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热休克蛋白在耐热性中的作用。

The role of heat-shock proteins in thermotolerance.

作者信息

Parsell D A, Taulien J, Lindquist S

机构信息

Howard Hughes Medical Institute, University of Chicago, Illinois 60637.

出版信息

Philos Trans R Soc Lond B Biol Sci. 1993 Mar 29;339(1289):279-85; discussion 285-6. doi: 10.1098/rstb.1993.0026.

Abstract

The role of heat-shock proteins (hsps) in thermotolerance was examined in the budding yeast Saccharomyces cerevisiae and in the fruit fly Drosophila melanogaster. In yeast cells, the major protein responsible for thermotolerance is hsp 100. In cells carrying mutations in the hsp 100 gene, HSP 104, growth is normal at both high and low temperatures, but the ability of cells to survive extreme temperatures is severely impaired. The loss of thermotolerance is apparently due to the absence of the hsp 104 protein itself because, with the exception of the hsp 104 protein, no differences in protein profiles were observed between mutant and wild-type cells. Aggregates found in mutant cells at high temperatures suggest that the cause of death may be the accumulation of denatured proteins. No differences in the rates of protein degradation were observed between mutant and wild-type cells. This, and genetic analysis of cells carrying multiple hsp 70 and hsp 104 mutations, suggests that the primary function of hsp 104 is to rescue proteins from denaturation rather than to degrade them once they have been denatured. Drosophila cells do not produce a protein in the hsp 100 class in response to high temperatures. In this organism, hsp 70 appears to be the primary protein involved in thermotolerance. Thus, the relative importance of different hsps in thermotolerance changes from organism to organism.

摘要

在出芽酵母酿酒酵母和果蝇黑腹果蝇中研究了热休克蛋白(hsps)在耐热性中的作用。在酵母细胞中,负责耐热性的主要蛋白质是hsp 100。在hsp 100基因HSP 104发生突变的细胞中,细胞在高温和低温下生长均正常,但细胞在极端温度下存活的能力严重受损。耐热性的丧失显然是由于hsp 104蛋白本身的缺失,因为除了hsp 104蛋白外,突变细胞和野生型细胞之间未观察到蛋白质谱的差异。在高温下突变细胞中发现的聚集体表明,死亡原因可能是变性蛋白质的积累。突变细胞和野生型细胞之间未观察到蛋白质降解速率的差异。这以及对携带多个hsp 70和hsp 104突变的细胞的遗传分析表明,hsp 104的主要功能是挽救变性蛋白质,而不是在蛋白质变性后将其降解。果蝇细胞在高温下不会产生hsp 100类的蛋白质。在这种生物体中,hsp 70似乎是参与耐热性的主要蛋白质。因此,不同hsps在耐热性中的相对重要性因生物体而异。

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