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热休克反应——病理生理学意义

Heat shock response--pathophysiological implications.

作者信息

Leppä S, Sistonen L

机构信息

Turku Centre for Biotechnology, University of Turku, Finland.

出版信息

Ann Med. 1997 Feb;29(1):73-8. doi: 10.3109/07853899708998745.

Abstract

All organisms exposed to environmental stress conditions share a common molecular response characterized by a dramatic change in the pattern of gene expression followed by an elevated synthesis of heat shock or stress proteins. These proteins function as molecular chaperones to protect cells from environmental stress damage by binding to partially denatured proteins, dissociating protein aggregates, and regulating the correct folding and intracellular translocation of newly synthesized polypeptides. Accumulating evidence supports a role for heat shock proteins in a number of disease states of which inflammatory reactions and ischaema provide the best studied examples. The inducible heat shock response involves transcriptional gene activation mediated by specific regulatory proteins called heat shock transcription factors, which bind to the promoter of heat shock genes in a sequence-specific manner. However, the signalling pathways leading to the activation of these transcription factors need to be characterized in more detail to be able to understand the role, cause, or consequence, of heat shock proteins in human diseases. This review presents recent progress in unravelling the regulation of heat shock gene expression in cells subjected to heat or other forms of stress. By using inflammatory responses and myocardial ischaema as examples, the putative use of heat shock proteins are discussed as targets for future therapeutic applications.

摘要

所有暴露于环境应激条件下的生物体都具有共同的分子反应,其特征是基因表达模式发生显著变化,随后热休克蛋白或应激蛋白的合成增加。这些蛋白质作为分子伴侣发挥作用,通过与部分变性的蛋白质结合、解离蛋白质聚集体以及调节新合成多肽的正确折叠和细胞内转运,保护细胞免受环境应激损伤。越来越多的证据支持热休克蛋白在多种疾病状态中发挥作用,其中炎症反应和缺血是研究得最为充分的例子。可诱导的热休克反应涉及由称为热休克转录因子的特定调节蛋白介导的转录基因激活,这些调节蛋白以序列特异性方式与热休克基因的启动子结合。然而,导致这些转录因子激活的信号通路需要更详细地加以表征,以便能够理解热休克蛋白在人类疾病中的作用、原因或后果。本综述介绍了在揭示受热或其他形式应激的细胞中热休克基因表达调控方面的最新进展。以炎症反应和心肌缺血为例,讨论了热休克蛋白作为未来治疗应用靶点的潜在用途。

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