by

Secretory Functions of Macrophages in the Human Pancreatic Islet are Regulated by Endogenous Purinergic Signaling

Endocrine cells of the pancreatic islet interact with their microenvironment to maintain tissue homeostasis. Communication with local macrophages is particularly important in this context, but the homeostatic functions of human islet macrophages are not known. Here we show that the human islet contains macrophages in perivascular regions that are the main local source of the anti-inflammatory cytokine Il-10 and the metalloproteinase MMP9. Macrophage production and secretion of these homeostatic factors is controlled by endogenous purinergic signals. In obese and diabetic states, macrophage expression of purinergic receptors, MMP9, and Il-10 is reduced. We propose that in those states exacerbated beta cell activity due to increased insulin demand and increased cell death produces high levels of ATP that downregulate purinergic receptor expression. Loss of ATP sensing in macrophages may reduce their secretory capacity.




by

Empagliflozin Ameliorates Obesity-Related Cardiac Dysfunction by Regulating Sestrin2-Mediated AMPK-mTOR Signaling and Redox Homeostasis in High-Fat Induced Obese Mice

Sodium glucose co-transporter-2 inhibitors (SGLT2i) have favorable cardiovascular outcomes in diabetic patients. However, whether SGLT2i can improve obesity-related cardiac dysfunction is unknown. Sestrin2 is a novel stress-inducible protein that regulates AMPK-mTOR and suppresses oxidative damage. The aim of this study was to determine whether empagliflozin (EMPA) improves obesity-related cardiac dysfunction via regulating Sestrin2-mediated pathways in diet-induced obesity. C57BL/6J mice and Sestrin2 knockout mice were fed a high-fat diet (HFD) for 12 weeks and then treated with or without EMPA (10 mg/kg) for 8 weeks. Treating HFD-fed C57BL/6J mice with EMPA reduced body weight, whole-body fat, and improved metabolic disorders. Furthermore, EMPA improved myocardial hypertrophy/fibrosis and cardiac function, and reduced cardiac fat accumulation and mitochondria injury. Additionally, EMPA significantly augmented Sestrin2 levels, increased AMPK and eNOS phosphorylation, but inhibited Akt and mTOR phosphorylation. These beneficial effects were partially attenuated in HFD-fed Sestrin2 knockout mice. Intriguingly, EMPA treatment enhanced the Nrf2/HO-1-mediated oxidative stress response, suggesting antioxidant and anti-inflammatory activity. Thus, EMPA improved obesity-related cardiac dysfunction via regulating Sestrin2-mediated AMPK-mTOR signaling and maintaining redox homeostasis. These findings provide a novel mechanism for the cardiovascular protection of SGLT2i in obesity.




by

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.




by

Transketolase Deficiency in Adipose Tissues Protects Mice From Diet-Induced Obesity by Promoting Lipolysis

Obesity has recently become a prevalent health threat worldwide. Although emerging evidence has suggested a strong link between the pentose phosphate pathway (PPP) and obesity, the role of transketolase (TKT), an enzyme in the non-oxidative branch of the PPP which connects PPP and glycolysis, remains obscure in adipose tissues. In this study, we specifically delete TKT in mouse adipocytes and find no obvious phenotype upon normal diet feeding. However, adipocyte TKT abrogation attenuates high fat diet (HFD)-induced obesity, reduces hepatic steatosis, improves glucose tolerance, alleviates insulin resistance and increases energy expenditure. Mechanistically, TKT deficiency accumulates non-oxidative PPP metabolites, decreases glycolysis and pyruvate input into the mitochondria, leading to increased lipolytic enzyme gene expression and enhanced lipolysis, fatty acid oxidation and mitochondrial respiration. Therefore, our data not only identify a novel role of TKT in regulating lipolysis and obesity, but also suggest limiting glucose-derived carbon into the mitochondria induces lipid catabolism and energy expenditure.




by

The Metabolic Responses to 24-h Fasting and Mild Cold Exposure in Overweight Individuals are Correlated and Accompanied by Changes in FGF21 Concentration

A greater decrease in 24-h energy expenditure (24EE) during 24h fasting defines a thriftier metabolic phenotype prone to weight gain during overfeeding and resistant to weight loss during caloric restriction. As the thermogenic response to mild cold exposure (COLD) may similarly characterize this human phenotype identified by acute fasting conditions, we analyzed changes in 24EE and sleeping metabolic rate (SLEEP) in a whole-room indirect calorimeter during 24h fasting at thermoneutrality (24°C) and during energy balance both at thermoneutrality (24°C) and mild cold (19°C) in 20 healthy volunteers (80% male, age: 36.6±11.4y, percentage body fat: 34.8±10.5%). Greater decrease in 24EE during fasting (thriftier phenotype) was associated with less increase in 24EE during COLD, i.e. less cold-induced thermogenesis. Greater decreases in plasma fibroblast growth factor 21 (FGF21) after 24h fasting and after COLD were highly correlated and associated with greater decreases in SLEEP in both conditions. We conclude that the metabolic responses to short-term fasting and COLD are associated and mediated by the liver-derived hormone FGF21. Thus, the 24EE response to COLD further identifies the thrifty versus spendthrift phenotype, providing an additional setting to investigate the physiological mechanisms underlying the human metabolic phenotype and characterizing the individual susceptibility to weight change.




by

Repurposing Doxepin to Ameliorate Steatosis and Hyperglycemia by Activating FAM3A Signaling Pathway

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.




by

MANF Promotes Diabetic Corneal Epithelial Wound Healing and Nerve Regeneration by Attenuating Hyperglycemia-Induced Endoplasmic Reticulum Stress

Mesencephalic astrocyte-derived neurotrophic factor (MANF) is a neurotrophic factor widely expressed in mammalian tissues, and it exerts critical protective effects on neurons and other cell types in various disease models, such as those for diabetes. However, to date, the expression and roles of MANF in the cornea, with or without diabetic keratopathy (DK), remain unclear. Here, we demonstrate that MANF is abundantly expressed in normal corneal epithelial cells; however, MANF expression was significantly reduced in both unwounded and wounded corneal epithelium in streptozotocin-induced type 1 diabetic C57BL/6 mice. Recombinant human MANF significantly promoted normal and diabetic corneal epithelial wound healing and nerve regeneration. Furthermore, MANF inhibited hyperglycemia-induced endoplasmic reticulum (ER) stress and ER stress–mediated apoptosis. Attenuation of ER stress with 4-phenylbutyric acid (4-PBA) also ameliorated corneal epithelial closure and nerve regeneration. However, the beneficial effects of MANF and 4-PBA were abolished by an Akt inhibitor and Akt-specific small interfering RNA (siRNA). Finally, we reveal that the subconjunctival injection of MANF-specific siRNA prevents corneal epithelial wound healing and nerve regeneration. Our results provide important evidence that hyperglycemia-suppressed MANF expression may contribute to delayed corneal epithelial wound healing and impaired nerve regeneration by increasing ER stress, and MANF may be a useful therapeutic modality for treating DK.




by

Stress-Induced Translational Regulation Mediated by RNA Binding Proteins: Key Links to {beta}-Cell Failure in Diabetes

In type 2 diabetes, β-cells endure various forms of cellular stress, including oxidative stress and endoplasmic reticulum stress, secondary to increased demand for insulin production and extracellular perturbations, including hyperglycemia. Chronic exposure to stress causes impaired insulin secretion, apoptosis, and loss of cell identity, and a combination of these processes leads to β-cell failure and severe hyperglycemia. Therefore, a better understanding of the molecular mechanisms underlying stress responses in β-cells promises to reveal new therapeutic opportunities for type 2 diabetes. In this perspective, we discuss posttranscriptional control of gene expression as a critical, but underappreciated, layer of regulation with broad importance during stress responses. Specifically, regulation of mRNA translation occurs pervasively during stress to activate gene expression programs; however, the convenience of RNA sequencing has caused translational regulation to be overlooked compared with transcriptional controls. We highlight the role of RNA binding proteins in shaping selective translational regulation during stress and the mechanisms underlying this level of regulation. A growing body of evidence indicates that RNA binding proteins control an array of processes in β-cells, including the synthesis and secretion of insulin. Therefore, systematic evaluations of translational regulation and the upstream factors shaping this level of regulation are critical areas of investigation to expand our understanding of β-cell failure in type 2 diabetes.




by

Proline-rich 11 (PRR11) drives F-actin assembly by recruiting the actin-related protein 2/3 complex in human non-small cell lung carcinoma [DNA and Chromosomes]

The actin cytoskeleton is extremely dynamic and supports diverse cellular functions in many physiological and pathological processes, including tumorigenesis. However, the mechanisms that regulate the actin-related protein 2/3 (ARP2/3) complex and thereby promote actin polymerization and organization in cancer cells are not well-understood. We previously implicated the proline-rich 11 (PRR11) protein in lung cancer development. In this study, using immunofluorescence staining, actin polymerization assays, and siRNA-mediated gene silencing, we uncovered that cytoplasmic PRR11 is involved in F-actin polymerization and organization. We found that dysregulation of PRR11 expression results in F-actin rearrangement and nuclear instability in non-small cell lung cancer cells. Results from molecular mechanistic experiments indicated that PRR11 associates with and recruits the ARP2/3 complex, facilitates F-actin polymerization, and thereby disrupts the F-actin cytoskeleton, leading to abnormal nuclear lamina assembly and chromatin reorganization. Inhibition of the ARP2/3 complex activity abolished irregular F-actin polymerization, lamina assembly, and chromatin reorganization due to PRR11 overexpression. Notably, experiments with truncated PRR11 variants revealed that PRR11 regulates F-actin through different regions. We found that deletion of either the N or C terminus of PRR11 abrogates its effects on F-actin polymerization and nuclear instability and that deletion of amino acid residues 100–184 or 100–200 strongly induces an F-actin structure called the actin comet tail, not observed with WT PRR11. Our findings indicate that cytoplasmic PRR11 plays an essential role in regulating F-actin assembly and nuclear stability by recruiting the ARP2/3 complex in human non-small cell lung carcinoma cells.




by

The mitochondrial protein PGAM5 suppresses energy consumption in brown adipocytes by repressing expression of uncoupling protein 1 [Metabolism]

Accumulating evidence suggests that brown adipose tissue (BAT) is a potential therapeutic target for managing obesity and related diseases. PGAM family member 5, mitochondrial serine/threonine protein phosphatase (PGAM5), is a protein phosphatase that resides in the mitochondria and regulates many biological processes, including cell death, mitophagy, and immune responses. Because BAT is a mitochondria-rich tissue, we have hypothesized that PGAM5 has a physiological function in BAT. We previously reported that PGAM5-knockout (KO) mice are resistant to severe metabolic stress. Importantly, lipid accumulation is suppressed in PGAM5-KO BAT, even under unstressed conditions, raising the possibility that PGAM5 deficiency stimulates lipid consumption. However, the mechanism underlying this observation is undetermined. Here, using an array of biochemical approaches, including quantitative RT-PCR, immunoblotting, and oxygen consumption assays, we show that PGAM5 negatively regulates energy expenditure in brown adipocytes. We found that PGAM5-KO brown adipocytes have an enhanced oxygen consumption rate and increased expression of uncoupling protein 1 (UCP1), a protein that increases energy consumption in the mitochondria. Mechanistically, we found that PGAM5 phosphatase activity and intramembrane cleavage are required for suppression of UCP1 activity. Furthermore, utilizing a genome-wide siRNA screen in HeLa cells to search for regulators of PGAM5 cleavage, we identified a set of candidate genes, including phosphatidylserine decarboxylase (PISD), which catalyzes the formation of phosphatidylethanolamine at the mitochondrial membrane. Taken together, these results indicate that PGAM5 suppresses mitochondrial energy expenditure by down-regulating UCP1 expression in brown adipocytes and that its phosphatase activity and intramembrane cleavage are required for UCP1 suppression.




by

The focal adhesion protein kindlin-2 controls mitotic spindle assembly by inhibiting histone deacetylase 6 and maintaining {alpha}-tubulin acetylation [Signal Transduction]

Kindlins are focal adhesion proteins that regulate integrin activation and outside-in signaling. The kindlin family consists of three members, kindlin-1, -2, and -3. Kindlin-2 is widely expressed in multiple cell types, except those from the hematopoietic lineage. A previous study has reported that the Drosophila Fit1 protein (an ortholog of kindlin-2) prevents abnormal spindle assembly; however, the mechanism remains unknown. Here, we show that kindlin-2 maintains spindle integrity in mitotic human cells. The human neuroblastoma SH-SY5Y cell line expresses only kindlin-2, and we found that when SH-SY5Y cells are depleted of kindlin-2, they exhibit pronounced spindle abnormalities and delayed mitosis. Of note, acetylation of α-tubulin, which maintains microtubule flexibility and stability, was diminished in the kindlin-2–depleted cells. Mechanistically, we found that kindlin-2 maintains α-tubulin acetylation by inhibiting the microtubule-associated deacetylase histone deacetylase 6 (HDAC6) via a signaling pathway involving AKT Ser/Thr kinase (AKT)/glycogen synthase kinase 3β (GSK3β) or paxillin. We also provide evidence that prolonged hypoxia down-regulates kindlin-2 expression, leading to spindle abnormalities not only in the SH-SY5Y cell line, but also cell lines derived from colon and breast tissues. The findings of our study highlight that kindlin-2 regulates mitotic spindle assembly and that this process is perturbed in cancer cells in a hypoxic environment.




by

Inhibition of glycosphingolipid biosynthesis reverts multidrug resistance by differentially modulating ABC transporters in chronic myeloid leukemias [Cell Biology]

Multidrug resistance (MDR) in cancer arises from cross-resistance to structurally- and functionally-divergent chemotherapeutic drugs. In particular, MDR is characterized by increased expression and activity of ATP-binding cassette (ABC) superfamily transporters. Sphingolipids are substrates of ABC proteins in cell signaling, membrane biosynthesis, and inflammation, for example, and their products can favor cancer progression. Glucosylceramide (GlcCer) is a ubiquitous glycosphingolipid (GSL) generated by glucosylceramide synthase, a key regulatory enzyme encoded by the UDP-glucose ceramide glucosyltransferase (UGCG) gene. Stressed cells increase de novo biosynthesis of ceramides, which return to sub-toxic levels after UGCG mediates incorporation into GlcCer. Given that cancer cells seem to mobilize UGCG and have increased GSL content for ceramide clearance, which ultimately contributes to chemotherapy failure, here we investigated how inhibition of GSL biosynthesis affects the MDR phenotype of chronic myeloid leukemias. We found that MDR is associated with higher UGCG expression and with a complex GSL profile. UGCG inhibition with the ceramide analog d-threo-1-(3,4,-ethylenedioxy)phenyl-2-palmitoylamino-3-pyrrolidino-1-propanol (EtDO-P4) greatly reduced GSL and monosialotetrahexosylganglioside levels, and co-treatment with standard chemotherapeutics sensitized cells to mitochondrial membrane potential loss and apoptosis. ABC subfamily B member 1 (ABCB1) expression was reduced, and ABCC-mediated efflux activity was modulated by competition with nonglycosylated ceramides. Consistently, inhibition of ABCC-mediated transport reduced the efflux of exogenous C6-ceramide. Overall, UGCG inhibition impaired the malignant glycophenotype of MDR leukemias, which typically overcomes drug resistance through distinct mechanisms. This work sheds light on the involvement of GSL in chemotherapy failure, and its findings suggest that targeted GSL modulation could help manage MDR leukemias.




by

Structural basis of specific inhibition of extracellular activation of pro- or latent myostatin by the monoclonal antibody SRK-015 [Molecular Biophysics]

Myostatin (or growth/differentiation factor 8 (GDF8)) is a member of the transforming growth factor β superfamily of growth factors and negatively regulates skeletal muscle growth. Its dysregulation is implicated in muscle wasting diseases. SRK-015 is a clinical-stage mAb that prevents extracellular proteolytic activation of pro- and latent myostatin. Here we used integrated structural and biochemical approaches to elucidate the molecular mechanism of antibody-mediated neutralization of pro-myostatin activation. The crystal structure of pro-myostatin in complex with 29H4-16 Fab, a high-affinity variant of SRK-015, at 2.79 Å resolution revealed that the antibody binds to a conformational epitope in the arm region of the prodomain distant from the proteolytic cleavage sites. This epitope is highly sequence-divergent, having only limited similarity to other closely related members of the transforming growth factor β superfamily. Hydrogen/deuterium exchange MS experiments indicated that antibody binding induces conformational changes in pro- and latent myostatin that span the arm region, the loops contiguous to the protease cleavage sites, and the latency-associated structural elements. Moreover, negative-stain EM with full-length antibodies disclosed a stable, ring-like antigen–antibody structure in which the two Fab arms of a single antibody occupy the two arm regions of the prodomain in the pro- and latent myostatin homodimers, suggesting a 1:1 (antibody:myostatin homodimer) binding stoichiometry. These results suggest that SRK-015 binding stabilizes the latent conformation and limits the accessibility of protease cleavage sites within the prodomain. These findings shed light on approaches that specifically block the extracellular activation of growth factors by targeting their precursor forms.




by

Structural insight into the recognition of pathogen-derived phosphoglycolipids by C-type lectin receptor DCAR [Protein Structure and Folding]

The C-type lectin receptors (CLRs) form a family of pattern recognition receptors that recognize numerous pathogens, such as bacteria and fungi, and trigger innate immune responses. The extracellular carbohydrate-recognition domain (CRD) of CLRs forms a globular structure that can coordinate a Ca2+ ion, allowing receptor interactions with sugar-containing ligands. Although well-conserved, the CRD fold can also display differences that directly affect the specificity of the receptors for their ligands. Here, we report crystal structures at 1.8–2.3 Å resolutions of the CRD of murine dendritic cell-immunoactivating receptor (DCAR, or Clec4b1), the CLR that binds phosphoglycolipids such as acylated phosphatidyl-myo-inositol mannosides (AcPIMs) of mycobacteria. Using mutagenesis analysis, we identified critical residues, Ala136 and Gln198, on the surface surrounding the ligand-binding site of DCAR, as well as an atypical Ca2+-binding motif (Glu-Pro-Ser/EPS168–170). By chemically synthesizing a water-soluble ligand analog, inositol-monophosphate dimannose (IPM2), we confirmed the direct interaction of DCAR with the polar moiety of AcPIMs by biolayer interferometry and co-crystallization approaches. We also observed a hydrophobic groove extending from the ligand-binding site that is in a suitable position to interact with the lipid portion of whole AcPIMs. These results suggest that the hydroxyl group-binding ability and hydrophobic groove of DCAR mediate its specific binding to pathogen-derived phosphoglycolipids such as mycobacterial AcPIMs.




by

Structural basis of cell-surface signaling by a conserved sigma regulator in Gram-negative bacteria [Molecular Biophysics]

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.




by

Glycation-mediated inter-protein cross-linking is promoted by chaperone-client complexes of {alpha}-crystallin: Implications for lens aging and presbyopia [Glycobiology and Extracellular Matrices]

Lens proteins become increasingly cross-linked through nondisulfide linkages during aging and cataract formation. One mechanism that has been implicated in this cross-linking is glycation through formation of advanced glycation end products (AGEs). Here, we found an age-associated increase in stiffness in human lenses that was directly correlated with levels of protein–cross-linking AGEs. α-Crystallin in the lens binds to other proteins and prevents their denaturation and aggregation through its chaperone-like activity. Using a FRET-based assay, we examined the stability of the αA-crystallin–γD-crystallin complex for up to 12 days and observed that this complex is stable in PBS and upon incubation with human lens–epithelial cell lysate or lens homogenate. Addition of 2 mm ATP to the lysate or homogenate did not decrease the stability of the complex. We also generated complexes of human αA-crystallin or αB-crystallin with alcohol dehydrogenase or citrate synthase by applying thermal stress. Upon glycation under physiological conditions, the chaperone–client complexes underwent greater extents of cross-linking than did uncomplexed protein mixtures. LC-MS/MS analyses revealed that the levels of cross-linking AGEs were significantly higher in the glycated chaperone–client complexes than in glycated but uncomplexed protein mixtures. Mouse lenses subjected to thermal stress followed by glycation lost resilience more extensively than lenses subjected to thermal stress or glycation alone, and this loss was accompanied by higher protein cross-linking and higher cross-linking AGE levels. These results uncover a protein cross-linking mechanism in the lens and suggest that AGE-mediated cross-linking of α-crystallin–client complexes could contribute to lens aging and presbyopia.




by

A Legionella effector kinase is activated by host inositol hexakisphosphate [Enzymology]

The transfer of a phosphate from ATP to a protein substrate, a modification known as protein phosphorylation, is catalyzed by protein kinases. Protein kinases play a crucial role in virtually every cellular activity. Recent studies of atypical protein kinases have highlighted the structural similarity of the kinase superfamily despite notable differences in primary amino acid sequence. Here, using a bioinformatics screen, we searched for putative protein kinases in the intracellular bacterial pathogen Legionella pneumophila and identified the type 4 secretion system effector Lpg2603 as a remote member of the protein kinase superfamily. Employing an array of biochemical and structural biology approaches, including in vitro kinase assays and isothermal titration calorimetry, we show that Lpg2603 is an active protein kinase with several atypical structural features. Importantly, we found that the eukaryote-specific host signaling molecule inositol hexakisphosphate (IP6) is required for Lpg2603 kinase activity. Crystal structures of Lpg2603 in the apo-form and when bound to IP6 revealed an active-site rearrangement that allows for ATP binding and catalysis. Our results on the structure and activity of Lpg2603 reveal a unique mode of regulation of a protein kinase, provide the first example of a bacterial kinase that requires IP6 for its activation, and may aid future work on the function of this effector during Legionella pathogenesis.




by

Structural basis of substrate recognition and catalysis by fucosyltransferase 8 [Protein Structure and Folding]

Fucosylation of the innermost GlcNAc of N-glycans by fucosyltransferase 8 (FUT8) is an important step in the maturation of complex and hybrid N-glycans. This simple modification can dramatically affect the activities and half-lives of glycoproteins, effects that are relevant to understanding the invasiveness of some cancers, development of mAb therapeutics, and the etiology of a congenital glycosylation disorder. The acceptor substrate preferences of FUT8 are well-characterized and provide a framework for understanding N-glycan maturation in the Golgi; however, the structural basis of these substrate preferences and the mechanism through which catalysis is achieved remain unknown. Here we describe several structures of mouse and human FUT8 in the apo state and in complex with GDP, a mimic of the donor substrate, and with a glycopeptide acceptor substrate at 1.80–2.50 Å resolution. These structures provide insights into a unique conformational change associated with donor substrate binding, common strategies employed by fucosyltransferases to coordinate GDP, features that define acceptor substrate preferences, and a likely mechanism for enzyme catalysis. Together with molecular dynamics simulations, the structures also revealed how FUT8 dimerization plays an important role in defining the acceptor substrate-binding site. Collectively, this information significantly builds on our understanding of the core fucosylation process.




by

The Incretin Approach for Diabetes Treatment: Modulation of Islet Hormone Release by GLP-1 Agonism

Jens Juul Holst
Dec 1, 2004; 53:S197-S204
Section V: The Incretin Pathway




by

Evidence Against an Important Role of Plasma Insulin and Glucagon Concentrations in the Increase in EGP Caused by SGLT2 Inhibitors

Mariam Alatrach
Apr 1, 2020; 69:681-688
Pathophysiology




by

Differentiation of Diabetes by Pathophysiology, Natural History, and Prognosis

Jay S. Skyler
Feb 1, 2017; 66:241-255
Perspectives in Diabetes




by

How changes to drug prohibition could be good for the UK—an essay by Molly Meacher and Nick Clegg




by

ICC’s Influence Can Be Strengthened by Ukraine’s Case

22 April 2020

Kateryna Busol

Robert Bosch Stiftung Academy Fellow, Russia and Eurasia Programme
Second in a two-part series analysing why Ukraine’s attempts at international justice are worth taking - and outlining how the impact goes far beyond just the Russia-Ukraine conflict. Part two examines Ukraine’s appeal to the International Criminal Court (ICC) to seek individual criminal responsibility of the alleged perpetrators of the gravest crimes in occupied Crimea and eastern Ukraine.

2020-04-23-Ukraine-Anniversary-Conflict

Marking the Day of The National Flag of Ukraine, a day before celebrations of the anniversary of state independence. Photo by ANATOLII STEPANOV/AFP via Getty Images.

The recognition by Ukraine of the jurisdiction of the International Criminal Court (ICC) to consider grave crimes allegedly perpetrated in its territory has led to the ICC Prosecutor’s preliminary examination identifying a wave of alleged war crimes and crimes against humanity.

There are claims of persecution, forced conscription, deportation, sham trials, enforced disappearances, and property seizure - in Crimea. As well as killings, torture, inhuman treatment, sexual violence, and indiscriminate shelling - in Donbas. The court now needs to decide whether to open a full investigation which could lead to charges against specific individuals, as in the trial currently taking place in the Netherlands over MH-17.

However, the ICC does remain a court of last resort as Ukraine retains the principal power to prosecute grave violations perpetrated in its eastern regions and Crimea, with the court only stepping in if Ukraine (or another court with jurisdiction) is either unwilling or unable to do so.

As the evidence mounts up, Ukrainian investigators, prosecutors and judges are becoming more open to cooperation with foreign experts, law firms, human rights NGOs and younger domestic professionals - a significant proportion of whom are women.

Transformation shows determination

This is an unusual shift, given the rigid hierarchical nature of post-Soviet institutions, with elderly males in most of the top positions. The transformation shows the determination to see perpetrators of crimes in Crimea and Donbas tried by the ICC, with joint professional development trainings and joint communications about the alleged crimes.

Ukraine has also been strengthening its institutions. The Prosecutor’s Office of the Autonomous Republic of Crimea has been improving quality control of its war crime proceedings, and has taken a strong pro-ICC stance. The Office of the Prosecutor General established a special department to monitor the armed conflict proceedings, and two specialised war crime units have been formed in Donbas.

Although too early to assess progress - given recent prosecution reform and that much-needed legislation on international crimes is still pending – these are promising signs of Ukraine’s intent to take a specialised approach to armed conflict violations. And Ukrainian civil society organisations are also playing a more important role, documenting alleged crimes and sending evidence to the ICC.

Any intervention by the ICC in Ukraine also has a considerable impact on the wider dynamics of addressing international crimes, further extending the court’s reach beyond a focus on Africa which has attracted widespread criticism since it began in 2002.

The ICC has already opened investigations in Georgia, Bangladesh/Myanmar, and Afghanistan, with preliminary examinations in Colombia, Venezuela, Iraq/UK, Palestine, and The Philippines. But the Ukrainian case would further develop the European subtleties of the court’s jurisprudence.

Although the ICC is currently investigating the 2008 Russia-Georgia war, the active phase of that armed conflict lasted for just five days whereas Russia’s military involvement in Ukraine has been ongoing for the six years. The temporal difference in no way diminishes the suffering of victims and the necessity for the proper investigation, prosecution and compensation in the Georgian context.

And yet, going by even the preliminary findings of the ICC prosecutor, the spectrum of war crimes and crimes against humanity allegedly perpetrated in Ukraine is much wider. Some incidents, such as the illegal construction of the Crimean Bridge, is an amalgam of the violations against property, cultural heritage and the environment. Cumulatively, the Ukrainian and Georgian cases would substantially contribute to the development of the court’s emerging European lenses.

The Russia-Ukraine armed conflict is also the first instance of armed hostilities of such magnitude and duration in Europe since World War II and the Yugoslav Wars. The ICC’s readiness to take on such geopolitically challenging cases which leave itself open to attack will be tested.

But by examining new contexts - including Ukraine - the ICC would develop a more layered reading of the nature and scope of the crimes it works on. For example, alleged indoctrination and use of children by armed groups in eastern Ukraine is likely to differ from the known practices of abducting and recruiting child soldiers in Africa.

Investigating evidence of Russia’s persecution of pro-Ukrainian activists - forcing them out of Crimea - coupled with the creation of favourable conditions for Russian citizens to relocate to Crimea could lead to proving the existence of a policy of mass colonisation of the peninsula - adding new layers to the court’s jurisprudence on population displacement. And previously under-prosecuted crimes may come to the fore, such as attacks on cultural property or causing the destruction of the environment.

Although the ICC proceedings on Ukraine – along with those being held by the International Court of Justice (ICJ) - are unlikely to bring immediate results, Ukraine has developed an international adjudication strategy based on the available viable options and what can be practically delivered.

The simple act of a reputed international court outlining Russia’s alleged violations in Crimea and Donbas and naming those individually responsible would be an impactful achievement in itself, regardless of whether Russia pays any attention or compensation.

And any international judgments or those of domestic courts such as the Dutch MH-17 proceedings and Russia’s response - predicted to be non-compliance - is an important argument for continuing sanctions against Russia over its conduct in Ukraine.

The mutually reinforcing effect of both the Crimea and Donbas proceedings within Ukraine and at international courts should not be underestimated. These investigations into war crimes, terrorism and human rights issues are deeply relevant - not only for the conflict itself, but also for the development of international law.

Part One of this series assesses Ukraine’s efforts to hold Russia accountable as a state at the International Court of Justice (ICJ).




by

America's Coronavirus Response Is Shaped By Its Federal Structure

16 March 2020

Dr Leslie Vinjamuri

Dean, Queen Elizabeth II Academy for Leadership in International Affairs; Director, US and the Americas Programme
The apparent capacity of centralized state authority to respond effectively and rapidly is making headlines. In the United States, the opposite has been true.

2020-03-16-Coronavirus-America.jpg

Harvard asked its students to move out of their dorms due to the coronavirus risk, with all classes moving online. Photo by Maddie Meyer/Getty Images.

As coronavirus spreads across the globe, states grapple to find the ideal strategy for coping with the global pandemic. And, in China, Singapore, South Korea, the US, the UK, and Europe, divergent policies are a product of state capacity and legal authority, but they also reveal competing views about the optimal role of centralized state authority, federalism, and the private sector.

Although it is too soon to know the longer-term effects, the apparent capacity of centralized state authority in China, South Korea and Singapore to respond effectively and rapidly is making headlines. In the United States, the opposite has been true. 

America’s response is being shaped by its federal structure, a dynamic private sector, and a culture of civic engagement. In the three weeks since the first US case of coronavirus was confirmed, state leaders, public health institutions, corporations, universities and churches have been at the vanguard of the nation’s effort to mitigate its spread.

Images of safety workers in hazmat suits disinfecting offices of multinational corporations and university campuses populate American Facebook pages. The contrast to the White House effort to manage the message, downplay, then rapidly escalate its estimation of the crisis is stark.

Bewildering response

For European onlookers, the absence of a clear and focused response from the White House is bewildering. By the time President Donald Trump declared a national emergency, several state emergencies had already been called, universities had shifted to online learning, and churches had begun to close.

By contrast, in Italy, France, Spain and Germany, the state has led national efforts to shutter borders and schools. In the UK, schools are largely remaining open as Prime Minister Boris Johnson has declared a strategy defined by herd immunity, which hinges on exposing resilient populations to the virus.

But America has never shared Europe’s conviction that the state must lead. The Center for Disease Control and Prevention, the leading national public health institute and a US federal agency, has attempted to set a benchmark for assessing the crisis and advising the nation. But in this instance, its response has been slowed due to faults in the initial tests it attempted to rollout. The Federal Reserve has moved early to cut interest rates and cut them again even further this week.

But states were the real first movers in America’s response and have been using their authority to declare a state of emergency independent of the declaration of a national emergency. This has allowed states to mobilize critical resources, and to pressure cities into action. After several days delay and intense public pressure, New York Governor Andrew Cuomo forced New York City Mayor Bill de Blasio to close the city’s schools.

Declarations of state emergencies by individual states have given corporations, universities and churches the freedom and legitimacy to move rapidly, and ahead of the federal government, to halt the spread in their communities.

Washington state was the first to declare a state of emergency. Amazon, one of the state’s leading employers, quickly announced a halt to all international travel and, alongside Microsoft, donated $1million to a rapid-response Seattle-based emergency funds. States have nudged their corporations to be first movers in the sector’s coronavirus response. But corporations have willingly taken up the challenge, often getting ahead of state as well as federal action.

Google moved rapidly to announce a move allowing employees to work from home after California declared a state of emergency. Facebook soon followed with an even more stringent policy, insisting employees work from home. Both companies have also met with World Health Organization (WHO) officials to talk about responses, and provided early funding for WHO’s Solidarity Response Fund set up in partnership with the UN Foundation and the Swiss Philanthropy Foundation.

America’s leading research universities, uniquely positioned with in-house public health and legal expertise, have also been driving preventive efforts. Just days after Washington declared a state of emergency, the University of Washington became the first to announce an end to classroom teaching and move courses online. A similar pattern followed at Stanford, Harvard, Princeton and Columbia - each also following the declaration of a state of emergency.

In addition, the decision by the Church of the Latter Day Saints to cancel its services worldwide followed Utah’s declaration of a state of emergency.

The gaping hole in the US response has been the national government. President Trump’s declaration of a national emergency came late, and his decision to ban travel from Europe but - at least initially - exclude the UK, created uncertainty and concern that the White House response is as much driven by politics as evidence.

This may soon change, as the House of Representatives has passed a COVID-19 response bill that the Senate will consider. These moves are vital to supporting state and private efforts to mobilize an effective response to a national and global crisis.

Need for public oversight

In the absence of greater coordination and leadership from the centre, the US response will pale in comparison to China’s dramatic moves to halt the spread. The chaos across America’s airports shows the need for public oversight. As New York State Governor Cuomo pleaded for federal government support to build new hospitals, he said: ‘I can’t do it. You can’t leave it to the states.'

When it comes to global pandemics, we may be discovering that authoritarian states can have a short-term advantage, but already Iran’s response demonstrates that this is not universally the case. Over time, the record across authoritarian states as they tackle the coronavirus will become more apparent, and it is likely to be mixed.

Open societies remain essential. Prevention requires innovation, creativity, open sharing of information, and the ability to inspire and mobilize international cooperation. The state is certainly necessary, but it is not sufficient alone.




by

Cow’s milk allergy guidelines are not evidence based and are beset by conflicts of interest, researchers warn




by

Kazakhstan: Tested by Transition

Invitation Only Research Event

28 November 2019 - 1:30pm to 3:30pm

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

Event participants

Annette Bohr, Associate Fellow, Russia and Eurasia Programme, Chatham House
Kassymkhan Kapparov, Founder, Economist.kz
Joanna Lillis, Reporter, The Guardian, The Economist and The Independent
Kate Mallinson, Associate Fellow, Russia and Eurasia Programme, Chatham House
Dossym Satpayev, Director, Kazakhstan Risk Assessment Group; Member of the Presidium, Kazakhstan Council on International Relations
Chair: James Nixey, Head, Russia and Eurasia Programme, Chatham House

At face value at least, Central Asia’s wealthiest state has embarked on a bold experiment following the March 2019 decision by its founding father and long-standing ruler, Nursultan Nazarbayev, to resign from the presidency and initiate a managed political succession. A generational transition of this nature, untried in other former Soviet republics, brings with it high stakes.
 
As well as seeking to secure his own legacy, having dominated the country since before independence in 1991, Nazarbayev wants to ensure Kazakhstan does not depart from the course he has set while safeguarding Kazakhstan’s stability in the context of multiple and evolving domestic and international challenges. But this is easier said than done. Is Kazakhstan ready for the challenges of the future?
 
This event marks the launch of Chatham House’s major report Kazakhstan: Tested by Transition.

Department/project

Anna Morgan

Administrator, Ukraine Forum
+44 (0)20 7389 3274




by

Kazakhstan: Tested by Transition

27 November 2019

A partial handover of political power through an orchestrated transition takes Kazakhstan into uncharted territory. Will it be able to pursue modernization and reform, and break from its authoritarian past?

Annette Bohr

Associate Fellow, Russia and Eurasia Programme

Dr Nigel Gould-Davies

Associate Fellow, Russia and Eurasia Programme, Chatham House

Kate Mallinson

Associate Fellow, Russia and Eurasia Programme

James Nixey

Director, Russia and Eurasia Programme

Birgit Brauer

Analyst, Writer and Journalist Covering Central Asia

Nargis Kassenova

Senior Fellow, Davis Center for Russian and Eurasian Studies, Harvard University

Joanna Lillis

Kazakhstan-Based Journalist Reporting on Central Asia

Dosym Satpayev

Independent Political Analyst and the Director of the Kazakhstan Risks Assessment Group

Kazakhstan is at a turning point in its history. At face value, at least, Central Asia’s wealthiest state has embarked on a bold experiment following the March 2019 decision by its founding father and long-standing ruler, Nursultan Nazarbayev, to resign from the presidency and initiate a managed political succession. A generational transition of this nature, untried in other former Soviet republics, brings with it high stakes. As well as looking to secure his own legacy, having dominated the country since before independence in 1991, Nazarbayev seeks to ensure Kazakhstan does not depart from the course he has set, while safeguarding regime stability in the context of multiple and evolving domestic and international challenges. This is easier said than done.

The uncertainty around this project is substantial, especially considering a ‘rowback’ decree just seven months after Nazarbayev’s resignation, limiting the powers of his anointed successor, Kassym-Jomart Tokayev. How long can Tokayev credibly remain president considering such a transparent undermining of his authority? Is Nazarbayev, in fact, grooming his daughter, Dariga Nazarbayeva, another relative or a power player from outside the family for the leadership in the longer term? Will the ‘Kazakh tandem’ of Nazarbayev and Tokayev function effectively, or will tensions and conflicts arise between them as many claim is happening already? How will the leadership cope with the protest mood now manifest on the streets of Kazakhstan, and address the political and socio-economic grievances fuelling this discontent? How might the political transition play out if Nazarbayev were to suddenly exit the political scene altogether?And what is the long-term transition plan for the time when Nazarbayev has departed, and how effective will it be?

As Kazakhstan enters uncharted territory, the purpose of this report is twofold. First, to make the case for the West to devote more attention to Kazakhstan. The country’s relative importance in Central Asia, and as the constant focus of intense attention from China and Russia, suggests that the West is wrong to direct so little time and diplomatic effort and so few resources towards it. This is not so much a miscalculation (that would be to assume there had been a calculation in the first place) as a misstep through neglect, presupposing that the future will resemble the present – with Kazakhstan remaining stable internally, relatively inconsequential geopolitically but nevertheless a friendly ally to the West. In fact, the country’s trajectory over the next few years is of potentially strategic import. This is because even its political semi-transition presents the West with a rare opportunity to push back against the global rise of authoritarianism, in a state that is open to rational argument and economic logic.

The second function of the report is to serve as a well-intentioned message to the leadership of Kazakhstan. The research undertaken by the report’s eight authors shows that Kazakhstan is at risk of failing to achieve the goals its leadership has set for the country. As significant as it has been, the partial stepping aside of Nazarbayev by no means guarantees the modernization and renewal that he and his successor have promised. Far deeper political, economic and social reforms will be needed if Kazakhstan is to meet the growing challenges to its stability, prosperity and development. Street protests since Nazarbayev’s resignation have demonstrated a level of popular disaffection far higher than the authorities acknowledge. The leadership needs to bridge the disconnect between the rulers and the ruled and start listening to its people.

To avoid slipping into decline, and to resist external pressures and geopolitical overtures that could diminish the sovereignty that its leadership is so determined to safeguard, Kazakhstan needs new faces – innovators and reformers – throughout every level of the administration, as well as new ideas. This report is intended to help with the ‘ideas’ part of that proposition. It also includes a series of recommendations for Western governments and institutions and for the Kazakhstan government. 




by

ICC’s Influence Can Be Strengthened by Ukraine’s Case

22 April 2020

Kateryna Busol

Robert Bosch Stiftung Academy Fellow, Russia and Eurasia Programme
Second in a two-part series analysing why Ukraine’s attempts at international justice are worth taking - and outlining how the impact goes far beyond just the Russia-Ukraine conflict. Part two examines Ukraine’s appeal to the International Criminal Court (ICC) to seek individual criminal responsibility of the alleged perpetrators of the gravest crimes in occupied Crimea and eastern Ukraine.

2020-04-23-Ukraine-Anniversary-Conflict

Marking the Day of The National Flag of Ukraine, a day before celebrations of the anniversary of state independence. Photo by ANATOLII STEPANOV/AFP via Getty Images.

The recognition by Ukraine of the jurisdiction of the International Criminal Court (ICC) to consider grave crimes allegedly perpetrated in its territory has led to the ICC Prosecutor’s preliminary examination identifying a wave of alleged war crimes and crimes against humanity.

There are claims of persecution, forced conscription, deportation, sham trials, enforced disappearances, and property seizure - in Crimea. As well as killings, torture, inhuman treatment, sexual violence, and indiscriminate shelling - in Donbas. The court now needs to decide whether to open a full investigation which could lead to charges against specific individuals, as in the trial currently taking place in the Netherlands over MH-17.

However, the ICC does remain a court of last resort as Ukraine retains the principal power to prosecute grave violations perpetrated in its eastern regions and Crimea, with the court only stepping in if Ukraine (or another court with jurisdiction) is either unwilling or unable to do so.

As the evidence mounts up, Ukrainian investigators, prosecutors and judges are becoming more open to cooperation with foreign experts, law firms, human rights NGOs and younger domestic professionals - a significant proportion of whom are women.

Transformation shows determination

This is an unusual shift, given the rigid hierarchical nature of post-Soviet institutions, with elderly males in most of the top positions. The transformation shows the determination to see perpetrators of crimes in Crimea and Donbas tried by the ICC, with joint professional development trainings and joint communications about the alleged crimes.

Ukraine has also been strengthening its institutions. The Prosecutor’s Office of the Autonomous Republic of Crimea has been improving quality control of its war crime proceedings, and has taken a strong pro-ICC stance. The Office of the Prosecutor General established a special department to monitor the armed conflict proceedings, and two specialised war crime units have been formed in Donbas.

Although too early to assess progress - given recent prosecution reform and that much-needed legislation on international crimes is still pending – these are promising signs of Ukraine’s intent to take a specialised approach to armed conflict violations. And Ukrainian civil society organisations are also playing a more important role, documenting alleged crimes and sending evidence to the ICC.

Any intervention by the ICC in Ukraine also has a considerable impact on the wider dynamics of addressing international crimes, further extending the court’s reach beyond a focus on Africa which has attracted widespread criticism since it began in 2002.

The ICC has already opened investigations in Georgia, Bangladesh/Myanmar, and Afghanistan, with preliminary examinations in Colombia, Venezuela, Iraq/UK, Palestine, and The Philippines. But the Ukrainian case would further develop the European subtleties of the court’s jurisprudence.

Although the ICC is currently investigating the 2008 Russia-Georgia war, the active phase of that armed conflict lasted for just five days whereas Russia’s military involvement in Ukraine has been ongoing for the six years. The temporal difference in no way diminishes the suffering of victims and the necessity for the proper investigation, prosecution and compensation in the Georgian context.

And yet, going by even the preliminary findings of the ICC prosecutor, the spectrum of war crimes and crimes against humanity allegedly perpetrated in Ukraine is much wider. Some incidents, such as the illegal construction of the Crimean Bridge, is an amalgam of the violations against property, cultural heritage and the environment. Cumulatively, the Ukrainian and Georgian cases would substantially contribute to the development of the court’s emerging European lenses.

The Russia-Ukraine armed conflict is also the first instance of armed hostilities of such magnitude and duration in Europe since World War II and the Yugoslav Wars. The ICC’s readiness to take on such geopolitically challenging cases which leave itself open to attack will be tested.

But by examining new contexts - including Ukraine - the ICC would develop a more layered reading of the nature and scope of the crimes it works on. For example, alleged indoctrination and use of children by armed groups in eastern Ukraine is likely to differ from the known practices of abducting and recruiting child soldiers in Africa.

Investigating evidence of Russia’s persecution of pro-Ukrainian activists - forcing them out of Crimea - coupled with the creation of favourable conditions for Russian citizens to relocate to Crimea could lead to proving the existence of a policy of mass colonisation of the peninsula - adding new layers to the court’s jurisprudence on population displacement. And previously under-prosecuted crimes may come to the fore, such as attacks on cultural property or causing the destruction of the environment.

Although the ICC proceedings on Ukraine – along with those being held by the International Court of Justice (ICJ) - are unlikely to bring immediate results, Ukraine has developed an international adjudication strategy based on the available viable options and what can be practically delivered.

The simple act of a reputed international court outlining Russia’s alleged violations in Crimea and Donbas and naming those individually responsible would be an impactful achievement in itself, regardless of whether Russia pays any attention or compensation.

And any international judgments or those of domestic courts such as the Dutch MH-17 proceedings and Russia’s response - predicted to be non-compliance - is an important argument for continuing sanctions against Russia over its conduct in Ukraine.

The mutually reinforcing effect of both the Crimea and Donbas proceedings within Ukraine and at international courts should not be underestimated. These investigations into war crimes, terrorism and human rights issues are deeply relevant - not only for the conflict itself, but also for the development of international law.

Part One of this series assesses Ukraine’s efforts to hold Russia accountable as a state at the International Court of Justice (ICJ).




by

Serotonin Regulates Adult {beta}-Cell Mass by Stimulating Perinatal {beta}-Cell Proliferation

A sufficient β-cell mass is crucial for preventing diabetes, and perinatal β-cell proliferation is important in determining the adult β-cell mass. However, it is not yet known how perinatal β-cell proliferation is regulated. Here, we report that serotonin regulates β-cell proliferation through serotonin receptor 2B (HTR2B) in an autocrine/paracrine manner during the perinatal period. In β-cell–specific Tph1 knockout (Tph1 βKO) mice, perinatal β-cell proliferation was reduced along with the loss of serotonin production in β-cells. Adult Tph1 βKO mice exhibited glucose intolerance with decreased β-cell mass. Disruption of Htr2b in β-cells also resulted in decreased perinatal β-cell proliferation and glucose intolerance in adulthood. Growth hormone (GH) was found to induce serotonin production in β-cells through activation of STAT5 during the perinatal period. Thus, our results indicate that GH-GH receptor-STAT5-serotonin-HTR2B signaling plays a critical role in determining the β-cell mass by regulating perinatal β-cell proliferation, and defects in this pathway affect metabolic phenotypes in adults.




by

Wave him bye bye: O's voice Angel retires

Wave him bye bye. A legendary voice of Orioles baseball is calling it a career. Joe Angel, beloved play-by-plan man and voice of the Orioles' radio broadcasts for nearly two decades, announced his retirement this week. The decision caps a 41-year career in the booth for Angel, 71, a fixture for 19 seasons across two stints in Baltimore.




by

Inhibition of Mitochondrial Calcium Overload by SIRT3 Prevents Obesity- or Age-Related Whitening of Brown Adipose Tissue

The whitening and loss of brown adipose tissue (BAT) during obesity and aging promote metabolic disorders and related diseases. The imbalance of Ca2+ homeostasis accounts for the dysfunction and clearance of mitochondria during BAT whitening. Capsaicin, a dietary factor activating TRPV1, can inhibit obesity induced by high-fat diet (HFD), but whether capsaicin inhibits BAT loss and the underlying mechanism remain unclear. In this study, we determined that the inhibitory effects of capsaicin on HFD-induced obesity and BAT whitening were dependent on the participation of SIRT3, a critical mitochondrial deacetylase. SIRT3 also mediated all of the beneficial effects of capsaicin on alleviating reactive oxygen species generation, elevating mitochondrial activity, and restricting mitochondrial calcium overload induced by HFD. Mechanistically, SIRT3 inhibits mitochondrial calcium uniporter (MCU)-mediated mitochondrial calcium overload by reducing the H3K27ac level on the MCU promoter in an AMPK-dependent manner. In addition, HFD also inhibits AMPK activity to reduce SIRT3 expression, which could be reversed by capsaicin. Capsaicin intervention also inhibited aging-induced BAT whitening through this mechanism. In conclusion, this study emphasizes a critical role of the AMPK/SIRT3 pathway in the maintenance of BAT morphology and function and suggests that intervention in this pathway may be an effective target for preventing obesity- or age-related metabolic diseases.




by

UN leader says one billion people with disabilities hard hit by virus

UNITED NATIONS (AP) — The United Nation’s leader said Wednesday the world’s one billion people living with disabilities are among the hardest hit by the coronavirus and called for them to have equal access to prevention and...




by

Venerable but vulnerable: Centenarians hit hard by virus

BOSTON (AP) — Centenarians have always been a rare breed. Now they’re an endangered species. The 100-plus crowd — those most venerable of human beings — is succumbing rapidly and heartbreakingly to the coronavirus...




by

The pattern of damage caused by Zika virus in the brains of 23 foetuses

In February World Health Organization (WHO) declared the microcephaly epidemic in South America an international public health emergency. Today, the US Centers for Disease Control and Prevention, the CDC, has confirmed that it’s is Zika virus which is causing that microcephaly.  The outbreak was originally spotted in Recife, in Brazil, and it’s...




by

Julia Beluz And Victor Montori - Journalists And doctors; separated by a common evidence

The same piece of evidence may reach you via a journalist, or via your doctor - but the way in which that evidence is communicated is changed by your relationship between that person. Julia Beluz from Vox and Victor Montori from the Mayo Clinic join us to discuss if it's possible to reconcile those competing points of view.




by

Talk Evidence - Sepsis, talc and blindsided by blinding

Welcome to the festive talk evidence, giving you a little EBM to take you into the new year. As always Duncan Jarvies is joined by Helen Macdonald (resting GP and editor at The BMJ) and Carl Heneghan (active GP, director of Oxford University’s CEBM and editor of BMJ Evidence)* This month: (1.20) Carl tells us about new research on treating...




by

A Lesson in Metabolic Regulation Inspired by the Glucokinase Glucose Sensor Paradigm

Franz M Matschinsky
Feb 1, 1996; 45:223-241
Banting Lecture 1995




by

Preservation of Pancreatic {beta}-Cell Function and Prevention of Type 2 Diabetes by Pharmacological Treatment of Insulin Resistance in High-Risk Hispanic Women

Thomas A. Buchanan
Sep 1, 2002; 51:2796-2803
Pathophysiology




by

Triggering and amplifying pathways of regulation of insulin secretion by glucose

JC Henquin
Nov 1, 2000; 49:1751-1760
Articles




by

Assessment of MTNR1B Type 2 Diabetes Genetic Risk Modification by Shift Work and Morningness-Eveningness Preference in the UK Biobank

Night shift work, behavioral rhythms, and the common MTNR1B risk single nucleotide polymorphism (SNP), rs10830963, associate with type 2 diabetes; however, whether they exert joint effects to exacerbate type 2 diabetes risk is unknown. Among employed participants of European ancestry in the UK Biobank (N = 189,488), we aimed to test the cross-sectional independent associations and joint interaction effects of these risk factors on odds of type 2 diabetes (n = 5,042 cases) and HbA1c levels (n = 175,156). Current shift work, definite morning or evening preference, and MTNR1B rs10830963 risk allele associated with type 2 diabetes and HbA1c levels. The effect of rs10830963 was not modified by shift work schedules. While marginal evidence of interaction between self-reported morningness-eveningness preference and rs10830963 on risk of type 2 diabetes was seen, this interaction did not persist when analysis was expanded to include all participants regardless of employment status and when accelerometer-derived sleep midpoint was used as an objective measure of morningness-eveningness preference. Our findings suggest that MTNR1B risk allele carriers who carry out shift work or have more extreme morningness-eveningness preference may not have enhanced risk of type 2 diabetes.




by

L-Cell Differentiation Is Induced by Bile Acids Through GPBAR1 and Paracrine GLP-1 and Serotonin Signaling

Glucagon-like peptide 1 (GLP-1) mimetics are effective drugs for treatment of type 2 diabetes, and there is consequently extensive interest in increasing endogenous GLP-1 secretion and L-cell abundance. Here we identify G-protein–coupled bile acid receptor 1 (GPBAR1) as a selective regulator of intestinal L-cell differentiation. Lithocholic acid and the synthetic GPBAR1 agonist, L3740, selectively increased L-cell density in mouse and human intestinal organoids and elevated GLP-1 secretory capacity. L3740 induced expression of Gcg and transcription factors Ngn3 and NeuroD1. L3740 also increased the L-cell number and GLP-1 levels and improved glucose tolerance in vivo. Further mechanistic examination revealed that the effect of L3740 on L cells required intact GLP-1 receptor and serotonin 5-hydroxytryptamine receptor 4 (5-HT4) signaling. Importantly, serotonin signaling through 5-HT4 mimicked the effects of L3740, acting downstream of GLP-1. Thus, GPBAR1 agonists and other powerful GLP-1 secretagogues facilitate L-cell differentiation through a paracrine GLP-1–dependent and serotonin-mediated mechanism.




by

Puig ready to take Cincy by storm: 'I love red'

New Reds outfielder Yasiel Puig has been in camp for about a week, often hitting on his own on the backfields. With the first full-squad workout taking place on Monday, Puig was able to warm up, throw and hit with his teammates.




by

Winker unfazed by crowded Reds outfield

Since Jesse Winker suffered a season-ending shoulder injury on July 23, he's gained a lot of company in the corner-outfield spots.




by

Mitochondrial Proton Leak Regulated by Cyclophilin D Elevates Insulin Secretion in Islets at Nonstimulatory Glucose Levels

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.




by

Lipokine 5-PAHSA Is Regulated by Adipose Triglyceride Lipase and Primes Adipocytes for De Novo Lipogenesis in Mice

Branched esters of palmitic acid and hydroxystearic acid (PAHSA) are anti-inflammatory and antidiabetic lipokines that connect glucose and lipid metabolism. We aimed to characterize involvement of the 5-PAHSA regioisomer in the adaptive metabolic response of white adipose tissue (WAT) to cold exposure (CE) in mice, exploring the cross talk between glucose utilization and lipid metabolism. CE promoted local production of 5- and 9-PAHSAs in WAT. Metabolic labeling of de novo lipogenesis (DNL) using 2H2O revealed that 5-PAHSA potentiated the effects of CE and stimulated triacylglycerol (TAG)/fatty acid (FA) cycling in WAT through impacting lipogenesis and lipolysis. Adipocyte lipolytic products were altered by 5-PAHSA through selective FA re-esterification. The impaired lipolysis in global adipose triglyceride lipase (ATGL) knockout mice reduced free PAHSA levels and uncovered a metabolite reservoir of TAG-bound PAHSAs (TAG estolides) in WAT. Utilization of 13C isotope tracers and dynamic metabolomics documented that 5-PAHSA primes adipocytes for glucose metabolism in a different way from insulin, promoting DNL and impeding TAG synthesis. In summary, our data reveal new cellular and physiological mechanisms underlying the beneficial effects of 5-PAHSA and its relation to insulin action in adipocytes and independently confirm a PAHSA metabolite reservoir linked to ATGL-mediated lipolysis.




by

Liver ChREBP Protects Against Fructose-Induced Glycogenic Hepatotoxicity by Regulating L-Type Pyruvate Kinase

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.




by

n-3 Fatty Acid and Its Metabolite 18-HEPE Ameliorate Retinal Neuronal Cell Dysfunction by Enhancing Müller BDNF in Diabetic Retinopathy

Diabetic retinopathy (DR) is a widespread vision-threatening disease, and neuroretinal abnormality should be considered as an important problem. Brain-derived neurotrophic factor (BDNF) has recently been considered as a possible treatment to prevent DR-induced neuroretinal damage, but how BDNF is upregulated in DR remains unclear. We found an increase in hydrogen peroxide (H2O2) in the vitreous of patients with DR. We confirmed that human retinal endothelial cells secreted H2O2 by high glucose, and H2O2 reduced cell viability of MIO-M1, Müller glia cell line, PC12D, and the neuronal cell line and lowered BDNF expression in MIO-M1, whereas BDNF administration recovered PC12D cell viability. Streptozocin-induced diabetic rats showed reduced BDNF, which is mainly expressed in the Müller glia cell. Oral intake of eicosapentaenoic acid ethyl ester (EPA-E) ameliorated BDNF reduction and oscillatory potentials (OPs) in electroretinography (ERG) in DR. Mass spectrometry revealed an increase in several EPA metabolites in the eyes of EPA-E–fed rats. In particular, an EPA metabolite, 18-hydroxyeicosapentaenoic acid (18-HEPE), induced BDNF upregulation in Müller glia cells and recovery of OPs in ERG. Our results indicated diabetes-induced oxidative stress attenuates neuroretinal function, but oral EPA-E intake prevents retinal neurodegeneration via BDNF in Müller glia cells by increasing 18-HEPE in the early stages of DR.




by

Immunomodulation Followed by Antigen-Specific Treg Infusion Controls Islet Autoimmunity

Optimal immune-based therapies for type 1 diabetes (T1D) should restore self-tolerance without inducing chronic immunosuppression. CD4+Foxp3+ regulatory T cells (Tregs) are a key cell population capable of facilitating durable immune tolerance. However, clinical trials with expanded Tregs in T1D and solid-organ transplant recipients are limited by poor Treg engraftment without host manipulation. We showed that Treg engraftment and therapeutic benefit in nonautoimmune models required ablative host conditioning. Here, we evaluated Treg engraftment and therapeutic efficacy in the nonobese diabetic (NOD) mouse model of autoimmune diabetes using nonablative, combinatorial regimens involving the anti-CD3 (αCD3), cyclophosphamide (CyP), and IAC (IL-2/JES6–1) antibody complex. We demonstrate that αCD3 alone induced substantial T-cell depletion, impacting both conventional T cells (Tconv) and Tregs, subsequently followed by more rapid rebound of Tregs. Despite robust depletion of host Tconv and host Tregs, donor Tregs failed to engraft even with interleukin-2 (IL-2) support. A single dose of CyP after αCD3 depleted rebounding host Tregs and resulted in a 43-fold increase in donor Treg engraftment, yet polyclonal donor Tregs failed to reverse diabetes. However, infusion of autoantigen-specific Tregs after αCD3 alone resulted in robust Treg engraftment within the islets and induced remission in all mice. This novel combinatorial therapy promotes engraftment of autoantigen-specific donor Tregs and controls islet autoimmunity without long-term immunosuppression.




by

{beta}-Cell Stress Shapes CTL Immune Recognition of Preproinsulin Signal Peptide by Posttranscriptional Regulation of Endoplasmic Reticulum Aminopeptidase 1

The signal peptide of preproinsulin is a major source for HLA class I autoantigen epitopes implicated in CD8 T cell (CTL)–mediated β-cell destruction in type 1 diabetes (T1D). Among them, the 10-mer epitope located at the C-terminal end of the signal peptide was found to be the most prevalent in patients with recent-onset T1D. While the combined action of signal peptide peptidase and endoplasmic reticulum (ER) aminopeptidase 1 (ERAP1) is required for processing of the signal peptide, the mechanisms controlling signal peptide trimming and the contribution of the T1D inflammatory milieu on these mechanisms are unknown. Here, we show in human β-cells that ER stress regulates ERAP1 gene expression at posttranscriptional level via the IRE1α/miR-17-5p axis and demonstrate that inhibition of the IRE1α activity impairs processing of preproinsulin signal peptide antigen and its recognition by specific autoreactive CTLs during inflammation. These results underscore the impact of ER stress in the increased visibility of β-cells to the immune system and position the IRE1α/miR-17 pathway as a central component in β-cell destruction processes and as a potential target for the treatment of autoimmune T1D.




by

Prognosis of unrecognised myocardial infarction determined by electrocardiography or cardiac magnetic resonance imaging: systematic review and meta-analysis