Liu X D, Morano K A, Thiele D J
Department of Biological Chemistry, University of Michigan Medical School, Ann Arbor, Michigan 48109-0606, USA.
J Biol Chem. 1999 Sep 17;274(38):26654-60. doi: 10.1074/jbc.274.38.26654.
In eukaryotes, production of the diverse repertoire of molecular chaperones during normal growth and in response to stress is governed by the heat shock transcription factor HSF. The HSC82 and HSP82 genes, encoding isoforms of the yeast Hsp90 molecular chaperone, were recently identified as targets of the HSF carboxyl-terminal activation domain (CTA), whose expression is required for cell cycle progression during prolonged heat stress conditions. In the present study, we have identified additional target genes of the HSF CTA, which include nearly all of the heat shock-inducible members of the Hsp90 chaperone complex, demonstrating coordinate regulation of these components by HSF. Heat shock induction of SSE1, encoding a member of the Hsp110 family of heat shock proteins, was also dependent on the HSF CTA. Disruption of SSE1 along with STI1, encoding an established subunit of the Hsp90 chaperone complex, resulted in a severe synthetic growth phenotype. Sse1 associated with partially purified Hsp90 complexes and deletion of the SSE1 gene rendered cells susceptible to the Hsp90 inhibitors macbecin and geldanamycin, suggesting functional interaction between Sse1 and Hsp90. Sse1 is required for function of the glucocorticoid receptor, a model substrate of the Hsp90 chaperone machinery, and Hsp90-based repression of HSF under nonstress conditions. Taken together, these data establish Sse1 as an integral new component of the Hsp90 chaperone complex in yeast.
在真核生物中,正常生长期间以及应激反应时各种分子伴侣的产生受热休克转录因子HSF调控。编码酵母Hsp90分子伴侣异构体的HSC82和HSP82基因,最近被确定为HSF羧基末端激活域(CTA)的靶标,其表达是长时间热应激条件下细胞周期进程所必需的。在本研究中,我们鉴定出了HSF CTA的其他靶基因,其中包括Hsp90伴侣复合物几乎所有热休克诱导型成员,这表明HSF对这些组分进行协同调控。编码热休克蛋白Hsp110家族成员的SSE1的热休克诱导也依赖于HSF CTA。SSE1与编码Hsp90伴侣复合物一个既定亚基的STI1一起缺失,导致严重的合成生长表型。Sse1与部分纯化的Hsp90复合物相关联,SSE1基因的缺失使细胞对Hsp90抑制剂马贝西霉素和格尔德霉素敏感,这表明Sse1与Hsp90之间存在功能相互作用。Sse1是糖皮质激素受体功能所必需的,糖皮质激素受体是Hsp90伴侣机制的一个模型底物,并且在非应激条件下基于Hsp90对HSF进行抑制。综上所述,这些数据确定Sse1是酵母中Hsp90伴侣复合物一个不可或缺的新组分。