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胰腺胰岛、INS-1细胞和肝线粒体中来自葡萄糖、α-酮异己酸和丙酮酸的回补反应。

Anaplerosis from glucose, alpha-ketoisocaproate, and pyruvate in pancreatic islets, INS-1 cells and liver mitochondria.

作者信息

MacDonald Michael J, Stoker Scott W, Hasan Noaman M

机构信息

Childrens Diabetes Center, School of Medicine and Public Health, University of Wisconsin, Rm. 3459 Medical Science Center, 1300 University Ave., Madison, WI 53706, USA.

出版信息

Mol Cell Biochem. 2008 Jun;313(1-2):195-202. doi: 10.1007/s11010-008-9757-x. Epub 2008 Apr 15.

Abstract

Methyl succinate (MS) and alpha-ketoisocaproate (KIC) when applied alone to cultured pancreatic islets or INS-1 832/13 cells do not stimulate insulin release. However, when the two metabolites are combined together they strongly stimulate insulin release. Studying the possible explanations for this complementarity has provided clues to the pathways involved in insulin secretion. MS increased carbon incorporation of KIC into acid-precipitable material and lipid in INS-1 cells. In isolated mitochondria, MS alone increased malate, but MS plus KIC increased citrate, alpha-ketoglutarate, and isocitrate. These data and the known pathways of their metabolism suggest that MS supplies the oxaloacetate component of citrate and KIC supplies the acetate component of citrate. Other citric acid cycle intermediates can be formed from citrate enabling anaplerosis to supply precursors for extramitochondrial pathways. In addition, KIC, glucose and pyruvate can be metabolized to acetoacetate. In an INS-1 cell line deficient in ATP citrate lyase, incorporation of carbon from pyruvate into acid-precipitable material and lipid was not lowered. This negative result is in agreement with our recent discovery that citrate is not the only carrier of acyl groups from the mitochondria to the cytosol in the beta cell and that acetoacetate can also transfer acyl carbon to the cytosol.

摘要

琥珀酸甲酯(MS)和α-酮异己酸(KIC)单独应用于培养的胰岛或INS-1 832/13细胞时,不会刺激胰岛素释放。然而,当这两种代谢物联合使用时,它们会强烈刺激胰岛素释放。对这种互补性的可能解释进行研究,为胰岛素分泌所涉及的途径提供了线索。MS增加了KIC在INS-1细胞中碳掺入酸沉淀物质和脂质中的量。在分离的线粒体中,单独的MS增加了苹果酸,但MS加KIC增加了柠檬酸、α-酮戊二酸和异柠檬酸。这些数据及其已知的代谢途径表明,MS提供了柠檬酸的草酰乙酸成分,而KIC提供了柠檬酸的乙酸成分。柠檬酸可形成其他柠檬酸循环中间体,从而实现回补反应以供应线粒体外途径的前体。此外,KIC、葡萄糖和丙酮酸可代谢生成乙酰乙酸。在缺乏ATP柠檬酸裂解酶的INS-1细胞系中,丙酮酸的碳掺入酸沉淀物质和脂质中的量并未降低。这一阴性结果与我们最近的发现一致,即柠檬酸不是β细胞中线粒体向细胞质转运酰基的唯一载体,乙酰乙酸也可以将酰基碳转运到细胞质中。

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