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丙酮酸甲酯的促胰岛素分泌作用:酶学与代谢方面

Insulinotropic action of methyl pyruvate: enzymatic and metabolic aspects.

作者信息

Jijakli H, Nadi A B, Cook L, Best L, Sener A, Malaisse W J

机构信息

Laboratory of Experimental Medicine, Brussels Free University, Belgium.

出版信息

Arch Biochem Biophys. 1996 Nov 15;335(2):245-57. doi: 10.1006/abbi.1996.0505.

Abstract

The metabolism of methyl pyruvate was compared to that of pyruvate in isolated rat pancreatic islets. Methyl pyruvate was found to be more efficient than pyruvate in supporting the intramitochondrial conversion of pyruvate metabolites to amino acids, inhibiting D-[5-3H]glucose utilization, maintaining a high ratio between D-[3,4-14C]glucose or D-[6-14C]glucose oxidation and D-[5-3H]glucose utilization, inhibiting the intramitochondrial conversion of glucose-derived 2-keto acids to their corresponding amino acids, and augmenting 14CO2 output from islets prelabeled with L-[U-14C]glutamine. Methyl pyruvate also apparently caused a more marked mitochondrial alkalinization than pyruvate, as judged from comparisons of pH measurements based on the use of either a fluorescein probe or 14C-labeled 5,5-dimethyl-oxazolidine-2,4-dione. Inversely, pyruvate was more efficient than methyl pyruvate in increasing lactate output and generating L-alanine. These converging findings indicate that, by comparison with exogenous pyruvate, its methyl ester is preferentially metabolized in the mitochondrial, rather than cytosolic, domain of islet cells. It is proposed that both the positive and the negative components of methyl pyruvate insulinotropic action are linked to changes in the net generation of reducing equivalents, ATP and H+.

摘要

在分离的大鼠胰岛中,对丙酮酸甲酯和丙酮酸的代谢进行了比较。结果发现,在支持丙酮酸代谢产物在线粒体内转化为氨基酸、抑制D-[5-³H]葡萄糖利用、维持D-[3,4-¹⁴C]葡萄糖或D-[6-¹⁴C]葡萄糖氧化与D-[5-³H]葡萄糖利用之间的高比率、抑制葡萄糖衍生的2-酮酸在线粒体内转化为其相应氨基酸以及增加用L-[U-¹⁴C]谷氨酰胺预标记的胰岛的¹⁴CO₂输出方面,丙酮酸甲酯比丙酮酸更有效。从基于使用荧光素探针或¹⁴C标记的5,5-二甲基-恶唑烷-2,4-二酮的pH测量比较来看,丙酮酸甲酯显然也比丙酮酸引起更明显的线粒体碱化。相反,在增加乳酸输出和生成L-丙氨酸方面,丙酮酸比丙酮酸甲酯更有效。这些一致的发现表明,与外源性丙酮酸相比,其甲酯在胰岛细胞的线粒体而非胞质区域优先代谢。有人提出,丙酮酸甲酯促胰岛素作用的正负成分均与还原当量、ATP和H⁺净生成的变化有关。

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