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Cdc28对Cdc5/波罗蛋白激酶的依赖性调控

Cdc28-dependent regulation of the Cdc5/Polo kinase.

作者信息

Mortensen Eric M, Haas Wilhelm, Gygi Melanie, Gygi Steven P, Kellogg Douglas R

机构信息

Sinsheimer Labs, Department of Molecular, Cellular, and Developmental Biology, University of California, Santa Cruz, Santa Cruz, California 95064, USA.

出版信息

Curr Biol. 2005 Nov 22;15(22):2033-7. doi: 10.1016/j.cub.2005.10.046.

Abstract

Polo kinase is activated as cells enter mitosis and plays a central role in coordinating diverse mitotic events, yet the mechanisms leading to activation of Polo kinase are poorly understood . Work in Xenopus meiotic cell cycles has suggested that Polo kinase functions in a pathway that helps trigger activation of Cdk1 . However, studies in other organisms have suggested that activation of Polo kinase is dependent upon Cdk1 and therefore occurs downstream of Cdk1 activation . In this study, we have investigated the role of Cdk1 in the activation of budding yeast Polo kinase. The budding yeast homologs of Cdk1 and Polo kinase are referred to as Cdc28 and Cdc5. We show that signaling from Cdc28 is required to maintain Cdc5 activity in vivo. Furthermore, purified Cdc28 associated with the mitotic cyclin Clb2 is sufficient to activate purified Cdc5 in vitro. A single Cdc28 consensus phosphorylation site found at threonine 242 in the activation loop segment of Cdc5 is required for Cdc5 function in vivo and for kinase activity in vitro, whereas four other Cdc28 consensus sites are dispensable. Analysis of Cdc5 phosphorylation by mass spectrometry indicates that threonine 242 is phosphorylated in vivo. These results suggest that Cdc28 activates Cdc5 via phosphorylation of threonine 242.

摘要

当细胞进入有丝分裂时,Polo激酶被激活,并在协调各种有丝分裂事件中发挥核心作用,然而导致Polo激酶激活的机制却知之甚少。非洲爪蟾减数分裂细胞周期的研究表明,Polo激酶在一条有助于触发Cdk1激活的途径中发挥作用。然而,其他生物体的研究表明,Polo激酶的激活依赖于Cdk1,因此发生在Cdk1激活的下游。在本研究中,我们研究了Cdk1在芽殖酵母Polo激酶激活中的作用。Cdk1和Polo激酶的芽殖酵母同源物分别称为Cdc28和Cdc5。我们表明,来自Cdc28的信号在体内维持Cdc5活性是必需的。此外,与有丝分裂周期蛋白Clb2相关的纯化Cdc28在体外足以激活纯化的Cdc5。在Cdc5激活环段的苏氨酸242处发现的单个Cdc28共有磷酸化位点是Cdc5在体内发挥功能和体外激酶活性所必需的,而其他四个Cdc28共有位点则是可有可无的。通过质谱分析Cdc5磷酸化表明,苏氨酸242在体内被磷酸化。这些结果表明,Cdc28通过苏氨酸242的磷酸化激活Cdc5。

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