ato It's a man's world: carnal spectatorship and dissonant masculinities in Islamic State videos By feedproxy.google.com Published On :: Thu, 07 May 2020 08:41:04 +0000 7 May 2020 , Volume 96, Number 3 Manni Crone Read Online Islamic State videos have often been associated with savage violence and beheadings. An in-depth scrutiny however reveals another striking feature: that female bodies are absent, blurred or mute. Examining a few Islamic State videos in depth, the article suggests that the invisibility of women in tandem with the ostentatious visibility of male bodies enable gendered and embodied spectators to indulge in homoerotic as well as heterosexual imaginaries. In contrast to studies on visual security and online radicalization which assert that images affect an audience, this article focuses on the interaction between video and audience and argues that spectators are not only rational and emotional but embodied and gendered as well. Islamic State videos do not only attract western foreign fighters through religious–ideological rhetoric or emotional impact but also through gendered forms of pleasure and desire that enable carnal imagination and identification. The article probes the analytical purchase of carnal aesthetics and spectatorship. Full Article
ato Erratum: FTY720/fingolimod decreases hepatic steatosis and expression of fatty acid synthase in diet-induced nonalcoholic fatty liver disease in mice [Errata] By feedproxy.google.com Published On :: 2020-02-01T00:05:23-08:00 Full Article
ato A nematode sterol C4{alpha}-methyltransferase catalyzes a new methylation reaction responsible for sterol diversity [Research Articles] By feedproxy.google.com Published On :: 2020-02-01T00:05:23-08:00 Primitive sterol evolution plays an important role in fossil record interpretation and offers potential therapeutic avenues for human disease resulting from nematode infections. Recognizing that C4-methyl stenol products [8(14)-lophenol] can be synthesized in bacteria while C4-methyl stanol products (dinosterol) can be synthesized in dinoflagellates and preserved as sterane biomarkers in ancient sedimentary rock is key to eukaryotic sterol evolution. In this regard, nematodes have been proposed to convert dietary cholesterol to 8(14)-lophenol by a secondary metabolism pathway that could involve sterol C4 methylation analogous to the C2 methylation of hopanoids (radicle-type mechanism) or C24 methylation of sterols (carbocation-type mechanism). Here, we characterized dichotomous cholesterol metabolic pathways in Caenorhabditis elegans that generate 3-oxo sterol intermediates in separate paths to lophanol (4-methyl stanol) and 8(14)-lophenol (4-methyl stenol). We uncovered alternate C3-sterol oxidation and 7 desaturation steps that regulate sterol flux from which branching metabolite networks arise, while lophanol/8(14)-lophenol formation is shown to be dependent on a sterol C4α-methyltransferse (4-SMT) that requires 3-oxo sterol substrates and catalyzes a newly discovered 3-keto-enol tautomerism mechanism linked to S-adenosyl-l-methionine-dependent methylation. Alignment-specific substrate-binding domains similarly conserved in 4-SMT and 24-SMT enzymes, despite minimal amino acid sequence identity, suggests divergence from a common, primordial ancestor in the evolution of methyl sterols. The combination of these results provides evolutionary leads to sterol diversity and points to cryptic C4-methyl steroidogenic pathways of targeted convergence that mediate lineage-specific adaptations. Full Article
ato Lipid droplet-associated kinase STK25 regulates peroxisomal activity and metabolic stress response in steatotic liver [Research Articles] By feedproxy.google.com Published On :: 2020-02-01T00:05:23-08:00 Nonalcoholic fatty liver disease (NAFLD) and nonalcoholic steatohepatitis (NASH) are emerging as leading causes of liver disease worldwide and have been recognized as one of the major unmet medical needs of the 21st century. Our recent translational studies in mouse models, human cell lines, and well-characterized patient cohorts have identified serine/threonine kinase (STK)25 as a protein that coats intrahepatocellular lipid droplets (LDs) and critically regulates liver lipid homeostasis and progression of NAFLD/NASH. Here, we studied the mechanism-of-action of STK25 in steatotic liver by relative quantification of the hepatic LD-associated phosphoproteome from high-fat diet-fed Stk25 knockout mice compared with their wild-type littermates. We observed a total of 131 proteins and 60 phosphoproteins that were differentially represented in STK25-deficient livers. Most notably, a number of proteins involved in peroxisomal function, ubiquitination-mediated proteolysis, and antioxidant defense were coordinately regulated in Stk25–/– versus wild-type livers. We confirmed attenuated peroxisomal biogenesis and protection against oxidative and ER stress in STK25-deficient human liver cells, demonstrating the hepatocyte-autonomous manner of STK25’s action. In summary, our results suggest that regulation of peroxisomal function and metabolic stress response may be important molecular mechanisms by which STK25 controls the development and progression of NAFLD/NASH. Full Article
ato Alirocumab, evinacumab, and atorvastatin triple therapy regresses plaque lesions and improves lesion composition in mice [Research Articles] By feedproxy.google.com Published On :: 2020-03-01T00:06:33-08:00 Atherosclerosis-related CVD causes nearly 20 million deaths annually. Most patients are treated after plaques develop, so therapies must regress existing lesions. Current therapies reduce plaque volume, but targeting all apoB-containing lipoproteins with intensive combinations that include alirocumab or evinacumab, monoclonal antibodies against cholesterol-regulating proprotein convertase subtilisin/kexin type 9 and angiopoietin-like protein 3, may provide more benefit. We investigated the effect of such lipid-lowering interventions on atherosclerosis in APOE*3-Leiden.CETP mice, a well-established model for hyperlipidemia. Mice were fed a Western-type diet for 13 weeks and thereafter matched into a baseline group (euthanized at 13 weeks) and five groups that received diet alone (control) or with treatment [atorvastatin; atorvastatin and alirocumab; atorvastatin and evinacumab; or atorvastatin, alirocumab, and evinacumab (triple therapy)] for 25 weeks. We measured effects on cholesterol levels, plaque composition and morphology, monocyte adherence, and macrophage proliferation. All interventions reduced plasma total cholesterol (37% with atorvastatin to 80% with triple treatment; all P < 0.001). Triple treatment decreased non-HDL-C to 1.0 mmol/l (91% difference from control; P < 0.001). Atorvastatin reduced atherosclerosis progression by 28% versus control (P < 0.001); double treatment completely blocked progression and diminished lesion severity. Triple treatment regressed lesion size versus baseline in the thoracic aorta by 50% and the aortic root by 36% (both P < 0.05 vs. baseline), decreased macrophage accumulation through reduced proliferation, and abated lesion severity. Thus, high-intensive cholesterol-lowering triple treatment targeting all apoB-containing lipoproteins regresses atherosclerotic lesion area and improves lesion composition in mice, making it a promising potential approach for treating atherosclerosis. Full Article
ato Slc43a3 is a regulator of free fatty acid flux [Research Articles] By feedproxy.google.com Published On :: 2020-05-01T00:05:27-07:00 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. Full Article
ato Hematopoiesis is regulated by cholesterol efflux pathways and lipid rafts: connections with cardiovascular diseases [Thematic Reviews] By feedproxy.google.com Published On :: 2020-05-01T00:05:27-07:00 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. Full Article
ato ADAM10 and ADAM17 proteases mediate proinflammatory cytokine-induced and constitutive cleavage of endomucin from the endothelial surface [Membrane Biology] By feedproxy.google.com Published On :: 2020-05-08T03:41:14-07:00 Contact between inflammatory cells and endothelial cells (ECs) is a crucial step in vascular inflammation. Recently, we demonstrated that the cell-surface level of endomucin (EMCN), a heavily O-glycosylated single-transmembrane sialomucin, interferes with the interactions between inflammatory cells and ECs. We have also shown that, in response to an inflammatory stimulus, EMCN is cleared from the cell surface by an unknown mechanism. In this study, using adenovirus-mediated overexpression of a tagged EMCN in human umbilical vein ECs, we found that treatment with tumor necrosis factor α (TNF-α) or the strong oxidant pervanadate leads to loss of cell-surface EMCN and increases the levels of the C-terminal fragment of EMCN 3- to 4-fold. Furthermore, treatment with the broad-spectrum matrix metalloproteinase inhibitor batimastat (BB94) or inhibition of ADAM metallopeptidase domain 10 (ADAM10) and ADAM17 with two small-molecule inhibitors, GW280264X and GI254023X, or with siRNA significantly reduced basal and TNFα-induced cell-surface EMCN cleavage. Release of the C-terminal fragment of EMCN by TNF-α treatment was blocked by chemical inhibition of ADAM10 alone or in combination with ADAM17. These results indicate that cell-surface EMCN undergoes constitutive cleavage and that TNF-α treatment dramatically increases this cleavage, which is mediated predominantly by ADAM10 and ADAM17. As endothelial cell-surface EMCN attenuates leukocyte–EC interactions during inflammation, we propose that EMCN is a potential therapeutic target to manage vascular inflammation. Full Article
ato Glucagon Resistance at the Level of Amino Acid Turnover in Obese Subjects with Hepatic Steatosis By diabetes.diabetesjournals.org Published On :: 2020-01-23T08:19:19-08:00 Glucagon secretion is regulated by circulating glucose, but it has turned out that amino acids also play an important role, and that hepatic amino acid metabolism and glucagon are linked in a mutual feed-back cycle, the liver-alpha cell axis. On this background, we hypothesized that hepatic steatosis might impair glucagon’s action on hepatic amino acid metabolism and lead to hyperaminoacidemia and hyperglucagonemia.We subjected 15 healthy lean and 15 obese steatotic male participants to a pancreatic clamp with somatostatin and evaluated hepatic glucose and amino acid metabolism during basal and high physiological levels of glucagon. The degree of steatosis was evaluated from liver biopsies.Total RNA sequencing of liver biopsies revealed perturbations in the expression of genes predominantly involved in amino acid metabolism in the obese steatotic individuals. This group was also characterized by fasting hyperglucagonemia, hyperaminoacidemia and an absent lowering of amino acid levels in response to high levels of glucagon. Endogenous glucose production was similar between lean and obese individuals.Our results suggest that hepatic steatosis causes resistance to the effect of glucagon on amino acid metabolism resulting in increased amino acid concentrations as well as increased glucagon secretion providing a likely explanation of fatty liver-associated hyperglucagonemia. Full Article
ato Coregulator Sin3a Promotes Postnatal Murine {beta}-Cell Fitness by Regulating Genes in Ca2+ Homeostasis, Cell Survival, Vesicle Biosynthesis, Glucose Metabolism, and Stress Response By diabetes.diabetesjournals.org Published On :: 2020-04-21T12:16:29-07:00 Swi-independent 3a and 3b (Sin3a and Sin3b) are paralogous transcriptional coregulators that direct cellular differentiation, survival, and function. Here, we report that mouse Sin3a and Sin3b are co-produced in most pancreatic cells during embryogenesis but become much more enriched in endocrine cells in adults, implying continued essential roles in mature endocrine-cell function. Mice with loss of Sin3a in endocrine progenitors were normal during early postnatal stages but gradually developed diabetes before weaning. These physiological defects were preceded by the compromised survival, insulin-vesicle packaging, insulin secretion, and nutrient-induced Ca2+ influx of Sin3a-deficient β-cells. RNA-seq coupled with candidate chromatin-immunoprecipitation assays revealed several genes that could be directly regulated by Sin3a in β-cells, which modulate Ca2+/ion transport, cell survival, vesicle/membrane trafficking, glucose metabolism, and stress responses. Lastly, mice with loss of both Sin3a and Sin3b in multipotent embryonic pancreatic progenitors had significantly reduced islet-cell mass at birth, caused by decreased endocrine-progenitor production and increased β-cell death. These findings highlight the stage-specific requirements for the presumed "general" coregulators Sin3a and Sin3b in islet β-cells, with Sin3a being dispensable for differentiation but required for postnatal function and survival. Full Article
ato The Effects of B1344, a Novel Fibroblast Growth Factor 21 Analog, on Nonalcoholic Steatohepatitis in Nonhuman Primates By diabetes.diabetesjournals.org Published On :: 2020-04-30T07:18:52-07:00 Nonalcoholic steatohepatitis has emerged as a major cause of liver diseases with no effective therapies. Here, we evaluate the efficacies and pharmacokinetics of B1344, a long-acting PEGylated FGF21 analog, in a nongenetically modified nonhuman primate species that underwent liver biopsy, and demonstrate the potential for efficacies in humans. B1344 is sufficient to selectively activate signaling from the βKlotho/FGFR1c receptor complex. In cynomolgus monkeys with nonalcoholic fatty liver disease, administration of B1344 via subcutaneous injection for eleven weeks caused a profound reduction of hepatic steatosis, inflammation and fibrosis, and amelioration of liver injury and hepatocyte death as evidenced by liver biopsy and biochemical analysis. Moreover, improvement of metabolic parameters was observed in the monkey, including reduction of body weight and improvement of lipid profiles and glycemic control. To determine the role of B1344 in the progression of murine NAFLD independent of obesity, administration of B1344 were performed in mice fed with methionine and choline deficiency diet. Consistently, B1344 administration prevented the mice from lipotoxicity damage and nonalcoholic steatohepatitis at a dose-dependent manner. These results provide preclinical validation for an innovative therapeutics to NAFLD, and support further clinical testing of B1344 for treating nonalcoholic steatohepatitis and other metabolic diseases in humans. Full Article
ato Repurposing Doxepin to Ameliorate Steatosis and Hyperglycemia by Activating FAM3A Signaling Pathway By diabetes.diabetesjournals.org Published On :: 2020-05-07T08:35:09-07:00 Mitochondrial protein FAM3A suppresses hepatic gluconeogenesis and lipogenesis. This study aimed to screen drug(s) that activates FAM3A expression and evaluate its effect(s) on hyperglycemia and steatosis. Drug-repurposing methodology predicted that antidepressive drug doxepin was among the drugs that potentially activated FAM3A expression. Doxepin was further validated to stimulate the translocation of transcription factor HNF4α from the cytoplasm into the nucleus, where it promoted FAM3A transcription to enhance ATP synthesis, suppress gluconeogenesis, and reduce lipid deposition in hepatocytes. HNF4α antagonism or FAM3A deficiency blunted doxepin-induced suppression on gluconeogenesis and lipid deposition in hepatocytes. Doxepin administration attenuated hyperglycemia, steatosis, and obesity in obese diabetic mice with upregulated FAM3A expression in liver and brown adipose tissues (BAT). Notably, doxepin failed to correct dysregulated glucose and lipid metabolism in FAM3A-deficient mice fed on high-fat diet. Doxepin’s effects on ATP production, Akt activation, gluconeogenesis, and lipogenesis repression were also blunted in FAM3A-deficient mouse livers. In conclusion, FAM3A is a therapeutic target for diabetes and steatosis. Antidepressive drug doxepin activates FAM3A signaling pathways in liver and BAT to improve hyperglycemia and steatosis of obese diabetic mice. Doxepin might be preferentially recommended as an antidepressive drug in potential treatment of patients with diabetes complicated with depression. Full Article
ato Epigenetic Regulation of Hepatic Lipogenesis: Role in Hepatosteatosis and Diabetes By diabetes.diabetesjournals.org Published On :: 2020-03-20T11:50:28-07:00 Hepatosteatosis, which is frequently associated with development of metabolic syndrome and insulin resistance, manifests when triglyceride (TG) input in the liver is greater than TG output, resulting in the excess accumulation of TG. Dysregulation of lipogenesis therefore has the potential to increase lipid accumulation in the liver, leading to insulin resistance and type 2 diabetes. Recently, efforts have been made to examine the epigenetic regulation of metabolism by histone-modifying enzymes that alter chromatin accessibility for activation or repression of transcription. For regulation of lipogenic gene transcription, various known lipogenic transcription factors, such as USF1, ChREBP, and LXR, interact with and recruit specific histone modifiers, directing specificity toward lipogenesis. Alteration or impairment of the functions of these histone modifiers can lead to dysregulation of lipogenesis and thus hepatosteatosis leading to insulin resistance and type 2 diabetes. Full Article
ato Exercise Combats Hepatic Steatosis: Potential Mechanisms and Clinical Implications By diabetes.diabetesjournals.org Published On :: 2020-03-20T11:50:28-07:00 Hepatic steatosis, the excess storage of intrahepatic lipids, is a rampant clinical problem associated with the obesity epidemic. Hepatic steatosis is linked to increased risk for insulin resistance, type 2 diabetes, and cardiovascular and advanced liver disease. Accumulating evidence shows that physical activity, exercise, and aerobic capacity have profound effects on regulating intrahepatic lipids and mediating susceptibility for hepatic steatosis. Moreover, exercise can effectively reduce hepatic steatosis independent of changes in body mass. In this perspective, we highlight 1) the relationship between obesity and metabolic pathways putatively driving hepatic steatosis compared with changes induced by exercise; 2) the impact of physical activity, exercise, and aerobic capacity compared with caloric restriction on regulating intrahepatic lipids and steatosis risk; 3) the effects of exercise training (modalities, volume, intensity) for treatment of hepatic steatosis, and 4) evidence for a sustained protection against steatosis induced by exercise. Overall, evidence clearly indicates that exercise powerfully regulates intrahepatic storage of fat and risk for steatosis. Full Article
ato The FKH domain in FOXP3 mRNA frequently contains mutations in hepatocellular carcinoma that influence the subcellular localization and functions of FOXP3 [Molecular Bases of Disease] By feedproxy.google.com Published On :: 2020-04-17T00:06:05-07:00 The transcription factor forkhead box P3 (FOXP3) is a biomarker for regulatory T cells and can also be expressed in cancer cells, but its function in cancer appears to be divergent. The role of hepatocyte-expressed FOXP3 in hepatocellular carcinoma (HCC) is unknown. Here, we collected tumor samples and clinical information from 115 HCC patients and used five human cancer cell lines. We examined FOXP3 mRNA sequences for mutations, used a luciferase assay to assess promoter activities of FOXP3's target genes, and employed mouse tumor models to confirm in vitro results. We detected mutations in the FKH domain of FOXP3 mRNAs in 33% of the HCC tumor tissues, but in none of the adjacent nontumor tissues. None of the mutations occurred at high frequency, indicating that they occurred randomly. Notably, the mutations were not detected in the corresponding regions of FOXP3 genomic DNA, and many of them resulted in amino acid substitutions in the FKH region, altering FOXP3's subcellular localization. FOXP3 delocalization from the nucleus to the cytoplasm caused loss of transcriptional regulation of its target genes, inactivated its tumor-inhibitory capability, and changed cellular responses to histone deacetylase (HDAC) inhibitors. More complex FKH mutations appeared to be associated with worse prognosis in HCC patients. We conclude that mutations in the FKH domain of FOXP3 mRNA frequently occur in HCC and that these mutations are caused by errors in transcription and are not derived from genomic DNA mutations. Our results suggest that transcriptional mutagenesis of FOXP3 plays a role in HCC. Full Article
ato Cell-specific expression of the transcriptional regulator RHAMM provides a timing mechanism that controls appropriate wound re-epithelialization [Glycobiology and Extracellular Matrices] By feedproxy.google.com Published On :: 2020-04-17T00:06:05-07:00 Prevention of aberrant cutaneous wound repair and appropriate regeneration of an intact and functional integument require the coordinated timing of fibroblast and keratinocyte migration. Here, we identified a mechanism whereby opposing cell-specific motogenic functions of a multifunctional intracellular and extracellular protein, the receptor for hyaluronan-mediated motility (RHAMM), coordinates fibroblast and keratinocyte migration speed and ensures appropriate timing of excisional wound closure. We found that, unlike in WT mice, in Rhamm-null mice, keratinocyte migration initiates prematurely in the excisional wounds, resulting in wounds that have re-surfaced before the formation of normal granulation tissue, leading to a defective epidermal architecture. We also noted aberrant keratinocyte and fibroblast migration in the Rhamm-null mice, indicating that RHAMM suppresses keratinocyte motility but increases fibroblast motility. This cell context–dependent effect resulted from cell-specific regulation of extracellular signal-regulated kinase 1/2 (ERK1/2) activation and expression of a RHAMM target gene encoding matrix metalloprotease 9 (MMP-9). In fibroblasts, RHAMM promoted ERK1/2 activation and MMP-9 expression, whereas in keratinocytes, RHAMM suppressed these activities. In keratinocytes, loss of RHAMM function or expression promoted epidermal growth factor receptor–regulated MMP-9 expression via ERK1/2, which resulted in cleavage of the ectodomain of the RHAMM partner protein CD44 and thereby increased keratinocyte motility. These results identify RHAMM as a key factor that integrates the timing of wound repair by controlling cell migration. Full Article
ato The heme-regulatory motifs of heme oxygenase-2 contribute to the transfer of heme to the catalytic site for degradation [Protein Structure and Folding] By feedproxy.google.com Published On :: 2020-04-17T00:06:05-07:00 Heme-regulatory motifs (HRMs) are present in many proteins that are involved in diverse biological functions. The C-terminal tail region of human heme oxygenase-2 (HO2) contains two HRMs whose cysteine residues form a disulfide bond; when reduced, these cysteines are available to bind Fe3+-heme. Heme binding to the HRMs occurs independently of the HO2 catalytic active site in the core of the protein, where heme binds with high affinity and is degraded to biliverdin. Here, we describe the reversible, protein-mediated transfer of heme between the HRMs and the HO2 core. Using hydrogen-deuterium exchange (HDX)-MS to monitor the dynamics of HO2 with and without Fe3+-heme bound to the HRMs and to the core, we detected conformational changes in the catalytic core only in one state of the catalytic cycle—when Fe3+-heme is bound to the HRMs and the core is in the apo state. These conformational changes were consistent with transfer of heme between binding sites. Indeed, we observed that HRM-bound Fe3+-heme is transferred to the apo-core either upon independent expression of the core and of a construct spanning the HRM-containing tail or after a single turnover of heme at the core. Moreover, we observed transfer of heme from the core to the HRMs and equilibration of heme between the core and HRMs. We therefore propose an Fe3+-heme transfer model in which HRM-bound heme is readily transferred to the catalytic site for degradation to facilitate turnover but can also equilibrate between the sites to maintain heme homeostasis. Full Article
ato Structural basis of cell-surface signaling by a conserved sigma regulator in Gram-negative bacteria [Molecular Biophysics] By feedproxy.google.com Published On :: 2020-04-24T06:08:45-07:00 Cell-surface signaling (CSS) in Gram-negative bacteria involves highly conserved regulatory pathways that optimize gene expression by transducing extracellular environmental signals to the cytoplasm via inner-membrane sigma regulators. The molecular details of ferric siderophore-mediated activation of the iron import machinery through a sigma regulator are unclear. Here, we present the 1.56 Å resolution structure of the periplasmic complex of the C-terminal CSS domain (CCSSD) of PupR, the sigma regulator in the Pseudomonas capeferrum pseudobactin BN7/8 transport system, and the N-terminal signaling domain (NTSD) of PupB, an outer-membrane TonB-dependent transducer. The structure revealed that the CCSSD consists of two subdomains: a juxta-membrane subdomain, which has a novel all-β-fold, followed by a secretin/TonB, short N-terminal subdomain at the C terminus of the CCSSD, a previously unobserved topological arrangement of this domain. Using affinity pulldown assays, isothermal titration calorimetry, and thermal denaturation CD spectroscopy, we show that both subdomains are required for binding the NTSD with micromolar affinity and that NTSD binding improves CCSSD stability. Our findings prompt us to present a revised model of CSS wherein the CCSSD:NTSD complex forms prior to ferric-siderophore binding. Upon siderophore binding, conformational changes in the CCSSD enable regulated intramembrane proteolysis of the sigma regulator, ultimately resulting in transcriptional regulation. Full Article
ato Correction: A dual druggable genome-wide siRNA and compound library screening approach identifies modulators of parkin recruitment to mitochondria. [Additions and Corrections] By feedproxy.google.com Published On :: 2020-04-24T06:08:45-07:00 VOLUME 295 (2020) PAGES 3285–3300An incorrect graph was used in Fig. 5C. This error has now been corrected. Additionally, some of the statistics reported in the legend and text referring to Fig. 5C were incorrect. The F statistics for Fig. 5C should state Fken(3,16) = 7.454, p < 0.01; FCCCP(1,16) = 102.9, p < 0.0001; Finteraction(3,16) = 7.480, p < 0.01. This correction does not affect the results or conclusions of this work.jbc;295/17/5835/F5F1F5Figure 5C. Full Article
ato Correction: Metabolic fingerprinting for diagnosis of fibromyalgia and other rheumatologic disorders. [Additions and Corrections] By feedproxy.google.com Published On :: 2020-04-24T06:08:45-07:00 VOLUME 294 (2019) PAGES 2555–2568Due to publisher error, “150 l/mm” was changed to “150 liters/mm” in the second paragraph of the “Vibrational spectroscopy of samples” section under “Experimental Procedures.” The correct phrase should be “150 l/mm.” Full Article
ato Widening the drug trial net has the potential to reduce respiratory failure By feeds.bmj.com Published On :: Friday, May 8, 2020 - 09:29 Full Article
ato The EU Cannot Build a Foreign Policy on Regulatory Power Alone By feedproxy.google.com Published On :: Tue, 11 Feb 2020 16:33:26 +0000 11 February 2020 Alan Beattie Associate Fellow, Global Economy and Finance Programme and Europe Programme @alanbeattie LinkedIn Brussels will find its much-vaunted heft in setting standards cannot help it advance its geopolitical interests. 2020-02-11-Leyen.jpg EU Commission President Ursula von der Leyen speaks at the European Parliament in Strasbourg in February. Photo: Getty Images. There are two well-established ideas in trade. Individually, they are correct. Combined, they can lead to a conclusion that is unfortunately wrong.The first idea is that, across a range of economic sectors, the EU and the US have been engaged in a battle to have their model of regulation accepted as the global one, and that the EU is generally winning.The second is that governments can use their regulatory power to extend strategic and foreign policy influence.The conclusion would seem to be that the EU, which has for decades tried to develop a foreign policy, should be able to use its superpower status in regulation and trade to project its interests and its values abroad.That’s the theory. It’s a proposition much welcomed by EU policymakers, who know they are highly unlikely any time soon to acquire any of the tools usually required to run an effective foreign policy.The EU doesn’t have an army it can send into a shooting war, enough military or political aid to prop up or dispense of governments abroad, or a centralized intelligence service. Commission President Ursula von der Leyen has declared her outfit to be a ‘geopolitical commission’, and is casting about for any means of making that real.Through the ‘Brussels effect’ whereby European rules and standards are exported via both companies and governments, the EU has indeed won many regulatory battles with the US.Its cars, chemicals and product safety regulations are more widely adopted round the world than their American counterparts. In the absence of any coherent US offering, bar some varied state-level systems, the General Data Protection Regulation (GDPR) is the closest thing the world has to a single model for data privacy, and variants of it are being adopted by dozens of countries.The problem is this. Those parts of global economic governance where the US is dominant – particularly the dollar payments system – are highly conducive to projecting US power abroad. The extraterritorial reach of secondary sanctions, plus the widespread reliance of banks and companies worldwide on dollar funding – and hence the American financial system – means that the US can precisely target its influence.The EU can enforce trade sanctions, but not in such a powerful and discriminatory way, and it will always be outgunned by the US. Donald Trump could in effect force European companies to join in his sanctions on Iran when he pulled out of the nuclear deal, despite EU legislation designed to prevent their businesses being bullied. He can go after the chief financial officer of Huawei for allegedly breaching those sanctions.By contrast, the widespread adoption of GDPR or data protection regimes inspired by it may give the EU a warm glow of satisfaction, but it cannot be turned into a geopolitical tool in the same way.Nor, necessarily, does it particularly benefit the EU economy. Europe’s undersized tech sector seems unlikely to unduly benefit from the fact that data protection rules were written in the EU. Indeed, one common criticism of the regulations is that they entrench the power of incumbent tech giants like Google.There is a similar pattern at work in the adoption of new technologies such as artificial intelligence and the Internet of Things. In that field, the EU and its member states are also facing determined competition from China, which has been pushing its technologies and standards through forums such as the International Telecommunication Union.The EU has been attempting to write international rules for the use of AI which it hopes to be widely adopted. But again, these are a constraint on the use of new technologies largely developed by others, not the control of innovation.By contrast, China has created a vast domestic market in technologies like facial recognition and unleashed its own companies on it. The resulting surveillance kit can then be marketed to emerging market governments as part of China’s enduring foreign policy campaign to build up supporters in the developing world.If it genuinely wants to turn its economic power into geopolitical influence – and it’s not entirely clear what it would do with it if it did – the EU needs to recognize that not all forms of regulatory and trading dominance are the same.Providing public goods to the world economy is all very well. But unless they are so particular in nature that they project uniquely European values and interests, that makes the EU a supplier of useful plumbing but not a global architect of power.On the other hand, it could content itself with its position for the moment. It could recognize that not until enough hard power – guns, intelligence, money – is transferred from the member states to the centre, or until the member states start acting collectively, will the EU genuinely become a geopolitical force. Speaking loudly and carrying a stick of foam rubber is rarely a way to gain credibility in international relations.This article is part of a series of publications and roundtable discussions in the Chatham House Global Trade Policy Forum. Full Article
ato Myeloid HMG-CoA Reductase Determines Adipose Tissue Inflammation, Insulin Resistance, and Hepatic Steatosis in Diet-Induced Obese Mice By diabetes.diabetesjournals.org Published On :: 2020-01-20T12:00:25-08:00 Adipose tissue macrophages (ATMs) are involved in the development of insulin resistance in obesity. We have recently shown that myeloid cell–specific reduction of HMG-CoA reductase (Hmgcrm–/m–), which is the rate-limiting enzyme in cholesterol biosynthesis, protects against atherosclerosis by inhibiting macrophage migration in mice. We hypothesized that ATMs are harder to accumulate in Hmgcrm–/m– mice than in control Hmgcrfl/fl mice in the setting of obesity. To test this hypothesis, we fed Hmgcrm–/m– and Hmgcrfl/fl mice a high-fat diet (HFD) for 24 weeks and compared plasma glucose metabolism as well as insulin signaling and histology between the two groups. Myeloid cell–specific reduction of Hmgcr improved glucose tolerance and insulin sensitivity without altering body weight in the HFD-induced obese mice. The improvement was due to a decrease in the number of ATMs. The ATMs were reduced by decreased recruitment of macrophages as a result of their impaired chemotactic activity. These changes were associated with decreased expression of proinflammatory cytokines in adipose tissues. Myeloid cell–specific reduction of Hmgcr also attenuated hepatic steatosis. In conclusion, reducing myeloid HMGCR may be a promising strategy to improve insulin resistance and hepatic steatosis in obesity. Full Article
ato Rare inflammatory condition affects some children with COVID-19 By jamaica-gleaner.com Published On :: Thu, 07 May 2020 17:11:53 -0500 Dozens of United States children have been hospitalised with a serious inflammatory condition possibly linked with the coronavirus and first seen in Europe. New York authorities announced Wednesday that 64 potential cases had been reported to... Full Article
ato US planning to ship 8,000 ventilators abroad By jamaica-gleaner.com Published On :: Fri, 08 May 2020 16:54:29 -0500 WASHINGTON (AP) — President Donald Trump, who’s taken to calling the US the “king” of ventilators, is making plans to ship 8,000 of the breathing machines to foreign countries by the end of July to help in their fight... Full Article
ato "What has convinced me is the evidence" - why mandatory treatment for drug use is a bad idea By feeds.bmj.com Published On :: Fri, 10 Jun 2016 15:07:07 +0000 Global evidence indicates that mandated treatment of drug dependence conflicts with drug users’ human rights and is not effective in treating addiction. Karsten Lunze, associate professor at the Boston University School of Medicine, joins us to describe the evidence, and why he is convinced seemingly counter intuitive hard reduction... Full Article
ato Middle East respiratory syndrome By feeds.bmj.com Published On :: Fri, 21 Oct 2016 15:25:24 +0000 Middle East respiratory syndrome (MERS) is an acute viral respiratory tract infection caused by the novel betacoronavirus. Cases have been limited to the Arabian Peninsula and its surrounding countries, and to travellers from the Middle East or their contacts. The clinical spectrum of infection varies from no symptoms or mild respiratory... Full Article
ato Suspect, investigate, and diagnose acute respiratory distress syndrome By feeds.bmj.com Published On :: Wed, 03 Jan 2018 14:42:46 +0000 Acute respiratory distress syndrome was first described in 1967 and has become a defining condition in critical care. Around 40% of patients with ARDS will die, and survivors experience long term sequelae. No drug treatments exist for ARDS, however good supportive management reduces harm and improves outcome. In this podcast, John Laffey,... Full Article
ato Cancer drug trials used for regulatory approval are at risk of bias By feeds.bmj.com Published On :: Thu, 19 Sep 2019 14:09:14 +0000 Around half of trials that supported new cancer drug approvals in Europe between 2014 and 2016 were judged to be at high risk of bias, in a new study. Huseyin Naci,assistant professor of health policy a the London School of Economics joins us to talk about why potential bias may mean potential exaggeration of treatment effects, and could be... Full Article
ato Inflammatory Cytokines and the Risk to Develop Type 2 Diabetes: Results of the Prospective Population-Based European Prospective Investigation into Cancer and Nutrition (EPIC)-Potsdam Study By diabetes.diabetesjournals.org Published On :: 2003-03-01 Joachim SprangerMar 1, 2003; 52:812-817Pathophysiology Full Article
ato Elevated Levels of Acute-Phase Proteins and Plasminogen Activator Inhibitor-1 Predict the Development of Type 2 Diabetes: The Insulin Resistance Atherosclerosis Study By diabetes.diabetesjournals.org Published On :: 2002-04-01 Andreas FestaApr 1, 2002; 51:1131-1137Complications Full Article
ato PPAR-gamma: adipogenic regulator and thiazolidinedione receptor By diabetes.diabetesjournals.org Published On :: 1998-04-01 BM SpiegelmanApr 1, 1998; 47:507-514Articles Full Article
ato #JamaicaTogether | Mother pulled back from the brink after thieves shatter hope By jamaica-gleaner.com Published On :: Fri, 08 May 2020 00:25:21 -0500 Latoya Rose used the last $3,000 she had to invest in 26 baby chicks and feed with the hope of turning a profit after they matured. Last Friday, as the Spaldings resident went to her coop to feed the chickens, they were all gone. “When I don’t see... Full Article
ato #JamaicaTogether Promo - Nadine Sutherland By jamaica-gleaner.com Published On :: Sat, 09 May 2020 00:13:42 -0500 “I know this has been some difficult times for us with the pandemic, but I know we are going to get through this together – Jamaica together. We are going to continue our social distancing. We are going to continue practising our incredible hygiene... Full Article
ato An educator’s distress By jamaica-gleaner.com Published On :: Wed, 06 May 2020 00:09:46 -0500 THE EDITOR, Madam: I am an educator at the secondary level. I teach at a school that is located in the western part of Jamaica. I am writing this letter with a high level of distress. The Ministry of Education is asking for too much at this point... Full Article
ato Letter of the Day | A toast to great educators By jamaica-gleaner.com Published On :: Wed, 06 May 2020 00:15:23 -0500 The Editor, Madam: Today, as we celebrate Teachers’ Day, I pause in reflection, looking back at some of the educators who have deeply impacted me. Let me start with the principal of my primary school. She was a God-fearing woman, but I suppose,... Full Article
ato Mitochondrial Proton Leak Regulated by Cyclophilin D Elevates Insulin Secretion in Islets at Nonstimulatory Glucose Levels By diabetes.diabetesjournals.org Published On :: 2020-01-20T12:00:25-08:00 Fasting hyperinsulinemia precedes the development of type 2 diabetes. However, it is unclear whether fasting insulin hypersecretion is a primary driver of insulin resistance or a consequence of the progressive increase in fasting glycemia induced by insulin resistance in the prediabetic state. Herein, we have discovered a mechanism that specifically regulates non–glucose-stimulated insulin secretion (NGSIS) in pancreatic islets that is activated by nonesterified free fatty acids, the major fuel used by β-cells during fasting. We show that the mitochondrial permeability transition pore regulator cyclophilin D (CypD) promotes NGSIS, but not glucose-stimulated insulin secretion, by increasing mitochondrial proton leak. Islets from prediabetic obese mice show significantly higher CypD-dependent proton leak and NGSIS compared with lean mice. Proton leak–mediated NGSIS is conserved in human islets and is stimulated by exposure to nonesterified free fatty acids at concentrations observed in obese subjects. Mechanistically, proton leak activates islet NGSIS independently of mitochondrial ATP synthesis but ultimately requires closure of the KATP channel. In summary, we have described a novel nonesterified free fatty acid–stimulated pathway that selectively drives pancreatic islet NGSIS, which may be therapeutically exploited as an alternative way to halt fasting hyperinsulinemia and the progression of type 2 diabetes. Full Article
ato Liver ChREBP Protects Against Fructose-Induced Glycogenic Hepatotoxicity by Regulating L-Type Pyruvate Kinase By diabetes.diabetesjournals.org Published On :: 2020-03-20T11:50:28-07:00 Excessive fructose consumption is closely linked to the pathogenesis of metabolic disease. Carbohydrate response element-binding protein (ChREBP) is a transcription factor essential for fructose tolerance in mice. However, the functional significance of liver ChREBP in fructose metabolism remains unclear. Here, we show that liver ChREBP protects mice against fructose-induced hepatotoxicity by regulating liver glycogen metabolism and ATP homeostasis. Liver-specific ablation of ChREBP did not compromise fructose tolerance, but rather caused severe transaminitis and hepatomegaly with massive glycogen overload in mice fed a high-fructose diet, while no obvious inflammation, cell death, or fibrosis was detected in the liver. In addition, liver ATP contents were significantly decreased by ChREBP deficiency in the fed state, which was rendered more pronounced by fructose feeding. Mechanistically, liver contents of glucose-6-phosphate (G6P), an allosteric activator of glycogen synthase, were markedly increased in the absence of liver ChREBP, while fasting-induced glycogen breakdown was not compromised. Furthermore, hepatic overexpression of LPK, a ChREBP target gene in glycolysis, could effectively rescue glycogen overload and ATP reduction, as well as mitigate fructose-induced hepatotoxicity in ChREBP-deficient mice. Taken together, our findings establish a critical role of liver ChREBP in coping with hepatic fructose stress and protecting from hepatotoxicity by regulating LPK. Full Article
ato Acyl-ghrelin Is Permissive for the Normal Counterregulatory Response to Insulin-Induced Hypoglycemia By diabetes.diabetesjournals.org Published On :: 2020-01-20T12:00:26-08:00 Insulin-induced hypoglycemia leads to far-ranging negative consequences in patients with diabetes. Components of the counterregulatory response (CRR) system that help minimize and reverse hypoglycemia and coordination between those components are well studied but not yet fully characterized. Here, we tested the hypothesis that acyl-ghrelin, a hormone that defends against hypoglycemia in a preclinical starvation model, is permissive for the normal CRR to insulin-induced hypoglycemia. Ghrelin knockout (KO) mice and wild-type (WT) littermates underwent an insulin bolus-induced hypoglycemia test and a low-dose hyperinsulinemic-hypoglycemic clamp procedure. Clamps also were performed in ghrelin-KO mice and C57BL/6N mice administered the growth hormone secretagogue receptor agonist HM01 or vehicle. Results show that hypoglycemia, as induced by an insulin bolus, was more pronounced and prolonged in ghrelin-KO mice, supporting previous studies suggesting increased insulin sensitivity upon ghrelin deletion. Furthermore, during hyperinsulinemic-hypoglycemic clamps, ghrelin-KO mice required a 10-fold higher glucose infusion rate (GIR) and exhibited less robust corticosterone and growth hormone responses. Conversely, HM01 administration, which reduced the GIR required by ghrelin-KO mice during the clamps, increased plasma corticosterone and growth hormone. Thus, our data suggest that endogenously produced acyl-ghrelin not only influences insulin sensitivity but also is permissive for the normal CRR to insulin-induced hypoglycemia. Full Article
ato Estimating Levels of Illegal Logging and the Related Trade: Lessons from the Indicators Project By feedproxy.google.com Published On :: Thu, 15 Oct 2015 13:30:02 +0000 Invitation Only Research Event 9 November 2015 - 9:00am to 5:00pm Chatham House, London The aim of the meeting is to identify ways to improve monitoring of illegal logging and the trade in illegal timber. Building on the experiences of Chatham House’s project Indicators of Illegal Logging, the discussions will focus on the data needs of particular end users and methodological challenges for estimating levels of illegality. The potential for improved coordination and collaboration between global efforts to monitor trade flows will also be considered.Attendance at this event is by invitation only. Department/project Energy, Environment and Resources Programme, Improving Forest Governance and Tackling Illegal Logging and Deforestation Adelaide Glover Digital Coordinator, Energy, Environment and Resources Programme Email Full Article
ato Starbucks operator Caribbean Coffee floats US$30m bond By jamaica-gleaner.com Published On :: Wed, 06 May 2020 00:06:12 -0500 Caribbean Coffee Traders Limited, CCTL, is moving ahead with plans for a US$30-million bond placement, the proceeds from which it will likely use to expand the Starbucks chain it operates in three regional markets. The initial franchise agreement... Full Article
ato The EU Cannot Build a Foreign Policy on Regulatory Power Alone By feedproxy.google.com Published On :: Tue, 11 Feb 2020 16:33:26 +0000 11 February 2020 Alan Beattie Associate Fellow, Global Economy and Finance Programme and Europe Programme @alanbeattie LinkedIn Brussels will find its much-vaunted heft in setting standards cannot help it advance its geopolitical interests. 2020-02-11-Leyen.jpg EU Commission President Ursula von der Leyen speaks at the European Parliament in Strasbourg in February. Photo: Getty Images. There are two well-established ideas in trade. Individually, they are correct. Combined, they can lead to a conclusion that is unfortunately wrong.The first idea is that, across a range of economic sectors, the EU and the US have been engaged in a battle to have their model of regulation accepted as the global one, and that the EU is generally winning.The second is that governments can use their regulatory power to extend strategic and foreign policy influence.The conclusion would seem to be that the EU, which has for decades tried to develop a foreign policy, should be able to use its superpower status in regulation and trade to project its interests and its values abroad.That’s the theory. It’s a proposition much welcomed by EU policymakers, who know they are highly unlikely any time soon to acquire any of the tools usually required to run an effective foreign policy.The EU doesn’t have an army it can send into a shooting war, enough military or political aid to prop up or dispense of governments abroad, or a centralized intelligence service. Commission President Ursula von der Leyen has declared her outfit to be a ‘geopolitical commission’, and is casting about for any means of making that real.Through the ‘Brussels effect’ whereby European rules and standards are exported via both companies and governments, the EU has indeed won many regulatory battles with the US.Its cars, chemicals and product safety regulations are more widely adopted round the world than their American counterparts. In the absence of any coherent US offering, bar some varied state-level systems, the General Data Protection Regulation (GDPR) is the closest thing the world has to a single model for data privacy, and variants of it are being adopted by dozens of countries.The problem is this. Those parts of global economic governance where the US is dominant – particularly the dollar payments system – are highly conducive to projecting US power abroad. The extraterritorial reach of secondary sanctions, plus the widespread reliance of banks and companies worldwide on dollar funding – and hence the American financial system – means that the US can precisely target its influence.The EU can enforce trade sanctions, but not in such a powerful and discriminatory way, and it will always be outgunned by the US. Donald Trump could in effect force European companies to join in his sanctions on Iran when he pulled out of the nuclear deal, despite EU legislation designed to prevent their businesses being bullied. He can go after the chief financial officer of Huawei for allegedly breaching those sanctions.By contrast, the widespread adoption of GDPR or data protection regimes inspired by it may give the EU a warm glow of satisfaction, but it cannot be turned into a geopolitical tool in the same way.Nor, necessarily, does it particularly benefit the EU economy. Europe’s undersized tech sector seems unlikely to unduly benefit from the fact that data protection rules were written in the EU. Indeed, one common criticism of the regulations is that they entrench the power of incumbent tech giants like Google.There is a similar pattern at work in the adoption of new technologies such as artificial intelligence and the Internet of Things. In that field, the EU and its member states are also facing determined competition from China, which has been pushing its technologies and standards through forums such as the International Telecommunication Union.The EU has been attempting to write international rules for the use of AI which it hopes to be widely adopted. But again, these are a constraint on the use of new technologies largely developed by others, not the control of innovation.By contrast, China has created a vast domestic market in technologies like facial recognition and unleashed its own companies on it. The resulting surveillance kit can then be marketed to emerging market governments as part of China’s enduring foreign policy campaign to build up supporters in the developing world.If it genuinely wants to turn its economic power into geopolitical influence – and it’s not entirely clear what it would do with it if it did – the EU needs to recognize that not all forms of regulatory and trading dominance are the same.Providing public goods to the world economy is all very well. But unless they are so particular in nature that they project uniquely European values and interests, that makes the EU a supplier of useful plumbing but not a global architect of power.On the other hand, it could content itself with its position for the moment. It could recognize that not until enough hard power – guns, intelligence, money – is transferred from the member states to the centre, or until the member states start acting collectively, will the EU genuinely become a geopolitical force. Speaking loudly and carrying a stick of foam rubber is rarely a way to gain credibility in international relations.This article is part of a series of publications and roundtable discussions in the Chatham House Global Trade Policy Forum. Full Article
ato Atomic force microscopy-based characterization of the interaction of PriA helicase with stalled DNA replication forks [DNA and Chromosomes] By feedproxy.google.com Published On :: 2020-05-01T00:06:09-07:00 In bacteria, the restart of stalled DNA replication forks requires the DNA helicase PriA. PriA can recognize and remodel abandoned DNA replication forks, unwind DNA in the 3'-to-5' direction, and facilitate the loading of the helicase DnaB onto the DNA to restart replication. Single-stranded DNA–binding protein (SSB) is typically present at the abandoned forks, but it is unclear how SSB and PriA interact, although it has been shown that the two proteins interact both physically and functionally. Here, we used atomic force microscopy to visualize the interaction of PriA with DNA substrates with or without SSB. These experiments were done in the absence of ATP to delineate the substrate recognition pattern of PriA before its ATP-catalyzed DNA-unwinding reaction. These analyses revealed that in the absence of SSB, PriA binds preferentially to a fork substrate with a gap in the leading strand. Such a preference has not been observed for 5'- and 3'-tailed duplexes, suggesting that it is the fork structure that plays an essential role in PriA's selection of DNA substrates. Furthermore, we found that in the absence of SSB, PriA binds exclusively to the fork regions of the DNA substrates. In contrast, fork-bound SSB loads PriA onto the duplex DNA arms of forks, suggesting a remodeling of PriA by SSB. We also demonstrate that the remodeling of PriA requires a functional C-terminal domain of SSB. In summary, our atomic force microscopy analyses reveal key details in the interactions between PriA and stalled DNA replication forks with or without SSB. Full Article
ato Cambios en el Panorama de Control Migratorio Interno Durante la Administración Trump By www.migrationpolicy.org Published On :: Thu, 12 Jul 2018 13:32:46 -0400 Experts on this Spanish language webinar examine the operation of today’s interior immigration enforcement system and how state and local governments, civil society, and consulates are responding. Full Article
ato Cambios en el Panorama de Control Migratorio Interno Durante la Administración Trump By www.migrationpolicy.org Published On :: Tue, 03 Jul 2018 10:48:49 -0400 A Spanish language webinar examining the operation of today’s interior enforcement system and how state and local governments, civil society, and consulates are responding. Full Article
ato French Philosopher Latour Urges No Return to Pre-Lockdown Normal By feeds.socialpsychology.org Published On :: 2020-05-08T13:32:04-04:00 Source: Reuters - World NewsWhat if rather than hurrying back to a pre-lockdown "business as usual" to revive economies hammered by the coronavirus pandemic, countries built a new normal where the fight against climate change was paramount? Full Article
ato Endothelial Dysfunction in Diabetes: The role of reparatory mechanisms By care.diabetesjournals.org Published On :: 2011-05-01 Angelo AvogaroMay 1, 2011; 34:S285-S290Hypertension Full Article
ato Lipid and Inflammatory Cardiovascular Risk Worsens Over 3 Years in Youth With Type 2 Diabetes: The TODAY clinical trial By care.diabetesjournals.org Published On :: 2013-06-01 TODAY Study GroupJun 1, 2013; 36:1758-1764TODAY Study Full Article
ato Standardizing Clinically Meaningful Outcome Measures Beyond HbA1c for Type 1 Diabetes: A Consensus Report of the American Association of Clinical Endocrinologists, the American Association of Diabetes Educators, the American Diabetes Association, the Endo By care.diabetesjournals.org Published On :: 2017-12-01 Gina AgiostratidouDec 1, 2017; 40:1622-1630Continuous Glucose Monitoring and Risk of Hypoglycemia Full Article
ato Glucose Management Indicator (GMI): A New Term for Estimating A1C From Continuous Glucose Monitoring By care.diabetesjournals.org Published On :: 2018-11-01 Richard M. BergenstalNov 1, 2018; 41:2275-2280Perspectives in Care Full Article