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在衰老的骨骼肌中,线粒体能量代谢在体内受损。

Mitochondrial energetics is impaired in vivo in aged skeletal muscle.

作者信息

Gouspillou Gilles, Bourdel-Marchasson Isabelle, Rouland Richard, Calmettes Guillaume, Biran Marc, Deschodt-Arsac Véronique, Miraux Sylvain, Thiaudiere Eric, Pasdois Philippe, Detaille Dominique, Franconi Jean-Michel, Babot Marion, Trézéguet Véronique, Arsac Laurent, Diolez Philippe

机构信息

Résonance Magnétique des Systèmes Biologiques, UMR 5536 CNRS - Bordeaux Segalen University, Bordeaux, France; Département de Kinanthropologie, Université du Québec à Montréal, Montreal, Quebec, Canada.

出版信息

Aging Cell. 2014 Feb;13(1):39-48. doi: 10.1111/acel.12147. Epub 2013 Sep 19.

Abstract

With aging, most skeletal muscles undergo a progressive loss of mass and strength, a process termed sarcopenia. Aging-related defects in mitochondrial energetics have been proposed to be causally involved in sarcopenia. However, changes in muscle mitochondrial oxidative phosphorylation with aging remain a highly controversial issue, creating a pressing need for integrative approaches to determine whether mitochondrial bioenergetics are impaired in aged skeletal muscle. To address this issue, mitochondrial bioenergetics was first investigated in vivo in the gastrocnemius muscle of adult (6 months) and aged (21 months) male Wistar rats by combining a modular control analysis approach with (31) P magnetic resonance spectroscopy measurements of energetic metabolites. Using this innovative approach, we revealed that the in vivo responsiveness ('elasticity') of mitochondrial oxidative phosphorylation to contraction-induced increase in ATP demand is significantly reduced in aged skeletal muscle, a reduction especially pronounced under low contractile activities. In line with this in vivo aging-related defect in mitochondrial energetics, we found that the mitochondrial affinity for ADP is significantly decreased in mitochondria isolated from aged skeletal muscle. Collectively, the results of this study demonstrate that mitochondrial bioenergetics are effectively altered in vivo in aged skeletal muscle and provide a novel cellular basis for this phenomenon.

摘要

随着年龄增长,大多数骨骼肌会逐渐出现质量和力量的丧失,这一过程被称为肌肉减少症。线粒体能量代谢方面与衰老相关的缺陷被认为与肌肉减少症存在因果关系。然而,肌肉线粒体氧化磷酸化随衰老的变化仍然是一个极具争议的问题,因此迫切需要采用综合方法来确定老年骨骼肌中的线粒体生物能量学是否受损。为了解决这个问题,我们首先通过将模块化控制分析方法与高能代谢物的(31)P磁共振波谱测量相结合,在成年(6个月)和老年(21个月)雄性Wistar大鼠的腓肠肌中对线粒体生物能量学进行了体内研究。使用这种创新方法,我们发现老年骨骼肌中线粒体氧化磷酸化对收缩诱导的ATP需求增加的体内反应性(“弹性”)显著降低,这种降低在低收缩活动下尤为明显。与线粒体能量代谢中这种与衰老相关的体内缺陷一致,我们发现从老年骨骼肌分离的线粒体对ADP的亲和力显著降低。总体而言,本研究结果表明老年骨骼肌中线粒体生物能量学在体内发生了有效改变,并为这一现象提供了新的细胞基础。

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