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酵母中热休克转录因子的激活不受热休克蛋白表达水平的影响。

Activation of heat shock transcription factor in yeast is not influenced by the levels of expression of heat shock proteins.

作者信息

Hjorth-Sørensen B, Hoffmann E R, Lissin N M, Sewell A K, Jakobsen B K

机构信息

University of Oxford, Institute of Molecular Medicine, John Radcliffe Hospital, Headington, Oxford, OX3 9DS, UK.

出版信息

Mol Microbiol. 2001 Feb;39(4):914-23. doi: 10.1046/j.1365-2958.2001.02279.x.

Abstract

Heat shock transcription factor (HSF) transiently induces the expression of a universally conserved set of proteins, the heat shock proteins (Hsps), when cells are exposed to elevated temperatures as well as to a wide range of other environmental stresses. The tight control of heat shock gene expression has prompted a model, according to which HSF activity and 'free' heat shock protein levels are tied up in a regulatory loop. Other data have indicated that HSF senses stress directly. Here, we report that yeast cells in which the basal expression levels of Hsps have been significantly increased exhibit improved thermotolerance but display no detectable difference in the temperature required for transient activation of HSF. In a separate experiment, overexpression of SSA2, a member of the Hsp70 family and a prominent candidate for the feedback regulation of HSF, did not inhibit the heat shock response. Our findings challenge the dogma that relief of the suppression of HSF activity by Hsps can account for the acute heat shock response.

摘要

当细胞暴露于高温以及多种其他环境应激时,热休克转录因子(HSF)会瞬时诱导一组普遍保守的蛋白质——热休克蛋白(Hsps)的表达。热休克基因表达的严格调控催生了一种模型,据此模型,HSF活性与“游离”热休克蛋白水平处于一个调控环路中。其他数据表明,HSF可直接感知应激。在此,我们报告称,热休克蛋白基础表达水平显著提高的酵母细胞表现出更好的耐热性,但在HSF瞬时激活所需的温度方面未显示出可检测到的差异。在另一项实验中,Hsp70家族成员且是HSF反馈调节的一个重要候选蛋白SSA2的过表达并未抑制热休克反应。我们的发现挑战了一种教条观点,即热休克蛋白对HSF活性抑制的解除可解释急性热休克反应。

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