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Pho85p, a cyclin-dependent protein kinase, and the Snf1p protein kinase act antagonistically to control glycogen accumulation in Saccharomyces cerevisiae.

机译:Pho85p,一种细胞周期蛋白依赖性蛋白激酶,与Snf1p蛋白激酶起拮抗作用,以控制酿酒酵母中的糖原积累。

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摘要

In Saccharomyces cerevisiae, nutrient levels control multiple cellular processes. Cells lacking the SNF1 gene cannot express glucose-repressible genes and do not accumulate the storage polysaccharide glycogen. The impaired glycogen synthesis is due to maintenance of glycogen synthase in a hyperphosphorylated, inactive state. In a screen for second site suppressors of the glycogen storage defect of snf1 cells, we identified a mutant gene that restored glycogen accumulation and which was allelic with PHO85, which encodes a member of the cyclin-dependent kinase family. In cells with disrupted PHO85 genes, we observed hyperaccumulation of glycogen, activation of glycogen synthase, and impaired glycogen synthase kinase activity. In snf1 cells, glycogen synthase kinase activity was elevated. Partial purification of glycogen synthase kinase activity from yeast extracts resulted in the separation of two fractions by phenyl-Sepharose chromatography, both of which phosphorylated and inactivated glycogen synthase. The activity of one of these, GPK2, was inhibited by olomoucine, which potently inhibits cyclin-dependent protein kinases, and contained an approximately 36-kDa species that reacted with antibodies to Pho85p. Analysis of Ser-to-Ala mutations at the three potential Gsy2p phosphorylation sites in pho85 cells implicated Ser-654 and/or Thr-667 in PHO85 control of glycogen synthase. We propose that Pho85p is a physiological glycogen synthase kinase, possibly acting downstream of Snf1p.
机译:在酿酒酵母中,营养水平控制着多个细胞过程。缺少SNF1基因的细胞不能表达葡萄糖可抑制的基因,也不会积累储存的多糖糖原。糖原合成受损是由于糖原合酶维持在过磷酸化的非活性状态。在筛选snf1细胞糖原存储缺陷的第二个位点抑制剂的过程中,我们鉴定了一个突变的基因,该基因可恢复糖原积累并与PHO85等位基因等位,该基因编码细胞周期蛋白依赖性激酶家族的成员。在具有破坏的PHO85基因的细胞中,我们观察到糖原过度积累,糖原合酶激活和糖原合酶激酶活性受损。在snf1细胞中,糖原合酶激酶活性升高。从酵母提取物中部分纯化糖原合酶激酶活性导致通过苯基-琼脂糖层析分离两个部分,两者均磷酸化和灭活了糖原合酶。其中之一GPK2的活性被olomoucine抑制,后者有效抑制细胞周期蛋白依赖性蛋白激酶,并含有约36 kDa的物种,与Pho85p抗体反应。在pho85细胞中三个潜在的Gsy2p磷酸化位点的Ser-to-Ala突变分析涉及在糖原合酶的PHO85控制中涉及Ser-654和/或Thr-667。我们建议Pho85p是一种生理性糖原合酶激酶,可能在Snf1p的下游起作用。

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