MFN2型
粒体自噬
肌萎缩
MFN1型
线粒体
线粒体融合
骨骼肌
生物
细胞生物学
线粒体分裂
肌肉萎缩
萎缩
内科学
医学
内分泌学
解剖
线粒体DNA
心肌细胞
肌肉组织
细胞凋亡
自噬
遗传学
基因
作者
Jean‐Philippe Leduc‐Gaudet,Martin Picard,Félix St-Jean Pelletier,Nicolas Sgarioto,Marie-Joëlle Auger,Joanne Vallée,Richard Robitaille,David H. St-Pierre,Gilles Gouspillou
出处
期刊:Oncotarget
[Impact Journals, LLC]
日期:2015-05-22
卷期号:6 (20): 17923-17937
被引量:197
标识
DOI:10.18632/oncotarget.4235
摘要
Skeletal muscle aging is associated with a progressive decline in muscle mass and strength, a process termed sarcopenia. Evidence suggests that accumulation of mitochondrial dysfunction plays a causal role in sarcopenia, which could be triggered by impaired mitophagy. Mitochondrial function, mitophagy and mitochondrial morphology are interconnected aspects of mitochondrial biology, and may coordinately be altered with aging. However, mitochondrial morphology has remained challenging to characterize in muscle, and whether sarcopenia is associated with abnormal mitochondrial morphology remains unknown. Therefore, we assessed the morphology of SubSarcolemmal (SS) and InterMyoFibrillar (IMF) mitochondria in skeletal muscle of young (8-12wk-old) and old (88-96wk-old) mice using a quantitative 2-dimensional transmission electron microscopy approach. We show that sarcopenia is associated with larger and less circular SS mitochondria. Likewise, aged IMF mitochondria were longer and more branched, suggesting increased fusion and/or decreased fission. Accordingly, although no difference in the content of proteins regulating mitochondrial dynamics (Mfn1, Mfn2, Opa1 and Drp1) was observed, a mitochondrial fusion index (Mfn2-to-Drp1 ratio) was significantly increased in aged muscles. Our results reveal that sarcopenia is associated with complex changes in mitochondrial morphology that could interfere with mitochondrial function and mitophagy, and thus contribute to aging-related accumulation of mitochondrial dysfunction and sarcopenia.
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