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细胞周期蛋白依赖性蛋白激酶Cdc28对DNA聚合酶ε亚基Dpb2进行的细胞周期依赖性磷酸化作用。

Cell cycle-dependent phosphorylation of the DNA polymerase epsilon subunit, Dpb2, by the Cdc28 cyclin-dependent protein kinase.

作者信息

Kesti Tapio, McDonald W Hayes, Yates John R, Wittenberg Curt

机构信息

Departments of Molecular Biology and Cell Biology, The Scripps Research Institute, La Jolla, California 92037, USA.

出版信息

J Biol Chem. 2004 Apr 2;279(14):14245-55. doi: 10.1074/jbc.M313289200. Epub 2004 Jan 26.

Abstract

DNA polymerase epsilon (Polepsilon), one of the three major eukaryotic replicative polymerases, is comprised of the essential catalytic subunit, called Pol2 in budding yeast, and three accessory subunits, only one of which, Dpb2, is essential. Polepsilon is recruited to replication origins during late G(1) phase prior to activation of replication. In this work we show that the budding yeast Dpb2 is phosphorylated in a cell cycle-dependent manner during late G(1) phase. Phosphorylation results in the appearance of a lower mobility species. The appearance of that species in vivo is dependent upon the Cdc28 cyclin-dependent protein kinase (CDK), which can directly phosphorylate Dpb2 in vitro. Either G(1) cyclin (Cln) or B-type cyclin (Clb)-associated CDK is sufficient for phosphorylation. Mapping of phosphorylation sites by mass spectrometry using a novel gel-based proteolysis protocol shows that, of the three consensus CDK phosphorylation sites, at least two, Ser-144 and Ser-616, are phosphorylated in vivo. The Cdc28 CDK phosphorylates only Ser-144 in vitro. Using site-directed mutagenesis, we show that Ser-144 is sufficient for the formation of the lower mobility form of Dpb2 in vivo. In contrast, Ser-616 appears not to be phosphorylated by Cdc28. Finally, inactivation of all three CDK consensus sites in Dpb2 results in a synthetic phenotype with the pol2-11 mutation, leading to decreased spore viability, slow growth, and increased thermosensitivity. We suggest that phosphorylation of Dpb2 during late G(1) phase at CDK consensus sites facilitates the interaction with Pol2 or the activity of Polepsilon

摘要

DNA聚合酶ε(Polepsilon)是三种主要的真核生物复制性聚合酶之一,由必需的催化亚基(在芽殖酵母中称为Pol2)和三个辅助亚基组成,其中只有一个辅助亚基Dpb2是必需的。在复制激活之前的G1期晚期,Polepsilon被招募到复制起点。在这项研究中,我们表明芽殖酵母Dpb2在G1期晚期以细胞周期依赖性方式被磷酸化。磷酸化导致出现迁移率较低的条带。该条带在体内的出现依赖于Cdc28细胞周期蛋白依赖性蛋白激酶(CDK),它可以在体外直接磷酸化Dpb2。G1期细胞周期蛋白(Cln)或B型细胞周期蛋白(Clb)相关的CDK都足以进行磷酸化。使用基于凝胶的新型蛋白酶解方案通过质谱法对磷酸化位点进行定位表明,在三个共有CDK磷酸化位点中,体内至少有两个位点,即Ser-144和Ser-616被磷酸化。Cdc28 CDK在体外仅磷酸化Ser-144。使用定点诱变,我们表明Ser-144足以在体内形成迁移率较低的Dpb2形式。相比之下,Ser-616似乎未被Cdc28磷酸化。最后,Dpb2中所有三个CDK共有位点的失活导致与pol2-11突变的合成表型,导致孢子活力降低、生长缓慢和热敏感性增加。我们认为,在G1期晚期,Dpb2在CDK共有位点的磷酸化促进了与Pol2的相互作用或Polepsilon的活性

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