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Role of Tos3, a Snf1 Protein Kinase Kinase, during Growth of Saccharomyces cerevisiae on Nonfermentable Carbon Sources

机译:Tos3,Snf1蛋白激酶激酶在酿酒酵母在不可发酵碳源上的生长过程中的作用

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In Saccharomyces cerevisiae, Snf1 protein kinase of the Snf1/AMP-activated protein kinase family is required for growth on nonfermentable carbon sources and nonpreferred sugars. Three kinases, Pak1, Elm1, and Tos3, activate Snf1 by phosphorylation of its activation-loop threonine, and the absence of all three causes the Snf? phenotype. No phenotype has previously been reported for the tos3Δ single mutation. We show here that, when cells are grown on glycerol-ethanol, tos3Δ reduces growth rate, Snf1 catalytic activity, and activation of the Snf1-dependent carbon source-responsive element (CSRE) in the promoters of gluconeogenic genes. In contrast, tos3Δ did not significantly affect Snf1 catalytic activity or CSRE function during abrupt glucose depletion, indicating that Tos3 has a more substantial role in activating Snf1 protein kinase during growth on a nonfermentable carbon source than during acute carbon stress. We also report that Tos3 is localized in the cytosol during growth in either glucose or glycerol-ethanol. These findings lend support to the idea that the Snf1 protein kinase kinases make different contributions to cellular regulation under different growth conditions.
机译:中,Snf1 / AMP激活的蛋白激酶家族的Snf1蛋白激酶是不可发酵碳源和非优选糖类生长的必需条件。 Pak1,Elm1和Tos3这三种激酶通过其激活环苏氨酸的磷酸化来激活Snf1,而所有这三种激酶的缺失会导致Snf ?表型。以前没有关于tos3Δ单突变的表型报道。我们在这里显示,当细胞在甘油-乙醇上生长时, tos3 Δ会降低生长速度,Snf1催化活性以及Snf1依赖性碳源响应元件(CSRE)在启动子中的激活。糖异生基因。相比之下, tos3 Δ在突然的葡萄糖耗竭期间并没有显着影响Snf1的催化活性或CSRE功能,这表明与在急性发酵过程中相比,Tos3在不可发酵碳源上的生长过程中对Snf1蛋白激酶的激活作用更为重要。碳压力。我们还报告了在葡萄糖或甘油-乙醇的生长过程中,Tos3位于细胞质中。这些发现支持了Snf1蛋白激酶激酶在不同生长条件下对细胞调节做出不同贡献的想法。

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