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在酿酒酵母中,通过Pos9/Skn7介导的氧化应激反应受到Ras/PKA途径的负调控。

The oxidative stress response mediated via Pos9/Skn7 is negatively regulated by the Ras/PKA pathway in Saccharomyces cerevisiae.

作者信息

Charizanis C, Juhnke H, Krems B, Entian K D

机构信息

Institut für Mikrobiologie, Johann Wolfgang Goethe-Universität Frankfurt, Biozentrum Niederursel, Germany.

出版信息

Mol Gen Genet. 1999 Jun;261(4-5):740-52. doi: 10.1007/s004380050017.

Abstract

Exposure of Saccharomyces cerevisiae to elevated concentrations of hydrogen peroxide induces transcription of several genes involved in the oxidative stress response. Two major transcription factors are involved in this induction, Pos9/Skn7 and Yap1. Fusions of either Yap1 or Pos9/Skn7 with the Gal4 DNA binding domain are active as transcription factors. Gal4-Yap1-dependent reporter gene activity is only weakly regulated by oxidative stress. In contrast, fusion of the Gal4 DNA binding domain to the Pos9/Skn7 protein results in a transcription factor that is independent of the YAP1 gene and is strictly regulated by oxidative stress, indicating that a signaling cascade impinges on the Pos9/Skn7 protein. We have observed that the Ras/PKA (cAMP-dependent protein kinase A) pathway affects this signaling. When PKA activity was low (in the presence of multicopy PDE2 or a cyr1(D822-->A) mutation) maximum reporter gene activity was observed even in the absence of oxidative stress. In contrast, high PKA activity (in strains mutant for either pde2 or bcy1, or expressing the dominant active Ras2Val19) resulted in a complete loss of activation following oxidative stress. The transcription of Pos9/Skn7 target genes was also affected in Ras/PKA pathway mutants. Furthermore, we demonstrated that activated Pos9/Skn7 is necessary for Yap1-dependent reporter gene induction.

摘要

将酿酒酵母暴露于高浓度过氧化氢中会诱导参与氧化应激反应的多个基因的转录。有两个主要转录因子参与了这种诱导过程,即Pos9/Skn7和Yap1。Yap1或Pos9/Skn7与Gal4 DNA结合结构域的融合物作为转录因子具有活性。Gal4-Yap1依赖性报告基因的活性仅受到氧化应激的微弱调节。相反,将Gal4 DNA结合结构域与Pos9/Skn7蛋白融合会产生一种独立于YAP1基因且受到氧化应激严格调节的转录因子,这表明存在一个信号级联作用于Pos9/Skn7蛋白。我们观察到Ras/PKA(环磷酸腺苷依赖性蛋白激酶A)途径会影响这种信号传导。当PKA活性较低时(在多拷贝PDE2存在或cyr1(D822-->A)突变的情况下),即使在没有氧化应激的情况下也能观察到最大报告基因活性。相反,高PKA活性(在pde2或bcy1突变的菌株中,或表达显性活性Ras2Val19的菌株中)会导致氧化应激后激活作用完全丧失。在Ras/PKA途径突变体中,Pos9/Skn7靶基因的转录也受到影响。此外,我们证明激活的Pos9/Skn7对于Yap1依赖性报告基因的诱导是必需的。

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