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肌肉 PDH 的丧失通过丙酮酸-丙氨酸循环和谷氨酰胺分解诱导乳酸酸中毒和适应性补氨作用补偿。

Loss of muscle PDH induces lactic acidosis and adaptive anaplerotic compensation via pyruvate-alanine cycling and glutaminolysis.

机构信息

Faculty of Pharmacy and Pharmaceutical Sciences, University of Alberta, Edmonton, Alberta, Canada; Alberta Diabetes Institute, University of Alberta, Edmonton, Alberta, Canada; Cardiovascular Research Centre, University of Alberta, Edmonton, Alberta, Canada.

Faculty of Pharmacy, Université de Montréal, Montréal, Quebec, Canada; Montreal Diabetes Research Center, Montréal, Quebec, Canada; Cardiometabolic Health, Diabetes and Obesity Research Network, Montréal, Quebec, Canada.

出版信息

J Biol Chem. 2023 Dec;299(12):105375. doi: 10.1016/j.jbc.2023.105375. Epub 2023 Oct 20.

Abstract

Pyruvate dehydrogenase (PDH) is the rate-limiting enzyme for glucose oxidation that links glycolysis-derived pyruvate with the tricarboxylic acid (TCA) cycle. Although skeletal muscle is a significant site for glucose oxidation and is closely linked with metabolic flexibility, the importance of muscle PDH during rest and exercise has yet to be fully elucidated. Here, we demonstrate that mice with muscle-specific deletion of PDH exhibit rapid weight loss and suffer from severe lactic acidosis, ultimately leading to early mortality under low-fat diet provision. Furthermore, loss of muscle PDH induces adaptive anaplerotic compensation by increasing pyruvate-alanine cycling and glutaminolysis. Interestingly, high-fat diet supplementation effectively abolishes early mortality and rescues the overt metabolic phenotype induced by muscle PDH deficiency. Despite increased reliance on fatty acid oxidation during high-fat diet provision, loss of muscle PDH worsens exercise performance and induces lactic acidosis. These observations illustrate the importance of muscle PDH in maintaining metabolic flexibility and preventing the development of metabolic disorders.

摘要

丙酮酸脱氢酶(PDH)是将糖酵解产生的丙酮酸与三羧酸循环(TCA)连接起来的葡萄糖氧化限速酶。尽管骨骼肌是葡萄糖氧化的重要部位,与代谢灵活性密切相关,但肌肉 PDH 在休息和运动期间的重要性尚未完全阐明。在这里,我们证明肌肉特异性 PDH 缺失的小鼠体重迅速下降,并患有严重的乳酸性酸中毒,最终在低脂饮食供应下导致早期死亡。此外,肌肉 PDH 的缺失通过增加丙酮酸-丙氨酸循环和谷氨酰胺分解来诱导适应性氨甲酰磷酸合成补偿。有趣的是,高脂肪饮食补充有效地消除了早期死亡,并挽救了肌肉 PDH 缺乏引起的明显代谢表型。尽管在高脂肪饮食供应期间对脂肪酸氧化的依赖增加,但肌肉 PDH 的缺失会恶化运动表现并引起乳酸性酸中毒。这些观察结果说明了肌肉 PDH 在维持代谢灵活性和防止代谢紊乱发展方面的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38ed/10692893/1b1ff2fbfa98/gr1.jpg

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