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ETP1/YHL010c is a novel gene needed for the adaptation of Saccharomyces cerevisiae to ethanol

机译:ETP1 / YHL010c是酿酒酵母适应乙醇所需的新基因

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Saccharomyces cerevisiae has the ability to use a variety of different carbon sources to support its growth. Abundant fermentable sugars such as glucose and fructose are metabolized to ethanol that accumulates in the environment. Upon glucose depletion, nonfermentable carbon sources, such as ethanol and glycerol, are sufficient to support growth. However, high ethanol concentrations inhibit yeast growth and can become toxic to the cell. Here we show that YHL010c, a previously uncharacterized gene of S. cerevisiae, is needed by the yeast to adapt to ethanol, either as a sole carbon source or as a stressor. We named the gene ETP1 (Ethanol Tolerance Protein 1) and show that the etp1Delta strain has a growth defect in the presence of ethanol, ETP1 is needed for the ethanol-induced transcriptional activation of the ENA1 promoter and heat shock protein genes (HSP12 and HSP26), and plays a role in ethanol-induced turnover of the low-affinity hexose transporter Hxt3p. In addition, the hypersensitivity of etp1Delta to ethanol stress is partly due to the inability of the mutant to control the level of the cation/H(+) antiporter Nha1p in the cell.
机译:酿酒酵母具有使用多种不同碳源支持其生长的能力。丰富的可发酵糖(例如葡萄糖和果糖)被代谢为乙醇,并在环境中累积。葡萄糖耗尽后,不可发酵的碳源(例如乙醇和甘油)足以支持生长。但是,高浓度的乙醇会抑制酵母菌的生长,并可能对细胞产生毒性。在这里,我们显示酵母需要一个YHL010c(一种以前未鉴定的酿酒酵母基因)来适应乙醇,作为唯一碳源或应激源。我们将基因命名为ETP1(乙醇耐受蛋白1),并表明etp1Delta菌株在乙醇存在下具有生长缺陷,ETP1是乙醇诱导ENA1启动子和热休克蛋白基因(HSP12和HSP26)的转录激活所必需的),并在乙醇诱导的低亲和力己糖转运蛋白Hxt3p的转换中起作用。此外,etp1Delta对乙醇胁迫的超敏性部分是由于突变体无法控制细胞中阳离子/ H(+)反向转运蛋白Nha1p的水平。

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