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Munc13-1 Deficiency Reduces Insulin Secretion and Causes Abnormal Glucose Tolerance

机译:Munc13-1缺乏症会减少胰岛素分泌并导致异常的葡萄糖耐量

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Munc13-1 is a diacylglycerol (DAG) receptor that is essential for synaptic vesicle priming. We recently showed that Munc13-1 is expressed in rodent and human islet β-cells and that its levels are reduced in islets of type 2 diabetic humans and rat models, suggesting that Munc13-1 deficiency contributes to the abnormal insulin secretion in diabetes. To unequivocally demonstrate the role of Munc13-1 in insulin secretion, we studied heterozygous Munc13-1 knockout mice (+/-), which exhibited elevated glucose levels during intraperitoneal glucose tolerance tests with corresponding lower serum insulin levels. Munc13-1~(+/-) mice exhibited normal insulin tolerance, indicating that a primary islet β-cell secretory defect is the major cause of their hyperglycemia. Consistently, glucose-stimulated insulin secretion was reduced 50% in isolated Munc13-1~(+/-) islets and was only partially rescued by phorbol ester potentiation. The corresponding alterations were minor in mice expressing one allele of a Munc13-1 mutant variant, which does not bind DAG (H567K/+). Capacitance measurements of Munc13-1~(+/-) and Munc13-1~(H567k/+) islet β-cells revealed defects in granule priming, including the initial size and refilling of the releasable pools, which become accentuated by phorbol ester potentiation. We conclude that Munc13-1 plays an important role in glucose-stimulated insulin secretion and that Munc13-1 deficiency in the pancreatic islets as occurs in diabetes can reduce insulin secretion sufficient to cause abnormal glucose homeostasis.
机译:Munc13-1是一种二酰基甘油(DAG)受体,对于突触小泡引发至关重要。我们最近显示,Munc13-1在啮齿动物和人的胰岛β细胞中表达,并且其水平在2型糖尿病人和大鼠模型的胰岛中降低,表明Munc13-1缺乏导致糖尿病中胰岛素的异常分泌。为了明确证明Munc13-1在胰岛素分泌中的作用,我们研究了杂合的Munc13-1基因敲除小鼠(+/-),该小鼠在腹膜内葡萄糖耐量试验期间表现出较高的葡萄糖水平,且血清胰岛素水平相应降低。 Munc13-1〜(+/-)小鼠表现出正常的胰岛素耐受性,表明原发性胰岛β细胞分泌缺陷是其高血糖症的主要原因。一致地,葡萄糖刺激的胰岛素分泌在分离的Munc13-1〜(+/-)胰岛中减少了50%,并且仅通过佛波酯增强作用得以部分挽救。在表达一个不结合DAG(H567K / +)的Munc13-1突变体等位基因的小鼠中,相应的改变很小。对Munc13-1〜(+/-)和Munc13-1〜(H567k / +)胰岛β细胞的电容测量揭示了颗粒引发的缺陷,包括初始大小和可释放池的重新填充,这些都因佛波酯增强而变得更加突出。 。我们得出的结论是,Munc13-1在葡萄糖刺激的胰岛素分泌中起着重要作用,而糖尿病患者胰岛中Munc13-1的缺乏会降低胰岛素的分泌,足以引起异常的葡萄糖稳态。

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