Haitani Yutaka, Takagi Hiroshi
Graduate School of Biological Sciences, Nara Institute of Science and Technology, 8916-5 Takayama, Ikoma, Nara 630-0192, Japan.
Genes Cells. 2008 Feb;13(2):105-16. doi: 10.1111/j.1365-2443.2007.01154.x.
Rsp5 is an essential and multi-functional E3 ubiquitin ligase in Saccharomyces cerevisiae. We previously isolated the Ala401Glu rsp5 mutant that is hypersensitive to various stresses. In rsp5(A401E) cells, the transcription of the stress protein genes was defective. To understand the mechanism by which Rsp5 regulates the expression of stress proteins, we analyzed the expression and localization of two major transcription factors, Hsf1 and Msn2/4, required for stress protein gene expression in S. cerevisiae. The mRNA levels of HSF1 and MSN2/4 in rsp5(A401E) cells were slightly lower than those of wild-type cells. An interesting finding is that the protein levels of HSF1 and Msn2/4 were remarkably defective in rsp5(A401E) cells after exposure to temperature up-shift and ethanol, although these proteins are mainly localized in the nucleus under these stress conditions. We also showed that the mRNAs of HSF1 and MSN2/4 were accumulated in the nucleus of rsp5(A401E) cells after exposure to temperature up-shift and ethanol, and even under non-stress conditions, suggesting that Rsp5 is required for the nuclear export of these mRNAs. These results indicate that, in response to environmental stresses, Rsp5 primarily regulates the expression of Hsf1 and Msn2/4 at the post-transcriptional level and is involved in the repair system of stress-induced abnormal proteins.
Rsp5是酿酒酵母中一种必需的多功能E3泛素连接酶。我们之前分离出了对各种胁迫超敏感的Ala401Glu rsp5突变体。在rsp5(A401E)细胞中,应激蛋白基因的转录存在缺陷。为了了解Rsp5调节应激蛋白表达的机制,我们分析了酿酒酵母应激蛋白基因表达所需的两种主要转录因子Hsf1和Msn2/4的表达和定位。rsp5(A401E)细胞中HSF1和MSN2/4的mRNA水平略低于野生型细胞。一个有趣的发现是,在暴露于温度升高和乙醇后,rsp5(A401E)细胞中HSF1和Msn2/4的蛋白质水平明显存在缺陷,尽管这些蛋白质在这些应激条件下主要定位于细胞核中。我们还表明,在暴露于温度升高和乙醇后,甚至在非应激条件下,HSF1和MSN2/4的mRNA在rsp5(A401E)细胞的细胞核中积累,这表明Rsp5是这些mRNA核输出所必需的。这些结果表明,在应对环境胁迫时,Rsp5主要在转录后水平调节Hsf1和Msn2/4的表达,并参与应激诱导的异常蛋白的修复系统。