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Coupling of the Transcriptional Regulation of Glutathione Biosynthesis to the Availability of Glutathione and Methionine via the Met4 and Yap1 Transcription Factors

机译:谷胱甘肽生物合成的转录调控与met4和Yap1转录因子对谷胱甘肽和蛋氨酸的有效性的耦合

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摘要

Depletion of the cellular pool of glutathione is detrimental to eukaryotic cells and in Saccharomyces cerevisiae leads to sensitivity to oxidants and xenobiotics and an eventual cell cycle arrest. Here, we show that the Yap1 and Met4 transcription factors regulate the expression of γ-glutamylcysteine synthetase (GSH1), encoding the rate-limiting enzyme in glutathione biosynthesis to prevent the damaging effects of glutathione depletion. Transcriptional profiling of a gshl mutant indicates that glutathione depletion leads to a general activation of Yap1 target genes, but the expression of Met4-regulated genes remains unaltered. Glutathione depletion appears to result in Yap1 activation via oxidation of thioredoxins, which normally act to down-regulate the Yap1-mediated response. The requirement for Met4 in regulating GSH1 expression is lost in the absence of the centromere-binding protein Cbf1. In contrast, the Yap1-mediated effect is unaffected, indicating that Met4 acts via Cbf1 to regulate the Yap1-mediated induction of GSH1 expression in response to glutathione depletion. Furthermore, yeast cells exposed to the xenobiotic 1-chloro-2,4-dintrobenzene are rapidly depleted of glutathione, accumulate oxidized thioredoxins, and elicit the Yap1/Met4-dependent transcriptional response of GSH1. The addition of methionine, which promotes Met4 ubiquitination and inactivation, specifically represses GSH1 expression after 1-chloro-2,4-dintrobenzene exposure but does not affect Yap1 activation. These results indicate that the Yap1-dependant activation of GSH1 expression in response to glutathione depletion is regulated by the sulfur status of the cell through a specific Met4-dependant mechanism.
机译:谷胱甘肽细胞池的消耗对真核细胞有害,在酿酒酵母中,对氧化剂和异种生物敏感并最终导致细胞周期停滞。在这里,我们显示Yap1和Met4转录因子调节γ-谷氨酰半胱氨酸合成酶(GSH1)的表达,编码谷胱甘肽生物合成中的限速酶,以防止谷胱甘肽耗竭的破坏作用。 gshl突变体的转录谱分析表明,谷胱甘肽耗竭导致Yap1靶基因的普遍激活,但Met4调控基因的表达保持不变。谷胱甘肽耗竭似乎通过硫氧还蛋白的氧化而导致Yap1活化,而硫氧还蛋白通常会下调Yap1介导的反应。在缺少着丝粒结合蛋白Cbf1的情况下,失去了Met4调节GSH1表达的要求。相反,Yap1介导的作用不受影响,表明Met4通过Cbf1发挥作用,以响应谷胱甘肽耗竭而调节Yap1介导的GSH1表达诱导。此外,暴露于异种生物1-氯-2,4-二硝基苯的酵母细胞会迅速消耗谷胱甘肽,积累氧化的硫氧还蛋白,并引发GSH1的Yap1 / Met4依赖性转录反应。甲硫氨酸的添加,促进Met4泛素化和失活,专门抑制1-氯-2,4-二硝基苯暴露后抑制GSH1表达,但不影响Yap1激活。这些结果表明,响应谷胱甘肽耗竭,依赖于Yap1的GSH1表达激活受细胞硫状态的影响,是通过一种特定的Met4依赖性机制来进行的。

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