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糖原结合结构域和Snf4在葡萄糖对SNF1蛋白激酶抑制作用中的作用。

Roles of the glycogen-binding domain and Snf4 in glucose inhibition of SNF1 protein kinase.

作者信息

Momcilovic Milica, Iram Surtaj H, Liu Yang, Carlson Marian

机构信息

Department of Biochemistry and Molecular Biophysics, Columbia University, New York, New York 10032, USA.

出版信息

J Biol Chem. 2008 Jul 11;283(28):19521-9. doi: 10.1074/jbc.M803624200. Epub 2008 May 12.

Abstract

The SNF1/AMP-activated protein kinase (AMPK) family is required for adaptation to metabolic stress and energy homeostasis. The gamma subunit of AMPK binds AMP and ATP, and mutations that affect binding cause human disease. We have here addressed the role of the Snf4 (gamma) subunit in regulating SNF1 protein kinase in response to glucose availability in Saccharomyces cerevisiae. Previous studies of mutant cells lacking Snf4 suggested that Snf4 counteracts autoinhibition by the C-terminal sequence of the Snf1 catalytic subunit but is dispensable for glucose regulation, and AMP does not activate SNF1 in vitro. We first introduced substitutions at sites that, in AMPK, contribute to nucleotide binding and regulation. Mutations at several sites relieved glucose inhibition of SNF1, as judged by catalytic activity, phosphorylation of the activation-loop Thr-210, and growth assays, although analogs of the severe human mutations R531G/Q had little effect. We further showed that alterations of Snf4 residues that interact with the glycogen-binding domain (GBD) of the beta subunit strongly relieved glucose inhibition. Finally, substitutions in the GBD of the Gal83 beta subunit that are predicted to disrupt interactions with Snf4 and also complete deletion of the GBD similarly relieved glucose inhibition of SNF1. Analysis of mutant cells lacking glycogen synthase showed that regulation of SNF1 is normal in the absence of glycogen. These findings reveal novel roles for Snf4 and the GBD in regulation of SNF1.

摘要

SNF1/AMP激活的蛋白激酶(AMPK)家族对于适应代谢应激和能量稳态是必需的。AMPK的γ亚基结合AMP和ATP,影响结合的突变会导致人类疾病。我们在此探讨了酿酒酵母中Snf4(γ)亚基在响应葡萄糖可用性时对SNF1蛋白激酶的调节作用。先前对缺乏Snf4的突变细胞的研究表明,Snf4可抵消Snf1催化亚基C端序列的自身抑制作用,但对葡萄糖调节是可有可无的,且AMP在体外不能激活SNF1。我们首先在AMPK中对参与核苷酸结合和调节的位点进行了替换。通过催化活性、激活环Thr-210的磷酸化以及生长试验判断,几个位点的突变减轻了葡萄糖对SNF1的抑制作用,尽管严重人类突变R531G/Q的类似物影响很小。我们进一步表明,与β亚基糖原结合结构域(GBD)相互作用的Snf4残基的改变强烈减轻了葡萄糖抑制作用。最后,预计会破坏与Snf4相互作用的Gal83β亚基GBD中的替换以及GBD的完全缺失同样减轻了葡萄糖对SNF1的抑制作用。对缺乏糖原合酶的突变细胞的分析表明,在没有糖原的情况下SNF1的调节是正常的。这些发现揭示了Snf4和GBD在SNF1调节中的新作用。

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