Search Results - "De Jesus, Dario F."
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Fluorescein-based sensors to purify human α-cells for functional and transcriptomic analyses
Published in eLife (21-09-2023)“…Pancreatic α-cells secrete glucagon, an insulin counter-regulatory peptide hormone critical for the maintenance of glucose homeostasis. Investigation of the…”
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RADAR: differential analysis of MeRIP-seq data with a random effect model
Published in Genome Biology (23-12-2019)“…Epitranscriptome profiling using MeRIP-seq is a powerful technique for in vivo functional studies of reversible RNA modifications. We develop RADAR, a…”
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3
Luseogliflozin increases beta cell proliferation through humoral factors that activate an insulin receptor- and IGF-1 receptor-independent pathway
Published in Diabetologia (01-03-2020)“…Aims/hypothesis Sodium–glucose cotransporter 2 (SGLT2) inhibitors, which prevent the renal reabsorption of glucose, decrease blood glucose levels in an…”
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4
SUCNR1 regulates insulin secretion and glucose elevates the succinate response in people with prediabetes
Published in The Journal of clinical investigation (15-06-2024)“…Pancreatic β-cell dysfunction is a key feature of type 2 diabetes, and novel regulators of insulin secretion are desirable. Here we report that the succinate…”
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5
Excessive Cellular Proliferation Negatively Impacts Reprogramming Efficiency of Human Fibroblasts
Published in Stem cells translational medicine (01-10-2015)“…Primary human fibroblasts were cultured in either insulin‐rich defined medium or in a conventional medium to study the significance of proliferation/growth…”
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Secreted EMC10 is upregulated in human obesity and its neutralizing antibody prevents diet-induced obesity in mice
Published in Nature communications (28-11-2022)“…Secreted isoform of endoplasmic reticulum membrane complex subunit 10 (scEMC10) is a poorly characterized secreted protein of largely unknown physiological…”
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E2F1 transcription factor mediates a link between fat and islets to promote β cell proliferation in response to acute insulin resistance
Published in Cell reports (Cambridge) (04-10-2022)“…Prevention or amelioration of declining β cell mass is a potential strategy to cure diabetes. Here, we report the pathways utilized by β cells to robustly…”
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“Omics” and “epi-omics” underlying the β-cell adaptation to insulin resistance
Published in Molecular metabolism (Germany) (01-09-2019)“…Pancreatic β-cells adapt to high metabolic demand by expanding their β-cell mass and/or enhancing insulin secretion to maintain glucose homeostasis. Type 2…”
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Insulin receptor-mediated signaling regulates pluripotency markers and lineage differentiation
Published in Molecular metabolism (Germany) (01-12-2018)“…Insulin receptor (IR)-mediated signaling is involved in the regulation of pluripotent stem cells; however, its direct effects on regulating the maintenance of…”
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10
NREP contributes to development of NAFLD by regulating one-carbon metabolism in primary human hepatocytes
Published in Cell chemical biology (21-09-2023)“…Non-alcoholic fatty liver disease (NAFLD) is the most common cause of chronic liver disease. We recently discovered that neuronal regeneration-related protein…”
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11
m6A mRNA methylation by METTL14 regulates early pancreatic cell differentiation
Published in The EMBO journal (25-09-2024)“…N 6 -methyladenosine (m 6 A) is the most abundant chemical modification in mRNA and plays important roles in human and mouse embryonic stem cell pluripotency,…”
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Parental metabolic syndrome epigenetically reprograms offspring hepatic lipid metabolism in mice
Published in The Journal of clinical investigation (01-05-2020)“…The prevalence of nonalcoholic fatty liver disease (NAFLD) is increasing worldwide. Although gene-environment interactions have been implicated in the etiology…”
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13
Epigenetic modifiers of islet function and mass
Published in Trends in endocrinology and metabolism (01-12-2014)“…Highlights • The underlying mechanisms that increase susceptibility of an individual to develop type 2 diabetes implicate epigenetics. • Both aging and…”
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14
SerpinB1 Promotes Pancreatic β Cell Proliferation
Published in Cell metabolism (12-01-2016)“…Although compensatory islet hyperplasia in response to insulin resistance is a recognized feature in diabetes, the factor(s) that promote β cell proliferation…”
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Redox regulation of m6A methyltransferase METTL3 in β-cells controls the innate immune response in type 1 diabetes
Published in Nature cell biology (01-03-2024)“…Type 1 diabetes (T1D) is characterized by the destruction of pancreatic β-cells. Several observations have renewed the interest in β-cell RNA sensors and…”
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Maternal insulin resistance and transient hyperglycemia impact the metabolic and endocrine phenotypes of offspring
Published in American journal of physiology: endocrinology and metabolism (15-11-2014)“…Studies in both humans and rodents suggest that maternal diabetes leads to a higher risk of the fetus developing impaired glucose tolerance and obesity during…”
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Deficiency of the metabolic enzyme SCHAD in pancreatic β-cells promotes amino acid–sensitive hypoglycemia
Published in The Journal of biological chemistry (01-08-2023)“…Congenital hyperinsulinism of infancy (CHI) can be caused by a deficiency of the ubiquitously expressed enzyme short-chain 3-hydroxyacyl-CoA dehydrogenase…”
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Hepatic IRF3 fuels dysglycemia in obesity through direct regulation of Ppp2r1b
Published in Science translational medicine (23-03-2022)“…Inflammation has profound but poorly understood effects on metabolism, especially in the context of obesity and nonalcoholic fatty liver disease (NAFLD). Here,…”
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A MAFG-lncRNA axis links systemic nutrient abundance to hepatic glucose metabolism
Published in Nature communications (31-01-2020)“…Obesity and type 2 diabetes mellitus are global emergencies and long noncoding RNAs (lncRNAs) are regulatory transcripts with elusive functions in metabolism…”
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Loss-of-Function Mutation in Thiamine Transporter 1 in a Family With Autosomal Dominant Diabetes
Published in Diabetes (New York, N.Y.) (01-05-2019)“…Solute Carrier Family 19 Member 2 ( ) encodes thiamine transporter 1 (THTR1), which facilitates thiamine transport across the cell membrane. homozygous…”
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