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细胞周期蛋白A依赖性激酶对Cdt1的磷酸化作用会对其功能产生负调控,而不影响其与geminin的结合。

Cdt1 phosphorylation by cyclin A-dependent kinases negatively regulates its function without affecting geminin binding.

作者信息

Sugimoto Nozomi, Tatsumi Yasutoshi, Tsurumi Tatsuya, Matsukage Akio, Kiyono Tohru, Nishitani Hideo, Fujita Masatoshi

机构信息

Virology Division, National Cancer Center Research Institute, 5-1-1 Tsukiji, Chuohku, Tokyo 104-0045.

出版信息

J Biol Chem. 2004 May 7;279(19):19691-7. doi: 10.1074/jbc.M313175200. Epub 2004 Mar 1.

Abstract

The current concept regarding cell cycle regulation of DNA replication is that Cdt1, together with origin recognition complex and CDC6 proteins, constitutes the machinery that loads the minichromosome maintenance complex, a candidate replicative helicase, onto chromatin during the G(1) phase. The actions of origin recognition complex and CDC6 are suppressed through phosphorylation by cyclin-dependent kinases (Cdks) after S phase to prohibit rereplication. It has been suggested in metazoan cells that the function of Cdt1 is blocked through binding to an inhibitor protein, geminin. However, the functional relationship between the Cdt1-geminin system and Cdks remains to be clarified. In this report, we demonstrate that human Cdt1 is phosphorylated by cyclin A-dependent kinases dependent on its cyclin-binding motif. Cdk phosphorylation resulted in the binding of Cdt1 to the F-box protein Skp2 and subsequent degradation. In contrast, in vitro DNA binding activity of Cdt1 was inhibited by the phosphorylation. However, geminin binding to Cdt1 was not affected by the phosphorylation. Finally we provide evidence that inactivation of Cdk1 results in Cdt1 dephosphorylation and rebinding to chromatin in murine FT210 cells synchronized around the G(2)/M phase. Taken together, these findings suggest that Cdt1 function is also negatively regulated by the Cdk phosphorylation independent of geminin binding.

摘要

目前关于DNA复制的细胞周期调控的概念是,Cdt1与起始识别复合物及CDC6蛋白一起,构成了在G(1)期将微小染色体维持复合物(一种候选复制解旋酶)加载到染色质上的机制。S期后,起始识别复合物和CDC6的作用通过细胞周期蛋白依赖性激酶(Cdks)的磷酸化而受到抑制,以防止再次复制。在后生动物细胞中,有人提出Cdt1的功能通过与一种抑制蛋白geminin结合而被阻断。然而,Cdt1-geminin系统与Cdks之间的功能关系仍有待阐明。在本报告中,我们证明人Cdt1被依赖细胞周期蛋白A的激酶磷酸化,这种磷酸化依赖于其细胞周期蛋白结合基序。Cdk磷酸化导致Cdt1与F-box蛋白Skp2结合并随后降解。相反,Cdt1的体外DNA结合活性受到磷酸化的抑制。然而,geminin与Cdt1的结合不受磷酸化的影响。最后,我们提供证据表明,在G(2)/M期同步化的小鼠FT210细胞中,Cdk1失活导致Cdt1去磷酸化并重新结合到染色质上。综上所述,这些发现表明Cdt1的功能也受到Cdk磷酸化的负调控,且不依赖于geminin结合。

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