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衰老人类骨骼肌中的体育锻炼会增加线粒体钙单向转运体的表达水平,并影响线粒体动力学。

Physical exercise in aging human skeletal muscle increases mitochondrial calcium uniporter expression levels and affects mitochondria dynamics.

作者信息

Zampieri Sandra, Mammucari Cristina, Romanello Vanina, Barberi Laura, Pietrangelo Laura, Fusella Aurora, Mosole Simone, Gherardi Gaia, Höfer Christian, Löfler Stefan, Sarabon Nejc, Cvecka Jan, Krenn Matthias, Carraro Ugo, Kern Helmut, Protasi Feliciano, Musarò Antonio, Sandri Marco, Rizzuto Rosario

机构信息

Ludwig Boltzmann Institute of Electrical Stimulation and Physical Rehabilitation, Vienna, Austria

Venetian Institute of Molecular Medicine, Padova, Italy.

出版信息

Physiol Rep. 2016 Dec;4(24). doi: 10.14814/phy2.13005.

Abstract

Age-related sarcopenia is characterized by a progressive loss of muscle mass with decline in specific force, having dramatic consequences on mobility and quality of life in seniors. The etiology of sarcopenia is multifactorial and underlying mechanisms are currently not fully elucidated. Physical exercise is known to have beneficial effects on muscle trophism and force production. Alterations of mitochondrial Ca homeostasis regulated by mitochondrial calcium uniporter (MCU) have been recently shown to affect muscle trophism in vivo in mice. To understand the relevance of MCU-dependent mitochondrial Ca uptake in aging and to investigate the effect of physical exercise on MCU expression and mitochondria dynamics, we analyzed skeletal muscle biopsies from 70-year-old subjects 9 weeks trained with either neuromuscular electrical stimulation (ES) or leg press. Here, we demonstrate that improved muscle function and structure induced by both trainings are linked to increased protein levels of MCU Ultrastructural analyses by electron microscopy showed remodeling of mitochondrial apparatus in ES-trained muscles that is consistent with an adaptation to physical exercise, a response likely mediated by an increased expression of mitochondrial fusion protein OPA1. Altogether these results indicate that the ES-dependent physiological effects on skeletal muscle size and force are associated with changes in mitochondrial-related proteins involved in Ca homeostasis and mitochondrial shape. These original findings in aging human skeletal muscle confirm the data obtained in mice and propose MCU and mitochondria-related proteins as potential pharmacological targets to counteract age-related muscle loss.

摘要

与年龄相关的肌肉减少症的特征是肌肉质量逐渐丧失,比肌力下降,这对老年人的活动能力和生活质量产生了巨大影响。肌肉减少症的病因是多因素的,其潜在机制目前尚未完全阐明。已知体育锻炼对肌肉营养和力量产生具有有益影响。最近研究表明,由线粒体钙单向转运体(MCU)调节的线粒体钙稳态改变会影响小鼠体内的肌肉营养。为了了解MCU依赖性线粒体钙摄取在衰老过程中的相关性,并研究体育锻炼对MCU表达和线粒体动力学的影响,我们分析了70岁受试者的骨骼肌活检样本,这些受试者接受了9周的神经肌肉电刺激(ES)或腿举训练。在此,我们证明,两种训练诱导的肌肉功能和结构改善与MCU蛋白水平升高有关。电子显微镜的超微结构分析显示,ES训练的肌肉中线粒体装置发生重塑,这与对体育锻炼的适应性一致,这种反应可能是由线粒体融合蛋白OPA1表达增加介导的。总之,这些结果表明,ES对骨骼肌大小和力量的生理影响与参与钙稳态和线粒体形态的线粒体相关蛋白的变化有关。这些在衰老人类骨骼肌中的原始发现证实了在小鼠中获得的数据,并提出MCU和线粒体相关蛋白作为对抗年龄相关肌肉损失的潜在药理学靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73d8/5210373/81f58a784a20/PHY2-4-e13005-g001.jpg

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