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Heat shock protein 70 kDa: molecular biology, biochemistry, and physiology.

机译:70 kDa热激蛋白:分子生物学,生物化学和生理学。

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摘要

Heat shock proteins (HSPs) are detected in all cells, prokaryotic and eukaryotic. In vivo and in vitro studies have shown that various stressors transiently increase production of HSPs as protection against harmful insults. Increased levels of HSPs occur after environmental stresses, infection, normal physiological processes, and gene transfer. Although the mechanisms by which HSPs protect cells are not clearly understood, their expression can be modulated by cell signal transducers, such as changes in intracellular pH, cyclic AMP, Ca2+, Na+, inositol trisphosphate, protein kinase C, and protein phosphatases. Most of the HSPs interact with other proteins in cells and alter their function. These and other protein-protein interactions may mediate the little understood effects of HSPs on various cell functions. In this review, we focus on the structure of the HSP-70 family (HSP-70s), regulation of HSP-70 gene expression, their cytoprotective effects, and the possibility of regulating HSP-70 expression through modulation of signal transduction pathways. The clinical importance and therapeutic potential of HSPs are discussed.
机译:在所有原核和真核细胞中均检测到热休克蛋白(HSP)。体内和体外研究表明,各种应激源可暂时增加HSP的产生,以保护免受有害侵害。在环境压力,感染,正常的生理过程和基因转移后,HSPs水平升高。尽管尚不清楚HSP保护细胞的机制,但它们的表达可以通过细胞信号转导物来调节,例如细胞内pH,环状AMP,Ca2 +,Na +,三磷酸肌醇,蛋白激酶C和蛋白磷酸酶的变化。大多数HSP与细胞中的其他蛋白质相互作用并改变其功能。这些和其他蛋白质-蛋白质相互作用可能介导了HSP对各种细胞功能的鲜为人知的作用。在这篇综述中,我们重点研究HSP-70家族(HSP-70s)的结构,HSP-70基因表达的调节,其细胞保护作用以及通过调节信号转导途径调节HSP-70表达的可能性。讨论了HSP的临床重要性和治疗潜力。

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