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运动适应的分子机制新见解:一篇聚焦于线粒体生物发生、线粒体功能、线粒体自噬和自噬的综述。

New Insights into Molecular Mechanisms Mediating Adaptation to Exercise; A Review Focusing on Mitochondrial Biogenesis, Mitochondrial Function, Mitophagy and Autophagy.

机构信息

Nutrient and Metabolite Sensing, Novo Nordisk Foundation Center for Basic Metabolic Research, University of Copenhagen, 2200 Copenhagen, Denmark.

出版信息

Cells. 2021 Oct 2;10(10):2639. doi: 10.3390/cells10102639.

Abstract

Exercise itself is fundamental for good health, and when practiced regularly confers a myriad of metabolic benefits in a range of tissues. These benefits are mediated by a range of adaptive responses in a coordinated, multi-organ manner. The continued understanding of the molecular mechanisms of action which confer beneficial effects of exercise on the body will identify more specific pathways which can be manipulated by therapeutic intervention in order to prevent or treat various metabolism-associated diseases. This is particularly important as exercise is not an available option to all and so novel methods must be identified to confer the beneficial effects of exercise in a therapeutic manner. This review will focus on key emerging molecular mechanisms of mitochondrial biogenesis, autophagy and mitophagy in selected, highly metabolic tissues, describing their regulation and contribution to beneficial adaptations to exercise.

摘要

锻炼本身对健康至关重要,经常锻炼会在多种组织中带来多种代谢益处。这些益处通过一系列协调的、多器官的适应性反应来介导。不断深入了解赋予运动对身体有益影响的分子作用机制,将确定更具体的途径,这些途径可以通过治疗干预来操纵,以预防或治疗各种与代谢相关的疾病。这一点尤为重要,因为并非所有人都可以进行锻炼,因此必须找到新的方法,以治疗的方式来赋予锻炼的有益效果。本综述将重点介绍选定的高代谢组织中线粒体生物发生、自噬和线粒体自噬的关键新兴分子机制,描述它们的调节以及对运动有益适应的贡献。

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