热休克:瞬时诱导反应在细胞损伤、转化和分化中的作用。

IF 3.5 Q1 DENTISTRY, ORAL SURGERY & MEDICINE
R I Morimoto
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引用次数: 0

摘要

应激反应在细菌、植物和动物王国的所有生物体中是普遍存在的。这种反应的一个突出特征是一组离散的蛋白质的合成,称为热休克蛋白,已被证明在大量蛋白质生物合成和加工反应中是必不可少的,包括蛋白质折叠和寡聚化,易位和分泌。在热休克和其他形式的生理应激时,热休克蛋白作为细胞内的哨兵来识别折叠错误的蛋白质。热休克反应受到严格调控,包括在生理应激过程中控制应激蛋白优先合成的选择性转录和翻译机制。压力基因表达的失调与多种人类疾病有关。受损蛋白分子与应激蛋白之间的相互作用平衡可能对正常细胞生长和分化产生深远影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Heat shock: the role of transient inducible responses in cell damage, transformation, and differentiation.

The stress response is ubiquitous among all organisms of the bacterial, plant, and animal kingdoms. A prominent feature of this response is the synthesis of a discrete set of proteins, known as heat shock proteins, that have been shown to be essential in a plethora of protein biosynthetic and processing reactions, including protein folding and oligomerization, translocation, and secretion. During heat shock and other forms of physiological stress, heat shock proteins act as intracellular sentinels to recognize malfolded proteins. The heat shock response is tightly regulated and encompasses selective transcriptional and translational mechanisms that control the preferential synthesis of stress proteins during physiological stress. Deregulation of stress gene expression is associated with various human diseases. It is likely that the balance of interactions between damaged protein molecules and stress proteins has profound effects that impinge on normal cell growth and differentiation.

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