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   bax inhibitor-1 deficiency leads to obesity by increasing ca2+-dependent insulin secretion  
   
نویسنده philippaert koenraad ,roden michael ,lisak dmitrij ,bueno diones ,jelenik tomas ,radyushkin konstantin ,schacht teresa ,mesuere margot ,wüllner verena ,herrmann ann-kathrin ,baumgart jan ,vennekens rudi ,methner axel
منبع journal of molecular medicine - 2020 - دوره : 98 - شماره : 6 - صفحه:849 -862
چکیده    Transmembrane bax inhibitor motif containing 6 (tmbim6), also known as bax inhibitor-1, is an evolutionarily conserved protein involved in endoplasmic reticulum (er) function. tmbim6 is an er ca2+ leak channel and its deficiency enhances susceptibility to er stress due to inhibition of the er stress sensor ire1α. it was previously shown that tmbim6 overexpression improves glucose metabolism and that tmbim6 knockout mice develop obesity. we here examined the metabolic alterations underlying the obese phenotype and subjected tmbim6 knockout mice to indirect calorimetry and euglycemic-hyperinsulinemic tests with stable isotope dilution to gauge tissue-specific insulin sensitivity. this demonstrated no changes in heat production, food intake, activity or hepatic and peripheral insulin sensitivity. tmbim6 knockout mice, however, featured a higher glucose-stimulated insulin secretion in vivo as assessed by the hyperglycemic clamp test and hepatic steatosis. this coincided with profound changes in glucose-mediated ca2+ regulation in isolated pancreatic β cells and increased levels of ire1α levels but no differences in downstream effects of ire1α like increased xbp1 mrna splicing or ire1-dependent decay of insulin mrna in the pancreas. we therefore conclude that lack of tmbim6 does not affect insulin sensitivity but leads to hyperinsulinemia, which serves to explain the weight gain. tmbim6-mediated metabolic alterations are mainly caused by its role as a ca2+ release channel in the er.
کلیدواژه bax inhibitor-1 ,tmbim6 ,obesity ,insulin secretion ,hepatic steatosis
آدرس vib center for brain & disease research, laboratory of ion channel research, belgium. department of cellular and molecular medicine, ku leuven, belgium, heinrich heine university, medical faculty, institute for clinical diabetology, german diabetes center, leibniz center for diabetes research, division of endocrinology and diabetology, germany. german center for diabetes research (dzd), germany, institute for molecular medicine of the university medical center, johannes gutenberg university, germany, institute for molecular medicine of the university medical center, johannes gutenberg university, germany, heinrich heine university, institute for clinical diabetology, german diabetes center, leibniz center for diabetes research, germany. german center for diabetes research (dzd), germany, the johannes gutenberg university, mouse behavioral unit, germany, institute for molecular medicine of the university medical center, johannes gutenberg university, germany, vib center for brain & disease research, laboratory of ion channel research, belgium. department of cellular and molecular medicine, ku leuven, belgium, institute for molecular medicine of the university medical center, johannes gutenberg university, germany, institute for molecular medicine of the university medical center, johannes gutenberg university, germany, the johannes gutenberg university, translational animal research center, germany, vib center for brain & disease research, laboratory of ion channel research, belgium. department of cellular and molecular medicine, ku leuven, belgium, institute for molecular medicine of the university medical center, johannes gutenberg university, germany
 
     
   
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