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热休克蛋白、分子伴侣与应激反应:进化与生态生理学

Heat-shock proteins, molecular chaperones, and the stress response: evolutionary and ecological physiology.

作者信息

Feder M E, Hofmann G E

机构信息

Department of Organismal Biology and Anatomy and Committee on Evolutionary Biology, University of Chicago, Illinois 60637, USA.

出版信息

Annu Rev Physiol. 1999;61:243-82. doi: 10.1146/annurev.physiol.61.1.243.

Abstract

Molecular chaperones, including the heat-shock proteins (Hsps), are a ubiquitous feature of cells in which these proteins cope with stress-induced denaturation of other proteins. Hsps have received the most attention in model organisms undergoing experimental stress in the laboratory, and the function of Hsps at the molecular and cellular level is becoming well understood in this context. A complementary focus is now emerging on the Hsps of both model and nonmodel organisms undergoing stress in nature, on the roles of Hsps in the stress physiology of whole multicellular eukaryotes and the tissues and organs they comprise, and on the ecological and evolutionary correlates of variation in Hsps and the genes that encode them. This focus discloses that (a) expression of Hsps can occur in nature, (b) all species have hsp genes but they vary in the patterns of their expression, (c) Hsp expression can be correlated with resistance to stress, and (d) species' thresholds for Hsp expression are correlated with levels of stress that they naturally undergo. These conclusions are now well established and may require little additional confirmation; many significant questions remain unanswered concerning both the mechanisms of Hsp-mediated stress tolerance at the organismal level and the evolutionary mechanisms that have diversified the hsp genes.

摘要

分子伴侣,包括热休克蛋白(Hsps),是细胞的一个普遍特征,在这些细胞中,这些蛋白质应对应激诱导的其他蛋白质变性。在实验室中经历实验应激的模式生物中,Hsps受到了最多关注,在这种情况下,Hsps在分子和细胞水平上的功能正逐渐被人们所理解。现在,一个互补的关注点正在出现,即关注在自然环境中经历应激的模式生物和非模式生物的Hsps、Hsps在整个多细胞真核生物及其所包含的组织和器官的应激生理学中的作用,以及Hsps和编码它们的基因变异的生态和进化相关性。这一关注点揭示了:(a)Hsps的表达可以在自然环境中发生;(b)所有物种都有hsp基因,但它们的表达模式各不相同;(c)Hsp表达可以与应激抗性相关;(d)物种的Hsp表达阈值与它们自然经历的应激水平相关。这些结论现在已经得到充分证实,但可能几乎不需要更多的证实;关于Hsp介导的生物体应激耐受性机制以及使hsp基因多样化的进化机制,仍有许多重要问题没有答案

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