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E2F介导的S期诱导中依赖和不依赖细胞周期蛋白依赖性激酶2(Cdk2)的途径

Cdk2-dependent and -independent pathways in E2F-mediated S phase induction.

作者信息

Arata Y, Fujita M, Ohtani K, Kijima S, Kato J Y

机构信息

Graduate School of Biological Sciences, Nara Institute of Science and Technology, 8916-5 Takayama, Ikoma, Nara 630-0101, Japan.

出版信息

J Biol Chem. 2000 Mar 3;275(9):6337-45. doi: 10.1074/jbc.275.9.6337.

DOI:10.1074/jbc.275.9.6337
PMID:10692433
Abstract

The transcription factor E2F plays an important role in G(1) to S phase transition in the higher eukaryotic cell cycle. Although a number of E2F-inducible genes have been identified, the biochemical cascades from E2F to the S phase entry remain to be investigated. In this study, we generated stably transfected mouse NIH3T3 cells that express exogenous human E2F-1 under the control of a heavy metal-inducible metallothionein promoter and analyzed the molecular mechanism of the E2F-1-mediated initiation of chromosomal DNA replication. Ectopic E2F-1 expression in cells arrested in G(0)/G(1) by serum deprivation enabled them to progress through G(1) and to enter S phase. During the G(1) progression, mouse cyclin E, but little of cyclin D1, was induced to express, which subsequently activated Cdk2. Experiments using the Cdk inhibitory proteins p27, p18, and p19 proved that the activity of Cdk2, but not of Cdk4, was required for S phase entry mediated by E2F-1. Minichromosome maintenance proteins (MCM) 4 and 7, the components of the DNA-replication initiation complex (RC), were constitutively expressed during the cell cycle, although the MCM genes are well known E2F-inducible genes. However, tight association of these two proteins with chromatin depended upon ectopic E2F-1 expression. In contrast, the Cdc45 protein, another RC component, which turned out to be a transcriptional target of E2Fs, was induced to express and subsequently bound to chromatin in response to E2F-1. Experiments utilizing a chemical Cdk-specific inhibitor, butyrolactone I, revealed that Cdk2 activity was required only for chromatin binding of the Cdc45 proteins, and not for the expression of Cdc45 or chromatin binding of MCM4 and -7. These results indicate that at least two separate pathways function downstream of E2F to initiate S phase; one depends upon the activity of Cdk2 and the other does not.

摘要

转录因子E2F在高等真核细胞周期的G1期到S期转换过程中发挥着重要作用。尽管已经鉴定出许多E2F诱导基因,但从E2F到进入S期的生化级联反应仍有待研究。在本研究中,我们构建了稳定转染的小鼠NIH3T3细胞,这些细胞在重金属诱导的金属硫蛋白启动子控制下表达外源性人E2F-1,并分析了E2F-1介导的染色体DNA复制起始的分子机制。血清剥夺使细胞停滞在G0/G1期,异位表达的E2F-1使它们能够通过G1期并进入S期。在G1期进程中,小鼠细胞周期蛋白E被诱导表达,而细胞周期蛋白D1表达很少,随后激活了Cdk2。使用Cdk抑制蛋白p27、p18和p19的实验证明,E2F-1介导的进入S期需要Cdk2的活性,而不是Cdk4的活性。微小染色体维持蛋白(MCM)4和7是DNA复制起始复合物(RC)的组成部分,尽管MCM基因是众所周知的E2F诱导基因,但它们在细胞周期中持续表达。然而,这两种蛋白与染色质的紧密结合依赖于异位表达的E2F-1。相反,另一种RC成分Cdc45蛋白被证明是E2F的转录靶点,它被诱导表达并随后响应E2F-1与染色质结合。利用化学Cdk特异性抑制剂丁内酯I的实验表明,Cdk2活性仅对于Cdc45蛋白与染色质的结合是必需的,而对于Cdc45的表达或MCM4和-7与染色质的结合不是必需的。这些结果表明,至少有两条独立的途径在E2F下游起作用以启动S期;一条依赖于Cdk2的活性,另一条则不依赖。

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