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乳酸在啮齿动物大脑的线粒体基质外被氧化。

Lactate is oxidized outside of the mitochondrial matrix in rodent brain.

机构信息

a Department of Human Health and Nutritional Sciences, University of Guelph, Guelph, ON N1G 2W1, Canada.

b Department of Human Kinetics, St. Francis Xavier University, Antigonish, NS B2G 2W5, Canada.

出版信息

Appl Physiol Nutr Metab. 2018 May;43(5):467-474. doi: 10.1139/apnm-2017-0450. Epub 2017 Dec 5.

Abstract

The nature and existence of mitochondrial lactate oxidation is debated in the literature. Obscuring the issue are disparate findings in isolated mitochondria, as well as relatively low rates of lactate oxidation observed in permeabilized muscle fibres. However, respiration with lactate has yet to be directly assessed in brain tissue with the mitochondrial reticulum intact. To determine if lactate is oxidized in the matrix of brain mitochondria, oxygen consumption was measured in saponin-permeabilized mouse brain cortex samples, and rat prefrontal cortex and hippocampus (dorsal) subregions. While respiration in the presence of ADP and malate increased with the addition of lactate, respiration was maximized following the addition of exogenous NAD, suggesting maximal lactate metabolism involves extra-matrix lactate dehydrogenase. This was further supported when NAD-dependent lactate oxidation was significantly decreased with the addition of either low-concentration α-cyano-4-hydroxycinnamate or UK-5099, inhibitors of mitochondrial pyruvate transport. Mitochondrial respiration was comparable between glutamate, pyruvate, and NAD-dependent lactate oxidation. Results from the current study demonstrate that permeabilized brain is a feasible model for assessing lactate oxidation, and support the interpretation that lactate oxidation occurs outside the mitochondrial matrix in rodent brain.

摘要

文献中对于线粒体乳酸氧化的本质和存在性存在争议。在分离的线粒体中发现了不同的结果,以及在通透性肌肉纤维中观察到相对较低的乳酸氧化率,这使得问题更加复杂。然而,在完整的线粒体网中,乳酸的呼吸作用尚未在脑组织中直接评估。为了确定乳酸是否在脑线粒体的基质中被氧化,我们测量了皂素通透化的小鼠大脑皮质样本、大鼠前额叶皮质和海马体(背侧)亚区的耗氧量。虽然在 ADP 和苹果酸存在的情况下,随着乳酸的加入,呼吸作用增加,但在外源 NAD 加入后,呼吸作用达到最大值,这表明最大的乳酸代谢涉及细胞外基质中的乳酸脱氢酶。当加入低浓度的α-氰基-4-羟基肉桂酸或 UK-5099(线粒体丙酮酸转运抑制剂)时,NAD 依赖的乳酸氧化显著减少,这进一步支持了这一观点。线粒体呼吸作用在谷氨酸、丙酮酸和 NAD 依赖的乳酸氧化之间是相当的。本研究的结果表明,通透性脑是评估乳酸氧化的可行模型,并支持乳酸氧化发生在啮齿动物脑的线粒体基质之外的解释。

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