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E2F-7:一种独特的E2F家族成员,其DNA结合结构域的组织方式不同寻常。

E2F-7: a distinctive E2F family member with an unusual organization of DNA-binding domains.

作者信息

Logan Nicola, Delavaine Laurent, Graham Anne, Reilly Carmel, Wilson Jon, Brummelkamp Thijn R, Hijmans E Marielle, Bernards René, La Thangue Nicholas B

机构信息

Division of Biochemistry and Molecular Biology, Davidson Building, University of Glasgow, Glasgow, G12 8QQ, UK.

出版信息

Oncogene. 2004 Jul 1;23(30):5138-50. doi: 10.1038/sj.onc.1207649.

Abstract

The E2F family of transcription factors play an important role in regulating cell cycle progression. We report here the characterization and functional properties of a new member of the human E2F family, referred to as E2F-7. E2F-7 has two separate DNA-binding domains, a feature that distinguishes E2F-7 from other mammalian E2F proteins, but resembling the organization of recently isolated E2F-like proteins from Arabidopsis. E2F-7 binds to DNA independently of a DP partner and delays cell cycle progression. Interestingly, E2F-7 modulates the transcription properties of other E2F proteins. A mutational analysis indicates that the integrity of both DNA-binding domains is required for cell cycle delay and transcriptional modulation. Biochemical results and protein modelling studies suggest that in binding to DNA interactions occur between the two DNA-binding domains, most probably as a homodimer, thereby mimicking the organization of an E2F/DP heterodimer. These structural and functional properties of E2F-7 imply a unique role in regulating cellular proliferation.

摘要

E2F转录因子家族在调节细胞周期进程中发挥着重要作用。我们在此报告人类E2F家族一个新成员E2F-7的特征及功能特性。E2F-7有两个独立的DNA结合结构域,这一特征将E2F-7与其他哺乳动物E2F蛋白区分开来,但类似于最近从拟南芥中分离出的E2F样蛋白的结构组织。E2F-7独立于DP伴侣与DNA结合,并延迟细胞周期进程。有趣的是,E2F-7可调节其他E2F蛋白的转录特性。突变分析表明,两个DNA结合结构域的完整性对于细胞周期延迟和转录调节是必需的。生化结果和蛋白质建模研究表明,在与DNA结合时,两个DNA结合结构域之间会发生相互作用,很可能是以同二聚体的形式,从而模拟了E2F/DP异二聚体的结构组织。E2F-7的这些结构和功能特性意味着它在调节细胞增殖中具有独特作用。

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