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分子进化允许绕过对Cdc28细胞周期蛋白依赖性激酶激活环磷酸化的需求。

Molecular evolution allows bypass of the requirement for activation loop phosphorylation of the Cdc28 cyclin-dependent kinase.

作者信息

Cross F R, Levine K

机构信息

The Rockefeller University, New York, New York 10021, USA.

出版信息

Mol Cell Biol. 1998 May;18(5):2923-31. doi: 10.1128/MCB.18.5.2923.

Abstract

Many protein kinases are regulated by phosphorylation in the activation loop, which is required for enzymatic activity. Glutamic acid can substitute for phosphothreonine in some proteins activated by phosphorylation, but this substitution (T169E) at the site of activation loop phosphorylation in the Saccharomyces cerevisiae cyclin-dependent kinase (Cdk) Cdc28p blocks biological function and protein kinase activity. Using cycles of error-prone DNA amplification followed by selection for successively higher levels of function, we identified mutant versions of Cdc28p-T169E with high biological activity. The enzymatic and biological activity of the mutant Cdc28p was essentially normally regulated by cyclin, and the mutants supported normal cell cycle progression and regulation. Therefore, it is not a requirement for control of the yeast cell cycle that Cdc28p be cyclically phosphorylated and dephosphorylated. These CDC28 mutants allow viability in the absence of Cak1p, the essential kinase that phosphorylates Cdc28p-T169, demonstrating that T169 phosphorylation is the only essential function of Cak1p. Some growth defects remain in suppressed cak1 cdc28 strains carrying the mutant CDC28 genes, consistent with additional nonessential roles for CAK1.

摘要

许多蛋白激酶在激活环中通过磷酸化进行调节,这是酶活性所必需的。在一些因磷酸化而激活的蛋白质中,谷氨酸可以替代磷酸苏氨酸,但酿酒酵母细胞周期蛋白依赖性激酶(Cdk)Cdc28p激活环磷酸化位点的这种替代(T169E)会阻断生物学功能和蛋白激酶活性。通过易错DNA扩增循环,然后选择功能水平不断提高的产物,我们鉴定出了具有高生物学活性的Cdc28p-T169E突变体。突变型Cdc28p的酶活性和生物学活性基本上受细胞周期蛋白正常调节,这些突变体支持正常的细胞周期进程和调节。因此,Cdc28p进行周期性磷酸化和去磷酸化并非酵母细胞周期调控的必要条件。这些CDC28突变体在缺乏Cak1p(磷酸化Cdc28p-T169的必需激酶)的情况下仍具有活力,这表明T169磷酸化是Cak1p唯一的必需功能。在携带突变型CDC28基因的抑制型cak1 cdc28菌株中仍存在一些生长缺陷,这与CAK1的其他非必需作用一致。

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