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线粒体功能异常可部分解释在少肌性腓肠肌中所遇到的代谢紊乱。

Abnormalities of mitochondrial functioning can partly explain the metabolic disorders encountered in sarcopenic gastrocnemius.

作者信息

Martin Caroline, Dubouchaud Hervé, Mosoni Laurent, Chardigny Jean-Michel, Oudot Alexandra, Fontaine Eric, Vergely Catherine, Keriel Christiane, Rochette Luc, Leverve Xavier, Demaison Luc

机构信息

Unité de Nutrition Lipidique, National Institute of Agronomical Research Dijon, France.

出版信息

Aging Cell. 2007 Apr;6(2):165-77. doi: 10.1111/j.1474-9726.2007.00271.x. Epub 2007 Feb 5.

Abstract

Aging triggers several abnormalities in muscle glycolytic fibers including increased proteolysis, reactive oxygen species (ROS) production and apoptosis. Since the mitochondria are the main site of substrate oxidation, ROS production and programmed cell death, we tried to know whether the cellular disorders encountered in sarcopenia are due to abnormal mitochondrial functioning. Gastrocnemius mitochondria were extracted from adult (6 months) and aged (21 months) male Wistar rats. Respiration parameters, opening of the permeability transition pore and ROS production, with either glutamate (amino acid metabolism) or pyruvate (glucose metabolism) as a respiration substrate, were evaluated at different matrix calcium concentrations. Pyruvate dehydrogenase and respiratory complex activities as well as their contents measured by Western blotting analysis were determined. Furthermore, the fatty acid profile of mitochondrial phospholipids was also measured. At physiological calcium concentration, state III respiration rate was lowered by aging in pyruvate conditions (-22%), but not with glutamate. The reduction of pyruvate oxidation resulted from a calcium-dependent inactivation of the pyruvate dehydrogenase system and could provide for the well-known proteolysis encountered during sarcopenia. Matrix calcium loading and aging increased ROS production. They also reduced the oxidative phosphorylation. This was associated with lower calcium retention capacities, suggesting that sarcopenic fibers are more prone to programmed cell death. Aging was also associated with a reduced mitochondrial superoxide dismutase activity, which does not intervene in toxic ROS overproduction but could explain the lower calcium retention capacities. Despite a lower content, cytochrome c oxidase displayed an increased activity associated with an increased n-6/n-3 polyunsaturated fatty acid ratio of mitochondrial phospholipids. In conclusion, we propose that mitochondria obtained from aged muscle fibers display several functional abnormalities explaining the increased proteolysis, ROS overproduction and vulnerability to apoptosis exhibited by sarcopenic muscle. These changes appear to be related to modifications of the fatty acid profile of mitochondrial lipids.

摘要

衰老会引发肌肉糖酵解纤维中的多种异常情况,包括蛋白水解增加、活性氧(ROS)生成以及细胞凋亡。由于线粒体是底物氧化、ROS生成和程序性细胞死亡的主要场所,我们试图了解肌肉减少症中出现的细胞功能紊乱是否归因于线粒体功能异常。从成年(6个月)和老年(21个月)雄性Wistar大鼠中提取腓肠肌线粒体。以谷氨酸(氨基酸代谢)或丙酮酸(葡萄糖代谢)作为呼吸底物,在不同的基质钙浓度下评估呼吸参数、通透性转换孔的开放以及ROS生成。通过蛋白质印迹分析测定丙酮酸脱氢酶和呼吸复合体的活性及其含量。此外,还测量了线粒体磷脂的脂肪酸谱。在生理钙浓度下,丙酮酸条件下衰老会降低状态III呼吸速率(-22%),但谷氨酸条件下不会。丙酮酸氧化的减少是由于丙酮酸脱氢酶系统的钙依赖性失活,这可能导致肌肉减少症期间众所周知的蛋白水解。基质钙负荷和衰老会增加ROS生成。它们还会降低氧化磷酸化。这与较低的钙保留能力相关,表明肌肉减少症纤维更容易发生程序性细胞死亡。衰老还与线粒体超氧化物歧化酶活性降低有关,这不会干预有毒ROS的过度产生,但可以解释较低的钙保留能力。尽管含量较低,但细胞色素c氧化酶的活性增加,这与线粒体磷脂中n-6/n-3多不饱和脂肪酸比例增加有关。总之,我们认为从老年肌肉纤维中获得的线粒体表现出多种功能异常,这解释了肌肉减少症肌肉中蛋白水解增加、ROS过度产生以及对细胞凋亡的易感性增加。这些变化似乎与线粒体脂质脂肪酸谱的改变有关。

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