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DNA损伤诱导的人类Cdc25C和Cdc2的下调是由p53与维持性DNA(胞嘧啶-5)甲基转移酶1之间的协同作用介导的。

DNA damage-induced down-regulation of human Cdc25C and Cdc2 is mediated by cooperation between p53 and maintenance DNA (cytosine-5) methyltransferase 1.

作者信息

Le Gac Gerald, Estève Pierre-Olivier, Ferec Claude, Pradhan Sriharsa

机构信息

New England Biolabs, Ipswich, Massachusetts 01938, USA.

出版信息

J Biol Chem. 2006 Aug 25;281(34):24161-70. doi: 10.1074/jbc.M603724200. Epub 2006 Jun 28.

Abstract

The Cdc25C phosphatase mediates cellular entry into mitosis in mammalian cells. Cdc25C activates Cdc2 for entry into mitosis by dephosphorylating Thr and Tyr at the site of inhibitory phosphorylation. The Cdc25C gene contains tumor suppressor p53 binding sites and is demonstrated to contribute to the p53-dependent cell cycle arrest upon DNA damage. Here we show that both Cdc25C and Cdc2 were down-regulated in wild-type HCT116 cells but not in p53-null, DNMT1-null or DNMT1and DNMT3b-null cells, upon p53 stabilization following doxorubicin-mediated DNA damage. Furthermore, zebularine, a drug that selectively traps and depletes nuclear DNMT1 and DNMT3b, relieved p53-mediated repression of endogenous Cdc25C and Cdc2. Methylation analysis of the Cdc25C and Cdc2 promoter displayed internal CG methylation proximal to the p53 binding site upon DNA damage in a p53-dependent manner. Chromatin immunoprecipitation of doxorubicin treated wild-type HCT116 cells showed the presence of DNMT1, p53, H3K9me2, and the transcriptional repressor HDAC1 on the Cdc25C and Cdc2 promoters, suggesting their involvement as repressive complexes in Cdc25C and Cdc2 gene silencing. Thus, the general mechanism of p53-mediated gene repression may involve recruitment of other repressive factors.

摘要

Cdc25C磷酸酶介导哺乳动物细胞进入有丝分裂。Cdc25C通过去磷酸化抑制性磷酸化位点的苏氨酸和酪氨酸来激活Cdc2以进入有丝分裂。Cdc25C基因含有肿瘤抑制因子p53结合位点,并被证明在DNA损伤时有助于p53依赖的细胞周期停滞。在这里我们表明,在阿霉素介导的DNA损伤后p53稳定时,野生型HCT116细胞中Cdc25C和Cdc2均下调,但在p53缺失、DNMT1缺失或DNMT1和DNMT3b双缺失的细胞中则不然。此外,zebularine,一种能选择性捕获并消耗细胞核中DNMT1和DNMT3b的药物,可缓解p53介导的对内源性Cdc25C和Cdc2的抑制。Cdc25C和Cdc2启动子的甲基化分析显示,DNA损伤时,在p53依赖的方式下,p53结合位点附近存在内部CG甲基化。对阿霉素处理的野生型HCT116细胞进行染色质免疫沉淀显示,Cdc25C和Cdc2启动子上存在DNMT1、p53、H3K9me2和转录抑制因子HDAC1,表明它们作为抑制复合物参与Cdc25C和Cdc2基因沉默。因此,p53介导的基因抑制的一般机制可能涉及招募其他抑制因子。

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