The impact of aging on mitochondrial function and biogenesis pathways in skeletal muscle of sedentary high‐ and low‐functioning elderly individuals

肌萎缩 MFN2型 线粒体生物发生 骨骼肌 生物 第一季 内科学 肌肉萎缩 SIRT3 线粒体融合 人口 蛋白质稳态 线粒体 内分泌学 生理学 老年学 医学 细胞生物学 遗传学 线粒体DNA 乙酰化 基因 环境卫生 锡尔图因
作者
Bertrand Joseph,Peter J. Adhihetty,Thomas W. Buford,Stephanie E. Wohlgemuth,Hazel A. Lees,Linda M.‐D. Nguyen,Juan M. Aranda,Bhanu D. Sandesara,Marco Pahor,Todd M. Manini,Emanuele Marzetti,Christiaan Leeuwenburgh
出处
期刊:Aging Cell [Wiley]
卷期号:11 (5): 801-809 被引量:333
标识
DOI:10.1111/j.1474-9726.2012.00844.x
摘要

Age-related loss of muscle mass and strength (sarcopenia) leads to a decline in physical function and frailty in the elderly. Among the many proposed underlying causes of sarcopenia, mitochondrial dysfunction is inherent in a variety of aged tissues. The intent of this study was to examine the effect of aging on key groups of regulatory proteins involved in mitochondrial biogenesis and how this relates to physical performance in two groups of sedentary elderly participants, classified as high- and low-functioning based on the Short Physical Performance Battery test. Muscle mass was decreased by 38% and 30% in low-functioning elderly (LFE) participants when compared to young and high-functioning elderly participants, respectively, and positively correlated to physical performance. Mitochondrial respiration in permeabilized muscle fibers was reduced (41%) in the LFE group when compared to the young, and this was associated with a 30% decline in cytochrome c oxidase activity. Levels of key metabolic regulators, SIRT3 and PGC-1α, were significantly reduced (50%) in both groups of elderly participants when compared to young. Similarly, the fusion protein OPA1 was lower in muscle from elderly subjects; however, no changes were detected in Mfn2, Drp1 or Fis1 among the groups. In contrast, protein import machinery components Tom22 and cHsp70 were increased in the LFE group when compared to the young. This study suggests that aging in skeletal muscle is associated with impaired mitochondrial function and altered biogenesis pathways and that this may contribute to muscle atrophy and the decline in muscle performance observed in the elderly population.
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