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Compartmentalized muscle redox signals controlling exercise metabolism – Current state future challenges

机译:划分的肌肉氧化还原信号控制运动代谢 - 当前状态未来挑战

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摘要

Exercise imposes cellular stress on contracting skeletal muscle fibers, forcing them to complete molecular adaptations to maintain homeostasis. There is mounting evidence that redox signaling by reactive oxygen species (ROS) is vital for skeletal muscle exercise adaptations across many different exercise modalities. The study of redox signaling is moving towards a growing appreciation that these ROS do not signal in a global unspecific way, but rather elicit their effects in distinct subcellular compartments. This short review will first outline the sources of ROS in exercising skeletal muscle and then discuss some examples of exercise adaptations, which are evidenced to be regulated by compartmentalized redox signaling. We speculate that knowledge of these redox pathways might one day allow targeted manipulation to increase redox-signaling in specific compartments to augment the exercise-hormetic response in health and disease.
机译:运动施加对骨骼肌纤维的收缩骨折,迫使他们完成分子适应以维持稳态。有证据证据表明反应性氧(ROS)的氧化还原信号对许多不同运动方式的骨骼肌运动适应至关重要。氧化还原信号传导的研究正在朝着日益增长的欣赏,即这些ROS不会以全球的非特异性方式发出信号,而是引起它们在不同的亚细胞室中的效果。这篇短暂的审查将首先概述锻炼骨骼肌的ROS来源,然后讨论一些运动适应的例子,这证明是由划分的氧化还原信号调节。我们推测了这些氧化还原途径的知识可能有一天允许有针对性的操纵来增加特定隔间中的氧化还原信令,以增加健康和疾病的运动激素应答。

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