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Hormesis and Cellular Quality Control: A Possible Explanation for the Molecular Mechanisms that Underlie the Benefits of Mild Stress

机译:兴奋和细胞质量控制:潜在的轻度压力的分子机制的可能解释

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In contrast to the detrimental action of severe stress conditions, the beneficial effects of mild stress, known as hormesis, is increasingly discussed and studied. A variety of applications for hormesis in risk assessment processes, anti-ageing strategies and clinical therapies have been proposed. The molecular mechanisms underlying the phenomenon of hormesis, however, are not yet fully understood. A possible mechanism that has been proposed for hormesis, the homoeostasis overshoot hypothesis, assumes that an overshoot of repair- and self-recovery mechanisms in response to mild damage can be held responsible for the beneficial effects of hormesis. The present paper proposes ‘cellular quality control’ as a further explanation of the molecular mechanisms underlying the benefits observed after exposure to mild stress. The most important quality control mechanisms are outlined and their known and hypothesised actions in hormesis are discussed. As an example, different aspects of protein quality control will be described in more detail, which includes the reaction of the cell upon stress-induced protein damage and –aggregation. The regulation of Heat Shock Proteins and components from the ubiquitin proteasome system as part of cellular quality control is described in relation to its beneficial role in hormesis.
机译:与严重压力条件下的有害作用相反,人们越来越多地讨论和研究轻度压力的有益作用,即所谓的兴奋作用。已经提出了在风险评估过程,抗衰老策略和临床疗法中用于兴奋剂的多种应用。但是,尚未完全了解引起兴奋现象的分子机制。已经提出了用于兴奋剂的一种可能的机制,即同位平衡过冲假设,它假定响应轻度损伤而导致的修复和自我恢复机制的过冲可以导致兴奋剂的有益作用。本文提出“细胞质量控制”作为对暴露于轻度应激后所观察到的益处的分子机制的进一步解释。概述了最重要的质量控制机制,并讨论了其在兴奋剂中已知和假定的作用。例如,将更详细地描述蛋白质质量控​​制的不同方面,包括细胞在应激诱导的蛋白质损伤和聚集过程中的反应。关于热激蛋白和来自泛素蛋白酶体系统的组分的调节作为细胞质量控制的一部分,与其在兴奋剂中的有益作用有关。

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