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首页> 外文期刊>Molecular biology reports >Characterization of Gac1p, a regulatory subunit of protein phosphatase type I involved in glycogen accumulation in Saccharomyces cerevisiae.
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Characterization of Gac1p, a regulatory subunit of protein phosphatase type I involved in glycogen accumulation in Saccharomyces cerevisiae.

机译:Gac1p的特性,Gac1p是I型蛋白磷酸酶的调节亚基,参与酿酒酵母中的糖原积累。

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摘要

GAC1 and GLC7 encode regulatory and catalytic subunits, respectively, of a type 1 phosphatase (PP1) in Saccharomyces cerevisiae that controls glycogen synthesis by regulating the phosphorylation state of glycogen synthase (Gsy2p). To investigate the role of Gac1p in this process, a set of GAC1 deletions were tested for their ability to complement a gac1 null mutation and to associate with Glc7p and with Gsy2p. The N-terminal 93 amino acids of Gaclp are necessary and sufficient for the interaction with Glc7p, whereas a region spanning residues 130-502 is required for Gsy2p binding. Both domains are required for full activity in vivo, although the Glc7p-binding domain retains some residual activity and can alter the phosphorylase a phosphatase activity of Glc7p in vitro. Further mutational analysis showed that Val71 and Phe73 of Gaclp are necessary for binding to Glc7p, while Asn356 and Tyr357 of Gaclp are necessary for binding to Gsy2p. These results suggest that Gac1p targets PPI to its substrate Gsy2pand that Gac1p may alter the catalytic activity of PP . Our data also show that overexpression of Gac1p affects glucose repression and ion homeostasis, two additional targets of GLC7, suggesting that multiple regulatory subunits compete for Glc7p binding in vivo.
机译:GAC1和GLC7分别编码酿酒酵母(Saccharomyces cerevisiae)中1型磷酸酶(PP1)的调节亚基和催化亚基,该酶通过调节糖原合酶(Gsy2p)的磷酸化状态来控制糖原合成。为了研究Gac1p在此过程中的作用,测试了一组GAC1缺失与gac1无效突变互补以及与Glc7p和Gsy2p结合的能力。 Gaclp的N末端93个氨基酸对于与Glc7p相互作用是必需和充分的,而Gsy2p结合则需要跨越残基130-502的区域。尽管Glc7p结合结构域保留了一些残留的活性,并且可以在体外改变Glc7p的磷酸化酶和磷酸酶的活性,但两个域都需要具有完整的体内活性。进一步的突变分析表明,Gaclp的Val71和Phe73是与Glc7p结合所必需的,而Gaclp的Asn356和Tyr357是与Gsy2p结合所必需的。这些结果表明,Gac1p将PPI靶向到其底物Gsy2上,并且Gac1p可能改变PP的催化活性。我们的数据还显示,Gac1p的过表达影响葡萄糖抑制和离子稳态,这是GLC7的另外两个目标,这表明多个调节亚基在体内竞争Glc7p的结合。

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