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A Role for Mitochondrial Phosphoenolpyruvate Carboxykinase (PEPCK-M) in the Regulation of Hepatic Gluconeogenesis

机译:线粒体磷酸胆糖醇羧基酶(PEPCK-M)在调节肝葡糖生成中的作用

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Synthesis of phosphoenolpyruvate (PEP) from oxaloacetate is an absolute requirement for gluconeogenesis from mitochondrial substrates. Generally, this reaction has solely been attributed to the cytosolic isoform of PEPCK (PEPCK-C), although loss of the mitochondrial isoform (PEPCK-M) has never been assessed. Despite catalyzing the same reaction, to date the only significant role reported in mammals for the mitochondrial isoform is as a glucose sensor necessary for insulin secretion. We hypothesized that this nutrient-sensing mitochondrial GTP-dependent pathway contributes importantly to gluconeogenesis. PEPCK-M was acutely silenced in gluconeogenic tissues of rats using antisense oligonucleotides both in vivo and in isolated hepatocytes. Silencing PEPCK-M lowers plasma glucose, insulin, and triglycerides, reduces white adipose, and depletes hepatic glycogen, but raises lactate. There is a switch of gluconeogenic substrate preference to glycerol that quantitatively accounts for a third of glucose production. In contrast to the severe mitochondrial deficiency characteristic of PEPCK-C knock-out livers, hepatocytes from PEPCK-M-deficient livers maintained normal oxidative function. Consistent with its predicted role, gluconeogenesis rates from hepatocytes lacking PEPCK-M are severely reduced for lactate, alanine, and glutamine, but not for pyruvate and glycerol. Thus, PEPCK-M has a direct role in fasted and fed glucose homeostasis, and this mitochondrial GTP-dependent pathway should be reconsidered for its involvement in both normal and diabetic metabolism.
机译:来自脱氧酸酯的磷酸丙酯(PEP)的合成是对线粒体基材的葡糖生成的绝对要求。通常,该反应仅归因于PEPCK(PEPCK-C)的细胞骨同种型,尽管从未评估了线粒体同种型(PEPCK-M)的丧失。尽管催化了相同的反应,但迄今为止,哺乳动物的哺乳动物中报告的唯一重要作用是胰岛素分泌所必需的葡萄糖传感器。我们假设这种营养素感应的线粒体GTP依赖性途径主要有助于葡糖生成。 Pepck-m在使用体内和分离的肝细胞中使用反义寡核苷酸的大鼠葡糖来组织敏感。沉默的Pepck-m降低血浆葡萄糖,胰岛素和甘油三酯,减少白色脂肪,并耗尽肝糖原,但呈乳酸。存在葡萄糖基底偏好的开关,其定量占葡萄糖生产的三分之一。与Pepck-C敲除肝的严重线粒体缺乏特征相比,Pepck-M缺陷型肝细胞的肝细胞保持正常氧化功能。与其预测的作用一致,缺乏Pepck-M的肝细胞的葡糖苷率被严重减少乳酸,丙氨酸和谷氨酰胺,但不适用于丙酮酸和甘油。因此,Pepck-M具有在禁食和喂养葡萄糖稳态中的直接作用,并且这种线粒体GTP依赖性途径应重新考虑其参与正常和糖尿病代谢。

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