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A family of genes required for maintenance of cell wall integrity and for the stress response in Saccharomyces cerevisiae

机译:维持细胞壁完整性所需的基因家族 为了缓解压力 酿酒酵母

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摘要

The PKC1–MPK1 pathway in yeast functions in the maintenance of cell wall integrity and in the stress response. We have identified a family of genes that are putative regulators of this pathway. WSC1, WSC2, and WSC3 encode predicted integral membrane proteins with a conserved cysteine motif and a WSC1–green fluorescence protein fusion protein localizes to the plasma membrane. Deletion of WSC results in phenotypes similar to mutants in the PKC1–MPK1 pathway and an increase in the activity of MPK1 upon a mild heat treatment is impaired in a wscΔ mutant. Genetic analysis places the function of WSC upstream of PKC1, suggesting that they play a role in its activation. We also find a genetic interaction between WSC and the RAS–cAMP pathway. The RAS–cAMP pathway is required for cell cycle progression and for the heat shock response. Overexpression of WSC suppresses the heat shock sensitivity of a strain in which RAS is hyperactivated and the heat shock sensitivity of a wscΔ strain is rescued by deletion of RAS2. The functional characteristics and cellular localization of WSC suggest that they may mediate intracellular responses to environmental stress in yeast.
机译:酵母中的PKC1-MPK1途径在维持细胞壁完整性和应激反应中起作用。我们已经确定了一个基因家族,可能是该途径的调控因子。 WSC1,WSC2和WSC3编码具有保守的半胱氨酸基序的预测完整膜蛋白,而WSC1-绿色荧光蛋白融合蛋白位于质膜上。 WSC的缺失导致表型类似于PKC1-MPK1途径中的突变体,而wscΔ突变体中轻度热处理后MPK1活性的增加受到损害。遗传分析将WSC的功能置于PKC1的上游,表明它们在其激活中起作用。我们还发现WSC和RAS–cAMP途径之间存在遗传相互作用。细胞周期进程和热休克反应需要RAS-cAMP途径。 WSC的过表达抑制了RAS过度活化的菌株的热激敏感性,并且通过以下方式挽救了wscΔ菌株的热激敏感性: 删除RAS2。功能特点及 WSC的细胞定位表明它们可能介导 细胞对酵母中环境压力​​的反应。

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