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Msn2p/Msn4p作为酵母细胞质硫醇过氧化物酶II的关键转录激活因子。

Msn2p/Msn4p act as a key transcriptional activator of yeast cytoplasmic thiol peroxidase II.

作者信息

Hong Seung-Keun, Cha Mee-Kyung, Choi Yong-Soo, Kim Won-Cheol, Kim Il-Han

机构信息

Department of Biochemistry, Paichai University, Taejon 302-735, Republic of Korea.

出版信息

J Biol Chem. 2002 Apr 5;277(14):12109-17. doi: 10.1074/jbc.M111341200. Epub 2002 Jan 30.

Abstract

We observed that the transcription of Saccharomyces cerevisiae cytoplasmic thiol peroxidase type II (cTPx II) (YDR453C) is regulated in response to various stresses (e.g. oxidative stress, carbon starvation, and heat-shock). It has been suggested that both transcription-activating proteins, Yap1p and Skn7p, regulate the transcription of cTPx II upon exposure to oxidative stress. However, a dramatic loss of transcriptional response to various stresses in yeast mutant strains lacking both Msn2p and Msn4p suggests that the transcription factors act as a principal transcriptional activator. In addition to two Yap1p response elements (YREs), TTACTAA and TTAGTAA, the presence of two stress response elements (STREs) (CCCCT) in the upstream sequence of cTPx II also suggests that Msn2p/Msn4p could control stress-induced expression of cTPx II. Analysis of the transcriptional activity of site-directed mutagenesis of the putative STREs (STRE1 and STRE2) and YREs (TRE1 and YRE2) in terms of the activity of a lacZ reporter gene under control of the cTPx II promoter indicates that STRE2 acts as a principal binding element essential for transactivation of the cTPx II promoter. The transcriptional activity of the cTPx II promoter was exponentially increased after postdiauxic growth. The transcriptional activity of the cTPx II promoter is greatly increased by rapamycin. Deletion of Tor1, Tor2, Ras1, and Ras2 resulted in a considerable induction when compared with their parent strains, suggesting that the transcription of cTPx II is under negative control of the Ras/cAMP and target of rapamycin signaling pathways. Taken together, these results suggest that cTPx II is a target of Msn2p/Msn4p transcription factors under negative control of the Ras-protein kinase A and target of rapamycin signaling pathways. Furthermore, the accumulation of cTPx II upon exposure to oxidative stress and during the postdiauxic shift suggests an important antioxidant role in stationary phase yeast cells.

摘要

我们观察到,酿酒酵母细胞质II型硫醇过氧化物酶(cTPx II)(YDR453C)的转录受多种应激(如氧化应激、碳饥饿和热休克)调控。有研究表明,转录激活蛋白Yap1p和Skn7p在暴露于氧化应激时均调控cTPx II的转录。然而,在同时缺失Msn2p和Msn4p的酵母突变株中,对各种应激的转录反应显著丧失,这表明这些转录因子作为主要的转录激活因子发挥作用。除了两个Yap1p反应元件(YREs),即TTACTAA和TTAGTAA外,cTPx II上游序列中两个应激反应元件(STREs)(CCCCT)的存在也表明Msn2p/Msn4p可能控制应激诱导的cTPx II表达。根据cTPx II启动子控制下的lacZ报告基因活性,对推定的STREs(STRE1和STRE2)和YREs(TRE1和YRE2)进行定点诱变的转录活性分析表明,STRE2作为cTPx II启动子反式激活所必需的主要结合元件。在二次生长后,cTPx II启动子的转录活性呈指数增加。雷帕霉素可显著提高cTPx II启动子的转录活性。与亲本菌株相比,缺失Tor1、Tor2、Ras1和Ras2会导致相当程度的诱导,这表明cTPx II的转录受Ras/cAMP和雷帕霉素信号通路的负调控。综上所述,这些结果表明cTPx II是Msn2p/Msn4p转录因子的靶标,受Ras-蛋白激酶A和雷帕霉素信号通路的负调控。此外,在暴露于氧化应激时以及在二次生长转变期间cTPx II的积累表明其在静止期酵母细胞中具有重要的抗氧化作用。

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