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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >The rye Mutants Identify a Role for Ssn/Srb Proteins of the RNA Polymerase II Holoenzyme During Stationary Phase Entry in Saccharomyces cerevisiae
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The rye Mutants Identify a Role for Ssn/Srb Proteins of the RNA Polymerase II Holoenzyme During Stationary Phase Entry in Saccharomyces cerevisiae

机译:黑麦突变体确定在酿酒酵母固定阶段进入过程中的RNA聚合酶II全酶的Ssn / Srb蛋白的作用。

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Saccharomyces cerevisiae cells enter into a distinct resting state, known as stationary phase, in response to specific types of nutrient deprivation. We have identified a collection of mutants that exhibited a defective transcriptional response to nutrient limitation and failed to enter into a normal stationary phase. These rye mutants were isolated on the basis of defects in the regulation of YGP1 expression. In wild-type cells, YGP1 levels increased during the growth arrest caused by nutrient deprivation or inactivation of the Ras signaling pathway. In contrast, the levels of YGP1 and related genes were significantly elevated in the rye mutants during log phase growth. The rye defects were not specific to this YGP1 response as these mutants also exhibited multiple defects in stationary phase properties, including an inability to survive periods of prolonged starvation. These data indicated that the RYE genes might encode important regulators of yeast cell growth. Interestingly, three of the RYE genes encoded the Ssn/Srb proteins, Srb9p, Srb10p, and Srb11p, which are associated with the RNA polymerase II holoenzyme. Thus, the RNA polymerase II holoenzyme may be a target of the signaling pathways responsible for coordinating yeast cell growth with nutrient availability.
机译:酿酒酵母细胞响应特定类型的营养剥夺而进入不同的静止状态,称为静止期。我们已经鉴定出了一组突变体,这些突变体对营养限制显示出有缺陷的转录反应,并且无法进入正常的静止期。这些黑麦突变体是基于YGP1表达调控的缺陷而分离的。在野生型细胞中,由于营养缺乏或Ras信号通路失活而导致生长停滞期间YGP1水平升高。相反,在对数生长期,黑麦突变体中YGP1和相关基因的水平显着升高。黑麦缺陷不是特定于该YGP1反应的,因为这些突变体还在固定相特性中表现出多种缺陷,包括无法长期处于饥饿状态。这些数据表明RYE基因可能编码酵母细胞生长的重要调节剂。有趣的是,三个RYE基因编码Ssn / Srb蛋白Srb9p,Srb10p和Srb11p,它们与RNA聚合酶II全酶相关。因此,RNA聚合酶II全酶可能是负责协调酵母细胞生长与养分利用率的信号传导途径的靶标。

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