proteins in DBSs.

The lower limit of quantification (LLOQ) was found to have a median total coefficient of variation (CV) of 18% for 245 proteins, whereas the median LLOQ was 5 fmol of peptide injected on column, and the median inter-day CV over 4 days for measuring endogenous protein concentration was 8%. The majority (88%) of the assays displayed parallelism, whereas the peptide standards remained stable throughout the assay workflow and after exposure to multiple freeze-thaw cycles. For 190 proteins, the measured protein concentrations remained stable in DBS stored at ambient laboratory temperature for up to 2 months. Finally, the developed assays were used to measure the concentration ranges for 200 proteins in twenty same sex, same race and age matched individuals.




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Guidance Document: Validation of a High-Performance Liquid Chromatography-Tandem Mass Spectrometry Immunopeptidomics Assay for the Identification of HLA Class I Ligands Suitable for Pharmaceutical Therapies [Commentary]

For more than two decades naturally presented, human leukocyte antigen (HLA)-restricted peptides (immunopeptidome) have been eluted and sequenced using liquid chromatography-tandem mass spectrometry (LC-MS/MS). Since, identified disease-associated HLA ligands have been characterized and evaluated as potential active substances. Treatments based on HLA-presented peptides have shown promising results in clinical application as personalized T cell-based immunotherapy. Peptide vaccination cocktails are produced as investigational medicinal products under GMP conditions. To support clinical trials based on HLA-presented tumor-associated antigens, in this study the sensitive LC-MS/MS HLA class I antigen identification pipeline was fully validated for our technical equipment according to the current US Food and Drug Administration (FDA) and European Medicines Agency (EMA) guidelines.

The immunopeptidomes of JY cells with or without spiked-in, isotope labeled peptides, of peripheral blood mononuclear cells of healthy volunteers as well as a chronic lymphocytic leukemia and a bladder cancer sample were reliably identified using a data-dependent acquisition method. As the LC-MS/MS pipeline is used for identification purposes, the validation parameters include accuracy, precision, specificity, limit of detection and robustness.




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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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Episode Eight: The Internet of Genocidal Chatbots (IoGC) Tay, Microsoft Build and Apple vs FBI

In this week's UK Tech Weekly Podcast host Matt Egan is joined by online editor at Techworld.com Scott Carey to discuss all of the news coming out of Microsoft's Build 2016 developer conference, before being joined by producer Chris to talk about the company's genocidal AI chatbot Tay's public meltdown (13:00). Then, acting editor at Macworld.co.uk David Price jumps in to discuss the apparent resolution to the Apple vs FBI fight (29:00).  


See acast.com/privacy for privacy and opt-out information.




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Episode 21 - The Internet of Cleanin' Windows (IoCW) Windows 10 anniversary, NOW TV and holidays

This week host Matt Egan is joined by first time podder and editor of PC Advisor Jim Martin to chat Microsoft Windows 10 anniversary updates and the impact on Microsoft Surface devices. Producer Chris then comes on to chat about Sky's two big NOW TV announcements, and the future of television and broadband (16:00). Finally, UKTW podcast regular David Price chats about the impact technology is having on our holidays (26:30).  


See acast.com/privacy for privacy and opt-out information.




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Episode 42 - The Internet of Chinese Boogie Men (IoCBM) Black Friday, Facebook and Autumn Statement

Matt Egan is in the presenter chair this week as he chats about Black Friday and the changing face of online retail with acting editor at Macworld UK, David Price. Then online editor at Techworld.com Scott Carey talks Facebook and its recent issues with fake news and Chinese censorship (12:00). Finally, online editor at Computerworld UK Tamlin Magee brings us up to date with the Government's Autumn Statement and what it means for the technology sector (26:00).  


See acast.com/privacy for privacy and opt-out information.




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Episode 76 - The Internet of Deals (IoD) Black Friday, Mac root bug, Pixel Buds and Animal Crossing

It's a bumper pod! David Price leads Ashleigh Macro and Henry Burrell down the topical rabbit hole to discuss why Black Friday largely sucks, but is an interesting venture for publishers as well as consumers. Who else bought a Switch?


We then tackle the Mac root issue that hit headlines worldwide before tearing the Pixel Buds a new one. And we all downloaded Animal Crossing: Pocket Camp to see what the fuss is about.

 

See acast.com/privacy for privacy and opt-out information.




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Episode 108 - The Internet of Silicon Valley Meal Drinks (IoSVMD) Soylent tasting, Black Friday and Bitcoin slump

David Price is in the host's chair this week, as the team talk about the latest hot tech topics. Tamlin Magee has got the drinks in - futuristic meal-replacement drinks called Soylent, which he forces everyone to try and which are apparently not people.


Then Dominic Preston talks us through the positive and extremely negative sides of Amazon's Black Friday activities, before Sean Bradley attempts to explain why Bitcoin is tanking and what the future holds for crypto currencies. Cheers!

 

See acast.com/privacy for privacy and opt-out information.




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WITHDRAWN: Structural and mechanistic studies of hydroperoxide conversions catalyzed by a CYP74 clan epoxy alcohol synthase from amphioxus (Branchiostoma floridae) [Research Articles]

This manuscript has been withdrawn by the Author.




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Fatty acid oxidation and photoreceptor metabolic needs [Thematic Reviews]

Photoreceptors have high energy-demands and a high density of mitochondria that produce adenosine triphosphate (ATP) through oxidative phosphorylation (OXPHOS) of fuel substrates. Although glucose is the major fuel for central nervous system (CNS) brain neurons, in photoreceptors (also CNS), most glucose is not metabolized through OXPHOS but is instead metabolized into lactate by aerobic glycolysis. The major fuel sources for photoreceptor mitochondria remained unclear for almost six decades. Similar to other tissues (like heart and skeletal muscle) with high metabolic rates, photoreceptors were recently found to metabolize fatty acids (palmitate) through OXPHOS. Disruption of lipid entry into photoreceptors leads to extracellular lipid accumulation, suppressed glucose transporter expression, and a duel lipid/glucose fuel shortage. Modulation of lipid metabolism helps restore photoreceptor function. However, further elucidation of the types of lipids used as retinal energy sources, the metabolic interaction with other fuel pathways, as well as the crosstalk among retinal cells to provide energy to photoreceptors is not yet known. In this review, we will focus on the current understanding of photoreceptor energy demand and sources, and potential future investigations of photoreceptor metabolism.




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Latin America’s COVID-19 Moment: Differences and Solidarity

30 April 2020

Dr Christopher Sabatini

Senior Research Fellow for Latin America, US and the Americas Programme
There has been no better example of the political diversity in Latin America than the varying responses of governments to the coronavirus crisis.

2020-04-30-Chile-Covid.jpg

A municipal cleaning worker disinfects the central market in Santiago, Chile on 7 April 2020 amid the coronavirus pandemic. Photo: Getty Images.

Differing approaches across the hemisphere have had different impacts on presidential popularity and, at least in one case, on democratic institutions and human rights. Yet, even within that diversity, South America’s Southern Cone countries (Argentina, Chile, Paraguay and Uruguay) have shown a sign of solidarity: protecting and facilitating trade flows, sponsoring cross-border research and ensuring citizens’ return to their home countries.    

The response from populist leaders

On the extreme have been the responses of presidents of Brazil, Nicaragua and Mexico, all of whom have ignored the science of the virus and of experts and refused to implement isolation policies.  President Jair Bolsonaro of Brazil fired his health minister, Luis Henrique Mandetta on 16 April for contradicting him and earlier had claimed that the pandemic was a hoax or little more than a ‘measly cold.' 

Meanwhile, Nicaraguan president Daniel Ortega has resisted closing businesses and schools.  After a mysterious 34-day absence, Ortega appeared on television on 15 April reinforcing his refusal to close businesses saying that Nicaraguans must work or they will die and claiming that the virus was ‘imported.’ 

Mexico’s Andres Manuel Lopez Obrador (AMLO) has also resisted the call for strict stay-at-home policies, though with his Deputy Health Minister, Hugo López-Gatell, has closed schools – recently extending the closure to the 1st of June and urging non-essential businesses to close – but focusing primarily on social distancing. 

In contrast to his deputy health minister and Foreign Minister Marcelo Ebrard – who had declared the situation a health emergency on 30th March, later than many neighbouring countries – AMLO has largely attempted to avoid discussion of the pandemic, claiming that in his case he has lucky charms that prevent him from contracting the virus. 

And both Bolsonaro and AMLO have participated in large public rallies, doing all the things that politicians love, shaking hands and hugging babies, and in the case of the former even wiping his nose before embracing an elderly woman.

The Nicaraguan, Brazilian and Mexican presidents make an odd grouping since one (Bosonaro) is considered of the extreme populist right and the others (Ortega and AMLO) of the populist left. What unites them is good old-fashioned populism, a belief in a leader who represents the amorphous popular will and should be unfettered by checks and balances on his power, including something like… science.  

An eclectic group

At the other extreme have been the quick responses by governments in Peru, Argentina, Chile, El Salvador and Colombia which put quarantine measures in place in mid-March. In these cases, governments have even banned outdoor activities and in the case of Peru and Colombia (in the large cities) have imposed alternating days for when women and men can leave the house so as to better control outside movement.  

This too, though, is an eclectic group. It includes a Peronist president Alberto Fernández in Argentina, conservative presidents Sebastian Piñera in Chile and Ivan Duque in Colombia, interim president and relative political neophyte Martin Vizcarra in Peru and outsider president Nayib Bukele in El Salvador. 

El Salvador’s strict quarantine measures have led to rising concerns that Bukele is using the crisis to consolidate personal power, using the national police and the armed forces to enforce the quarantine and ignoring three rulings by the Supreme Court urging the president to end the abuses. In Argentina, Peronist Fernández has shown a surprising commitment to containment even as it hurts his party’s working-class base, not something typically expected of the populist Peronist Party.   

In all of these cases, the quick, strong responses by the presidents shored up their popularity. Peru’s Vizcarra saw his popularity shoot up 35 points in a week to 82 per cent according to surveys taken in March. In late March 2020, Fernández in Argentina saw his approval ratings swell to 79.2 per cent with 94.7 percent of citizens approving of the government’s strict shelter-at-home policies.   Even presidents Piñera and Duque who had struggled with low approval ratings throughout 2019 and saw those numbers sink even lower after the social protests that ended the year have seen their numbers rise.  

According to an 20th April poll, Piñera’s popular approval rating swelled from 13 percent in March 18th at the start of the crisis to 25 per cent by 20th April; while hardly a sweeping popular mandate, even that level was unthinkable only a few months ago when administration was battered by social protests. 

In Colombia, after a series of political missteps and the popular protests, Duque’s popular approval rating had slumped to 26 per cent; by April 2nd, 62 percent of Colombians supported the once-beleaguered president.   (No recent surveys were available for Bukele in El Salvador.)

In contrast, Bolsonaro’s in Brazil has only nudged up.  Before the crisis hit, the president’s popularity had been in steady decline from a high of 49 per cent in January 2019 to 30 per cent by early December 2019. But by the first week in April, in the midst of a crisis in which other presidents saw their approval ratings increase by double digits, after his public disagreements with the health minister, Bolsonaro’s had sunk to 33 per cent while the soon-to-be-fired Mandetta’s stood at 76 per cent.  

AMLO in Mexico has fared no better. The populist leftist scored a high 86 per cent approval rating in February 1, 2019. By March 28, 2020 with concerns over his weak and flippant COVID-19 response and a severe contraction in economic growth, AMLO’s approval rating had sunk 26 points to 60 per cent and his disapproval stood at 37 per cent.    

In the midst of disharmony, coordination

Despite these differences, many countries in the region have shown the solidarity they often speak of but rarely follow in policy or practice. Peru, Chile and other countries have collaborated in repatriating citizens back to their home countries in the midst of the crisis.  

Even the countries of the Southern Cone common market, MERCOSUR, have pulled together on a number of fronts.  The trade bloc had effectively been ruled a dead-man-walking after its failed efforts to integrate Venezuela into the bloc, lowering its standards to let in the petroleum dependent semi-authoritarian government of then President Hugo Chávez. 

Even on the basics of internal cooperation, the block was struggling, unable to coordinate monetary policies and non-tariff trade barriers between the original founding member states, Argentina, Brazil, Paraguay and Uruguay.

The 35-year-old customs union seemed to get a breath a new life with the announcement that it had concluded 20-year-long negotiations with the EU for a free trade deal. Ratification of that deal, however, ran aground on the political differences between the recently elected governments of Bolsonaro in Brazil and the Peronist Fernández in Argentina. 

Bolsonaro refused to attend the Fernández December 2019 inauguration, in protest of the newly elected president’s leftist leanings.  And this was well before their sharply divergent reactions to the COVID-19 virus. 

How surprising then that Mercosur has served as an effective coordination mechanism for these different and once opposed governments. The trade body is collaborating among member states to ensure the repatriation of citizens and has agreed to coordinate to ensure that trade flows, especially of medical supplies, are not interrupted by shutdown measures

Mercosur has even gone one step further than several other bodies have failed to take.  In early April the bloc’s governing body, based in Montevideo, Uruguay created a $16 million (12 million pound) fund to augment country research and assist in the purchase of supplies needed to combat the virus.  

Now if Brazil, Argentina and the others could only coordinate their domestic coronavirus responses and economic policy. In late March Fernández announced he was pulling Argentina out of a possible Mercosur-EU trade deal.




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WITHDRAWN: Extraordinary apolipoprotein oxidation in chronic hepatitis C and liver cirrhosis [13. Other]

Withdrawn by Author.




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Oxidative stress-mediated regulation of proteasome complexes [Other]

Oxidative stress has been implicated in aging and many human diseases, notably neurodegenerative disorders and various cancers. The reactive oxygen species that are generated by aerobic metabolism and environmental stressors can chemically modify proteins and alter their biological functions. Cells possess protein repair pathways to rescue oxidized proteins and restore their functions. If these repair processes fail, oxidized proteins may become cytotoxic. Cell homeostasis and viability are therefore dependent on the removal of oxidatively damaged proteins. Numerous studies have demonstrated that the proteasome plays a pivotal role in the selective recognition and degradation of oxidized proteins. Despite extensive research, oxidative stress-triggered regulation of proteasome complexes remains poorly defined. Better understanding of molecular mechanisms underlying proteasome function in response to oxidative stress will provide a basis for developing new strategies aimed at improving cell viability and recovery as well as attenuating oxidation-induced cytotoxicity associated with aging and disease. Here we highlight recent advances in the understanding of proteasome structure and function during oxidative stress and describe how cells cope with oxidative stress through proteasome-dependent degradation pathways.




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Modulation of natural HLA-B*27:05 ligandome by ankylosing spondylitis-associated endoplasmic reticulum aminopeptidase 2 (ERAP2) [Research]

The human leucocyte antigen (HLA)-B*27:05 allele and the endoplasmic reticulum-resident aminopeptidases are strongly associated with ankylosing spondylitis (AS), a chronic inflammatory spondyloarthropathy. This study examined the effect of endoplasmic reticulum aminopeptidase 2 (ERAP2) in the generation of the natural HLA-B*27:05 ligandome in live cells. Complexes of HLA-B*27:05-bound peptide pools were isolated from human ERAP2-edited cell clones and the peptides were identified using high throughput mass spectrometry analyses. The relative abundance of thousand ligands was established by quantitative tandem mass spectrometry and bioinformatics analysis. The residue frequencies at different peptide position, identified in presence or absence of ERAP2, determined structural features of ligands and their interactions with specific pockets of antigen binding site of HLA-B*27:05 molecule. Sequence alignment of ligands identified with species of bacteria associated with HLA-B*27-dependent reactive arthritis was performed. In the absence of ERAP2, peptides with N-terminal basic residues, and minority canonical P2 residues are enriched in the natural ligandome. Further, alterations of residue frequencies and hydrophobicity profile at P3, P7, and P positions were detected. In addition, several ERAP2-dependent cellular peptides were highly similar to protein sequences of arthritogenic bacteria, including one human HLA-B*27:05 ligand fully conserved in a protein from Campylobacter jejuni. These findings highlight the pathogenic role of this aminopeptidase in the triggering of AS autoimmune disease.




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Immunopeptidomic analysis reveals that deamidated HLA-bound peptides arise predominantly from deglycosylated precursors [Technological Innovation and Resources]

The presentation of post-translationally modified (PTM) peptides by cell surface HLA molecules has the potential to increase the diversity of targets for surveilling T cells. Whilst immunopeptidomics studies routinely identify thousands of HLA-bound peptides from cell lines and tissue samples, in-depth analyses of the proportion and nature of peptides bearing one or more PTMs remains challenging. Here we have analyzed HLA-bound peptides from a variety of allotypes and assessed the distribution of mass spectrometry-detected PTMs, finding deamidation of asparagine or glutamine to be highly prevalent. Given that asparagine deamidation may arise either spontaneously or through enzymatic reaction, we assessed allele-specific and global motifs flanking the modified residues. Notably, we found that the N-linked glycosylation motif NX(S/T) was highly abundant across asparagine-deamidated HLA-bound peptides. This finding, demonstrated previously for a handful of deamidated T cell epitopes, implicates a more global role for the retrograde transport of nascently N-glycosylated polypeptides from the ER and their subsequent degradation within the cytosol to form HLA-ligand precursors. Chemical inhibition of Peptide:N-Glycanase (PNGase), the endoglycosidase responsible for the removal of glycans from misfolded and retrotranslocated glycoproteins, greatly reduced presentation of this subset of deamidated HLA-bound peptides. Importantly, there was no impact of PNGase inhibition on peptides not containing a consensus NX(S/T) motif. This indicates that a large proportion of HLA-I bound asparagine deamidated peptides are generated from formerly glycosylated proteins that have undergone deglycosylation via the ER-associated protein degradation (ERAD) pathway. The information herein will help train deamidation prediction models for HLA-peptide repertoires and aid in the design of novel T cell therapeutic targets derived from glycoprotein antigens.




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Metallopeptidase Stp1 activates the transcription factor Sre1 in the carotenogenic yeast Xanthophyllomyces dendrorhous [Research Articles]

Xanthophyllomyces dendrorhous is a basidiomycete yeast known as a natural producer of astaxanthin, a carotenoid of commercial interest because of its antioxidant properties. Recent studies indicated that X. dendrorhous has a functional SREBP pathway involved in the regulation of isoprenoid compound biosynthesis, which includes ergosterol and carotenoids. SREBP is a major regulator of sterol metabolism and homeostasis in mammals; characterization in fungi also provides information about its role in the hypoxia adaptation response and virulence. SREBP protease processing is required to activate SREBP pathway functions in fungi. Here, we identified and described the STP1 gene, which encodes a metallopeptidase of the M50 family involved in the proteolytic activation of the transcription factor Sre1 of the SREBP pathway, in X. dendrorhous. We assessed STP1 function in stp1 strains derived from the wild-type and a mutant of ergosterol biosynthesis that overproduces carotenoids and sterols. Bioinformatic analysis of the deduced protein predicted the presence of characteristic features identified in homologs from mammals and fungi. The stp1 mutation decreased yeast growth in the presence of azole drugs and reduced transcript levels of Sre1-dependent genes. This mutation also negatively affected the carotenoid- and sterol-overproducing phenotype. Western blot analysis demonstrated that Sre1 was activated in the yeast ergosterol biosynthesis mutant and that the stp1 mutation introduced in this strain prevented Sre1 proteolytic activation. Overall, our results demonstrate that STP1 encodes a metallopeptidase involved in proteolytic activation of Sre1 in X. dendrorhous, contributing to our understanding of fungal SREBP pathways.




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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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Glucose-Stimulated Insulin Secretion Fundamentally Requires H2O2 Signaling by NADPH Oxidase 4

NADPH facilitates glucose-stimulated insulin secretion (GSIS) in pancreatic islet (PI) β-cells by an as yet unknown mechanism. We found NADPH oxidase, isoform-4 (NOX4), to be the major producer of cytosolic H2O2, essential for GSIS, while the increase in ATP/ADP alone was insufficient. The fast GSIS phase was absent in PIs from NOX4-null, β-cell-specific knockout mice (NOX4βKO) (not NOX2KO), and NOX4-silenced or catalase-overexpressing INS-1E cells. Lentiviral NOX4 overexpression or H2O2 rescued GSIS in PIs from NOX4βKO mice. NOX4 silencing suppressed Ca2+ oscillations and the patch-clamped ATP-sensitive potassium channel (KATP) opened more frequently at high glucose. Mitochondrial H2O2, decreasing upon GSIS, provided an alternative redox signaling when 2-oxo-isocaproate or fatty acid oxidation formed superoxide by electron-transport flavoprotein:Q-oxidoreductase. Unlike GSIS, this ceased with mitochondrial antioxidant SkQ1. Both NOX4KO and NOX4βKO strains exhibited impaired glucose tolerance and peripheral insulin resistance. Thus the redox signaling previously suggested to cause β-cell-self-checking – hypothetically induces insulin resistance when absent. In conclusion, ATP plus H2O2 elevations constitute an essential switch-on signal of insulin exocytosis for glucose and branched-chain oxoacids as secretagogues (partly for fatty acids). Redox signaling could be impaired by cytosolic antioxidants, hence those targeting mitochondria should be preferred for clinical applications to treat (pre)diabetes at any stage.




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Circulating Protein Signatures and Causal Candidates for Type 2 Diabetes

The increasing prevalence of type 2 diabetes poses a major challenge to societies worldwide. Blood-based factors like serum proteins are in contact with every organ in the body to mediate global homeostasis and may thus directly regulate complex processes such as aging and the development of common chronic diseases. We applied a data-driven proteomics approach, measuring serum levels of 4,137 proteins in 5,438 elderly Icelanders and identified 536 proteins associated with prevalent and/or incident type 2 diabetes. We validated a subset of the observed associations in an independent case-control study of type 2 diabetes. These protein associations provide novel biological insights into the molecular mechanisms that are dysregulated prior to and following the onset of type 2 diabetes and can be detected in serum. A bi-directional two-sample Mendelian randomization analysis indicated that serum changes of at least 23 proteins are downstream of the disease or its genetic liability, while 15 proteins were supported as having a causal role in type 2 diabetes.




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The short variant of optic atrophy 1 (OPA1) improves cell survival under oxidative stress [Bioenergetics]

Optic atrophy 1 (OPA1) is a dynamin protein that mediates mitochondrial fusion at the inner membrane. OPA1 is also necessary for maintaining the cristae and thus essential for supporting cellular energetics. OPA1 exists as membrane-anchored long form (L-OPA1) and short form (S-OPA1) that lacks the transmembrane region and is generated by cleavage of L-OPA1. Mitochondrial dysfunction and cellular stresses activate the inner membrane–associated zinc metallopeptidase OMA1 that cleaves L-OPA1, causing S-OPA1 accumulation. The prevailing notion has been that L-OPA1 is the functional form, whereas S-OPA1 is an inactive cleavage product in mammals, and that stress-induced OPA1 cleavage causes mitochondrial fragmentation and sensitizes cells to death. However, S-OPA1 contains all functional domains of dynamin proteins, suggesting that it has a physiological role. Indeed, we recently demonstrated that S-OPA1 can maintain cristae and energetics through its GTPase activity, despite lacking fusion activity. Here, applying oxidant insult that induces OPA1 cleavage, we show that cells unable to generate S-OPA1 are more sensitive to this stress under obligatory respiratory conditions, leading to necrotic death. These findings indicate that L-OPA1 and S-OPA1 differ in maintaining mitochondrial function. Mechanistically, we found that cells that exclusively express L-OPA1 generate more superoxide and are more sensitive to Ca2+-induced mitochondrial permeability transition, suggesting that S-OPA1, and not L-OPA1, protects against cellular stress. Importantly, silencing of OMA1 expression increased oxidant-induced cell death, indicating that stress-induced OPA1 cleavage supports cell survival. Our findings suggest that S-OPA1 generation by OPA1 cleavage is a survival mechanism in stressed cells.




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Melding the best of two worlds: Cecil Pickett's work on cellular oxidative stress and in drug discovery and development [Molecular Bases of Disease]

Many chemicals and cellular processes cause oxidative stress that can damage lipids, proteins, or DNA (1). To quickly sense and respond to this ubiquitous threat, organisms have evolved enzymes that neutralize harmful oxidants such as reactive oxygen species and electrophilic compounds (including xenobiotics and their breakdown products) in cells.These antioxidant enzymes include GSH S-transferase (GST),2 NADPH:quinone oxidoreductase 1, thioredoxin, hemeoxygenase-1, and others (2, 3). Many of these proteins are commonly expressed in cells exposed to oxidative stress.The antioxidant response element (ARE) is a major regulatory component of this cellular stress response. The ARE is a conserved, 11-nucleotide-long DNA motif present in the 5'-flanking regions of many genes encoding antioxidant proteins. The laboratory of Cecil Pickett (Fig. 1) at the Merck Frosst Centre for Therapeutic Research in Quebec discovered ARE, a finding reported in the early 1990s in two JBC papers recognized as Classics here (4, 5).jbc;295/12/3929/F1F1F1Figure 1.Cecil Pickett (pictured) and colleagues first described the ARE motif, present in the 5' regions of many genes whose expression is up-regulated by oxidative stress and xenobiotics. Photo courtesy of Cecil Pickett.ARE's discovery was spurred in large part by Pickett's career choice. After completing a PhD in biology and a 2-year postdoc at UCLA in the mid-1970s, he began to work in the pharmaceutical industry.Recruited to Merck in 1978 by its then head of research and development (and later CEO), Roy Vagelos, “I became interested in how drug-metabolizing enzymes were induced by various xenobiotics,” Pickett says.According to Pickett, Vagelos encouraged researchers at the company...




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Latin America’s COVID-19 Moment: Differences and Solidarity

30 April 2020

Dr Christopher Sabatini

Senior Research Fellow for Latin America, US and the Americas Programme
There has been no better example of the political diversity in Latin America than the varying responses of governments to the coronavirus crisis.

2020-04-30-Chile-Covid.jpg

A municipal cleaning worker disinfects the central market in Santiago, Chile on 7 April 2020 amid the coronavirus pandemic. Photo: Getty Images.

Differing approaches across the hemisphere have had different impacts on presidential popularity and, at least in one case, on democratic institutions and human rights. Yet, even within that diversity, South America’s Southern Cone countries (Argentina, Chile, Paraguay and Uruguay) have shown a sign of solidarity: protecting and facilitating trade flows, sponsoring cross-border research and ensuring citizens’ return to their home countries.    

The response from populist leaders

On the extreme have been the responses of presidents of Brazil, Nicaragua and Mexico, all of whom have ignored the science of the virus and of experts and refused to implement isolation policies.  President Jair Bolsonaro of Brazil fired his health minister, Luis Henrique Mandetta on 16 April for contradicting him and earlier had claimed that the pandemic was a hoax or little more than a ‘measly cold.' 

Meanwhile, Nicaraguan president Daniel Ortega has resisted closing businesses and schools.  After a mysterious 34-day absence, Ortega appeared on television on 15 April reinforcing his refusal to close businesses saying that Nicaraguans must work or they will die and claiming that the virus was ‘imported.’ 

Mexico’s Andres Manuel Lopez Obrador (AMLO) has also resisted the call for strict stay-at-home policies, though with his Deputy Health Minister, Hugo López-Gatell, has closed schools – recently extending the closure to the 1st of June and urging non-essential businesses to close – but focusing primarily on social distancing. 

In contrast to his deputy health minister and Foreign Minister Marcelo Ebrard – who had declared the situation a health emergency on 30th March, later than many neighbouring countries – AMLO has largely attempted to avoid discussion of the pandemic, claiming that in his case he has lucky charms that prevent him from contracting the virus. 

And both Bolsonaro and AMLO have participated in large public rallies, doing all the things that politicians love, shaking hands and hugging babies, and in the case of the former even wiping his nose before embracing an elderly woman.

The Nicaraguan, Brazilian and Mexican presidents make an odd grouping since one (Bosonaro) is considered of the extreme populist right and the others (Ortega and AMLO) of the populist left. What unites them is good old-fashioned populism, a belief in a leader who represents the amorphous popular will and should be unfettered by checks and balances on his power, including something like… science.  

An eclectic group

At the other extreme have been the quick responses by governments in Peru, Argentina, Chile, El Salvador and Colombia which put quarantine measures in place in mid-March. In these cases, governments have even banned outdoor activities and in the case of Peru and Colombia (in the large cities) have imposed alternating days for when women and men can leave the house so as to better control outside movement.  

This too, though, is an eclectic group. It includes a Peronist president Alberto Fernández in Argentina, conservative presidents Sebastian Piñera in Chile and Ivan Duque in Colombia, interim president and relative political neophyte Martin Vizcarra in Peru and outsider president Nayib Bukele in El Salvador. 

El Salvador’s strict quarantine measures have led to rising concerns that Bukele is using the crisis to consolidate personal power, using the national police and the armed forces to enforce the quarantine and ignoring three rulings by the Supreme Court urging the president to end the abuses. In Argentina, Peronist Fernández has shown a surprising commitment to containment even as it hurts his party’s working-class base, not something typically expected of the populist Peronist Party.   

In all of these cases, the quick, strong responses by the presidents shored up their popularity. Peru’s Vizcarra saw his popularity shoot up 35 points in a week to 82 per cent according to surveys taken in March. In late March 2020, Fernández in Argentina saw his approval ratings swell to 79.2 per cent with 94.7 percent of citizens approving of the government’s strict shelter-at-home policies.   Even presidents Piñera and Duque who had struggled with low approval ratings throughout 2019 and saw those numbers sink even lower after the social protests that ended the year have seen their numbers rise.  

According to an 20th April poll, Piñera’s popular approval rating swelled from 13 percent in March 18th at the start of the crisis to 25 per cent by 20th April; while hardly a sweeping popular mandate, even that level was unthinkable only a few months ago when administration was battered by social protests. 

In Colombia, after a series of political missteps and the popular protests, Duque’s popular approval rating had slumped to 26 per cent; by April 2nd, 62 percent of Colombians supported the once-beleaguered president.   (No recent surveys were available for Bukele in El Salvador.)

In contrast, Bolsonaro’s in Brazil has only nudged up.  Before the crisis hit, the president’s popularity had been in steady decline from a high of 49 per cent in January 2019 to 30 per cent by early December 2019. But by the first week in April, in the midst of a crisis in which other presidents saw their approval ratings increase by double digits, after his public disagreements with the health minister, Bolsonaro’s had sunk to 33 per cent while the soon-to-be-fired Mandetta’s stood at 76 per cent.  

AMLO in Mexico has fared no better. The populist leftist scored a high 86 per cent approval rating in February 1, 2019. By March 28, 2020 with concerns over his weak and flippant COVID-19 response and a severe contraction in economic growth, AMLO’s approval rating had sunk 26 points to 60 per cent and his disapproval stood at 37 per cent.    

In the midst of disharmony, coordination

Despite these differences, many countries in the region have shown the solidarity they often speak of but rarely follow in policy or practice. Peru, Chile and other countries have collaborated in repatriating citizens back to their home countries in the midst of the crisis.  

Even the countries of the Southern Cone common market, MERCOSUR, have pulled together on a number of fronts.  The trade bloc had effectively been ruled a dead-man-walking after its failed efforts to integrate Venezuela into the bloc, lowering its standards to let in the petroleum dependent semi-authoritarian government of then President Hugo Chávez. 

Even on the basics of internal cooperation, the block was struggling, unable to coordinate monetary policies and non-tariff trade barriers between the original founding member states, Argentina, Brazil, Paraguay and Uruguay.

The 35-year-old customs union seemed to get a breath a new life with the announcement that it had concluded 20-year-long negotiations with the EU for a free trade deal. Ratification of that deal, however, ran aground on the political differences between the recently elected governments of Bolsonaro in Brazil and the Peronist Fernández in Argentina. 

Bolsonaro refused to attend the Fernández December 2019 inauguration, in protest of the newly elected president’s leftist leanings.  And this was well before their sharply divergent reactions to the COVID-19 virus. 

How surprising then that Mercosur has served as an effective coordination mechanism for these different and once opposed governments. The trade body is collaborating among member states to ensure the repatriation of citizens and has agreed to coordinate to ensure that trade flows, especially of medical supplies, are not interrupted by shutdown measures

Mercosur has even gone one step further than several other bodies have failed to take.  In early April the bloc’s governing body, based in Montevideo, Uruguay created a $16 million (12 million pound) fund to augment country research and assist in the purchase of supplies needed to combat the virus.  

Now if Brazil, Argentina and the others could only coordinate their domestic coronavirus responses and economic policy. In late March Fernández announced he was pulling Argentina out of a possible Mercosur-EU trade deal.




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We are Award Winning Multinational Android app development Delhi based Company. Our Highly Expert team of Android Developers have 4+ Years of experience.



  • Computer and Technology

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Covid-19: Campaigner calls for national guidance to stop DNR orders being made without discussion with patients and families




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PERMEN AILIDA CANDY OBAT PERANGSANG WANITA - Rahasia Pria

Permen Ailida Candy Obat Perangsang merupakan perangsang wanita herbal yang berbentu permen candy denga rasa manis seperti buah untuk meningkatkan gairah



  • Sports and Health

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Pelangsing Badan Herbal Lida Obat Diet Alami - Rahasia Pria

Pelangsing Badan Herbal Lida Daidaihua Adalah Pelangsing Badan Yang Mengandung Bahan Herbal Yang Sangat Cepat Menurunkan Berat Badan, Aman Dan Cepat .



  • Sports and Health

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Top Mobile app Development Company in Noida

We are leading Top mobile app development company in Mumbai, Delhi, Noida, India. We have award winning Android and iOS developers to build your mobile apps with long term support.




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Something Extra | Friday

While many in the heat of this COVID-19 pandemic are staying inside, Jodian Duhaney, her fiancé and a team of friends are out in the communities of St James giving care packages to those in need. For Flashback Friday, Something Extra brings you...




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Something Extra | Friday

Jamaican cultural ambassador Latonya Style is known for taking her passion and promoting dancehall across the world. Something Extra celebrates Flashback Friday by bringing you behind the scenes of this globetrotter’s dance workshop and tour in...




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Something Extra | Friday

On Wednesday, the world celebrated International Dance Day. So let’s join in the festivities, bringing to the stage highlights of PAH Deaf Dance Company performance showcase during Kingston Creative’s Art Walk, held earlier this year at Water Lane...




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Something Extra | Friday

Rate those who rate you. Yung Rolaz had this mantra in the streets, providing patrons with the ultimate party experience. Since outside is no longer a festive option, let’s celebrate flashback Friday with hot highlights from the local and...




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9 comeback candidates to root for this season

A year ago, Danny Farquhar was not going to be in the middle of a spring storyline. That's going to change this spring as he tries to win a spot in the Yankees' bullpen




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Relation Between Antioxidant Enzyme Gene Expression and Antioxidative Defense Status of Insulin-Producing Cells

Markus Tiedge
Nov 1, 1997; 46:1733-1742
Original Article