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The Gq/G11-mediated signaling pathway is critical for autocrine potentiation of insulin secretion in mice

机译:Gq / G11介导的信号通路对于小鼠胰岛素分泌的自分泌增强至关重要

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摘要

A variety of neurotransmitters, gastrointestinal hormones, and metabolic signals are known to potentiate insulin secretion through GPCRs. We show here that β cell–specific inactivation of the genes encoding the G protein α-subunits Gαq and Gα11 resulted in impaired glucose tolerance and insulin secretion in mice. Interestingly, the defects observed in Gαq/Gα11-deficient β cells were not restricted to loss of muscarinic or metabolic potentiation of insulin release; the response to glucose per se was also diminished. Electrophysiological recordings revealed that glucose-induced depolarization of isolated β cells was impaired in the absence of Gαq/Gα11, and closure of KATP channels was inhibited. We provide evidence that this reduced excitability was due to a loss of β cell–autonomous potentiation of insulin secretion through factors cosecreted with insulin. We identified as autocrine mediators involved in this process extracellular nucleotides such as uridine diphosphate acting through the Gq/G11-coupled P2Y6 receptor and extracellular calcium acting through the calcium-sensing receptor. Thus, the Gq/G11-mediated signaling pathway potentiates insulin secretion in response to glucose by integrating systemic as well as autocrine/paracrine mediators.
机译:已知多种神经递质,胃肠激素和代谢信号可通过GPCR增强胰岛素分泌。我们在这里显示,编码G蛋白α-亚基Gαq和Gα11的基因的β细胞特异性失活导致小鼠的糖耐量降低和胰岛素分泌受损。有趣的是,在缺乏Gαq/Gα11的β细胞中观察到的缺陷不仅仅限于毒蕈碱的丧失或胰岛素释放的代谢增强。对葡萄糖本身的反应也减少了。电生理学记录显示,在不存在Gαq/Gα11的情况下,葡萄糖诱导的分离的β细胞去极化受损,并且KATP通道的关闭受到抑制。我们提供的证据表明,这种兴奋性降低是由于与胰岛素共同分泌的因子丧失了β细胞的胰岛素分泌的自主增强作用。我们确定参与此过程的自分泌介质,如胞外核苷酸,如尿苷二磷酸通过Gq / G11偶联的P2Y6受体起作用,而胞外钙通过钙敏感受体起作用。因此,Gq / G11介导的信号通路通过整合全身以及自分泌/旁分泌介质来增强对葡萄糖反应的胰岛素分泌。

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