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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >L-Lactate metabolism in HEP G2 cell mitochondria due to the l-lactate dehydrogenase determines the occurrence of the lactate/pyruvate shuttle and the appearance of oxaloacetate, malate and citrate outside mitochondria
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L-Lactate metabolism in HEP G2 cell mitochondria due to the l-lactate dehydrogenase determines the occurrence of the lactate/pyruvate shuttle and the appearance of oxaloacetate, malate and citrate outside mitochondria

机译:L-乳酸脱氢酶引起的HEP G2细胞线粒体中L-乳酸的代谢决定了线粒体外乳酸/丙酮酸穿梭的发生以及草酰乙酸,苹果酸和柠檬酸盐的出现

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摘要

As part of an ongoing study of l-lactate metabolism both in normal and in cancer cells, we investigated whether and how l-lactate metabolism occurs in mitochondria of human hepatocellular carcinoma (Hep G2) cells. We found that Hep G2 cell mitochondria (Hep G2-M) possess an l-lactate dehydrogenase (ml-LDH) restricted to the inner mitochondrial compartments as shown by immunological analysis, confocal microscopy and by assaying ml-LDH activity in solubilized mitochondria. Cytosolic and mitochondrial l-LDHs were found to differ from one another in their saturation kinetics. Having shown that l-lactate itself can enter Hep G2 cells, we found that Hep G2-M swell in ammonium l-lactate, but not in ammonium pyruvate solutions, in a manner inhibited by mersalyl, this showing the occurrence of a carrier-mediated l-lactate transport in these mitochondria. Occurrence of the l-lactate/pyruvate shuttle and the appearance outside mitochondria of oxaloacetate, malate and citrate arising from l-lactate uptake and metabolism together with the low oxygen consumption and membrane potential generation are in favor of an anaplerotic role for l-LAC in Hep G2-M.
机译:作为正在进行的正常和癌细胞中l-乳酸代谢研究的一部分,我们调查了l-乳酸代谢是否以及如何在人肝细胞癌(Hep G2)细胞的线粒体中发生。我们发现,Hep G2细胞线粒体(Hep G2-M)具有限制在内部线粒体隔室内的l-乳酸脱氢酶(ml-LDH),如通过免疫学分析,共聚焦显微镜法和通过测定溶解的线粒体中的ml-LDH活性所示。发现胞质和线粒体1-LDH在饱和动力学上彼此不同。在证明l-乳酸本身可以进入Hep G2细胞后,我们发现Hep G2-M在l-乳酸铵中溶胀,但在丙酮酸铵溶液中却没有溶胀,但受到巯基苯甲酰抑制,这表明了载体介导的发生。这些线粒体中的l-乳酸运输。 l-乳酸/丙酮酸穿梭的发生以及l-乳酸的摄取和代谢引起的草酰乙酸,苹果酸和柠檬酸盐的线粒体外观以及低耗氧量和膜电位的产生有利于l-LAC在庚G2-M。

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