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HSF 转录因子家族、热休克反应和蛋白质固有无序性。

HSF transcription factor family, heat shock response, and protein intrinsic disorder.

机构信息

Department of Molecular Medicine, College of Medicine, University of South Florida, Tampa, FL 33612, USA.

出版信息

Curr Protein Pept Sci. 2012 Feb;13(1):86-103. doi: 10.2174/138920312799277956.

Abstract

Intrinsically disordered proteins are highly abundant in all kingdoms of life, and several protein functional classes, such as transcription factors, transcriptional regulators, hub and scaffold proteins, signaling proteins, and chaperones are especially enriched in intrinsic disorder. One of the unique cellular reactions to protein damaging stress is the so-called heat shock response that results in the upregulation of heat shock proteins including molecular chaperones. This molecular protective mechanism is conserved from prokaryotes to eukaryotes and allows an organism to respond to various proteotoxic stressors, such as heat shock, oxidative stress, exposure to heavy metals, and drugs. The heat shock response- related proteins can be expressed during normal conditions (e.g., during the cell growth and development) or can be induced by various pathological conditions, such as infection, inflammation, and protein conformation diseases. The initiation of the heat shock response is manifested by the activation of the heat shock transcription factors HSF 1, part of a family of related HSF transcription factors. This review analyzes the abundance and functional roles of intrinsic disorder in various heat shock transcription factors and clearly shows that the heat shock response requires HSF flexibility to be more efficient.

摘要

无规则蛋白质在所有生命领域中都高度丰富,并且有几个蛋白质功能类别,如转录因子、转录调节剂、枢纽和支架蛋白、信号蛋白和伴侣蛋白,特别富含无规则结构。细胞对蛋白质损伤应激的一种独特反应是所谓的热休克反应,导致热休克蛋白(包括分子伴侣)的上调。这种分子保护机制在原核生物到真核生物中是保守的,使生物体能够对各种蛋白毒性应激源(如热休克、氧化应激、暴露于重金属和药物)作出反应。热休克反应相关蛋白可以在正常条件下表达(例如,在细胞生长和发育期间),也可以由各种病理条件诱导,如感染、炎症和蛋白质构象疾病。热休克反应的启动表现为热休克转录因子 HSF1 的激活,HSF1 是一系列相关 HSF 转录因子的一部分。这篇综述分析了无规则结构在各种热休克转录因子中的丰度和功能作用,并清楚地表明热休克反应需要 HSF 的灵活性才能更有效。

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