首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Phosphoenolpyruvate Cycling via Mitochondrial Phosphoenolpyruvate Carboxykinase Links Anaplerosis and Mitochondrial GTP with Insulin Secretion
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Phosphoenolpyruvate Cycling via Mitochondrial Phosphoenolpyruvate Carboxykinase Links Anaplerosis and Mitochondrial GTP with Insulin Secretion

机译:通过线粒体的磷酸烯醇式丙酮酸循环磷酸激酶通过胰岛素分泌将动脉粥样硬化和线粒体GTP连接起来

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摘要

Pancreatic β-cells couple the oxidation of glucose to the secretion of insulin. Apart from the canonical KATP-dependent glucose-stimulated insulin secretion (GSIS), there are important KATP-independent mechanisms involving both anaplerosis and mitochondrial GTP (mtGTP). How mtGTP that is trapped within the mitochondrial matrix regulates the cytosolic calcium increases that drive GSIS remains a mystery. Here we have investigated whether the mitochondrial isoform of phosphoenolpyruvate carboxykinase (PEPCK-M) is the GTPase linking hydrolysis of mtGTP made by succinyl-CoA synthetase (SCS-GTP) to an anaplerotic pathway producing phosphoenolpyruvate (PEP). Although cytosolic PEPCK (PEPCK-C) is absent, PEPCK-M message and protein were detected in INS-1 832/13 cells, rat islets, and mouse islets. PEPCK enzymatic activity is half that of primary hepatocytes and is localized exclusively to the mitochondria. Novel 13C-labeling strategies in INS-1 832/13 cells and islets measured substantial contribution of PEPCK-M to the synthesis of PEP. As high as 30% of PEP in INS-1 832/13 cells and 41% of PEP in rat islets came from PEPCK-M. The contribution of PEPCK-M to overall PEP synthesis more than tripled with glucose stimulation. Silencing the PEPCK-M gene completely inhibited GSIS underscoring its central role in mitochondrial metabolism-mediated insulin secretion. Given that mtGTP synthesized by SCS-GTP is an indicator of TCA flux that is crucial for GSIS, PEPCK-M is a strong candidate to link mtGTP synthesis with insulin release through anaplerotic PEP cycling.
机译:胰腺β细胞将葡萄糖的氧化与胰岛素的分泌结合在一起。除了经典的KATP依赖性葡萄糖刺激的胰岛素分泌(GSIS)外,还有重要的KATP依赖性机制,涉及动脉粥样硬化和线粒体GTP(mtGTP)。线粒体基质中捕获的mtGTP如何调节驱动GSIS的胞质钙增加仍然是一个谜。在这里,我们研究了磷酸烯醇丙酮酸羧激酶(PEPCK-M)的线粒体同工型是否是连接由琥珀酰-CoA合成酶(SCS-GTP)制造的mtGTP水解到产生磷酸烯醇丙酮酸(PEP)的无信号途径的GTPase。尽管缺少胞质PEPCK(PEPCK-C),但在INS-1 832/13细胞,大鼠胰岛和小鼠胰岛中检测到PEPCK-M消息和蛋白质。 PEPCK的酶促活性是原代肝细胞的一半,仅局限于线粒体。 INS-1 832/13细胞和胰岛中新的 13 C标记策略测量了PEPCK-M对PEP合成的重要贡献。 INS-1 832/13细胞中高达30%的PEP和大鼠胰岛中高达41%的PEP来自PEPCK-M。在葡萄糖刺激下,PEPCK-M对整个PEP合成的贡献增加了三倍以上。沉默PEPCK-M基因可完全抑制GSIS,这突出了其在线粒体代谢介导的胰岛素分泌中的核心作用。鉴于由SCS-GTP合成的mtGTP是TCA通量的指标,这对于GSIS至关重要,因此PEPCK-M是将mtGTP合成与通过无反应性PEP循环释放胰岛素联系在一起的有力候选者。

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