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Role of exercise-induced reactive oxygen species in the modulation of heat shock protein response

机译:运动诱导的活性氧在热休克蛋白应答调节中的作用

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摘要

The multiple roles that have been associated with heat shock proteins (HSPs), inside and outside cells are remarkable. HSPs have been found to play a fundamental role in multiple stress conditions and to off er protection from subsequent insults. Exercise, because of the physiological stresses associated with it, is one of the main stimuli associated with a robust increase of different HSPs in several tissues. Given the combination of physiological stresses induced by exercise, and the 'cross-talk' that occurs between signaling pathways in different tissues, it is likely that exercise induces the HSP expression through a combination of 'stressors', among which reactive oxygen species (ROS) could play a major role. Indeed, although an imbalance between ROS production and antioxidant levels results in oxidative stress, causing damage to lipids, proteins, and nucleic acids with a possible activation of the programed cell death pathway, at moderate concentrations ROS play an important role as regulatory mediators in signaling processes. Many of the ROS-mediated responses actually protect the cells against oxidative stress and re-establish redox homeostasis. The aim of this review is to provide a critical update on the role of exercise-induced ROS in the modulation of the HSP's response, focusing on experimental results from animal and human studies where the link between redox homeostasis and HSPs' expression in different tissues has been addressed.
机译:在细胞内部和外部,与热激蛋白(HSP)相关的多种作用非常显着。已经发现,热休克蛋白在多种压力条件下起着根本性的作用,并可以防止随后的伤害。由于与之相关的生理压力,运动是与几种组织中不同HSP的强劲增加相关的主要刺激之一。考虑到运动引起的生理压力的组合以及在不同组织的信号传导途径之间发生的“串扰”,运动有可能通过“压力源”的组合诱导HSP表达,其中活性氧(ROS) )可以发挥重要作用。确实,尽管ROS的产生与抗氧化剂水平之间的不平衡会导致氧化应激,导致脂质,蛋白质和核酸的破坏,并可能激活程序性细胞死亡途径,但在中等浓度下,ROS在信号传导中起着调节介质的作用。流程。实际上,许多ROS介导的反应可保护细胞免受氧化应激并重新建立氧化还原稳态。这篇综述的目的是提供关于运动诱导的ROS在调节HSP反应中的作用的重要更新,重点是动物和人类研究的实验结果,其中氧化还原稳态与HSP在不同组织中的表达之间的联系具有重要意义。已解决。

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