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E2F介导的生长调节需要转录因子协同作用。

E2F-mediated growth regulation requires transcription factor cooperation.

作者信息

van Ginkel P R, Hsiao K M, Schjerven H, Farnham P J

机构信息

McArdle Laboratory for Cancer Research, University of Wisconsin Medical School, Madison, Wisconsin 53706, USA.

出版信息

J Biol Chem. 1997 Jul 18;272(29):18367-74. doi: 10.1074/jbc.272.29.18367.

Abstract

Previous studies have indicated that the presence of an E2F site is not sufficient for G1/S phase transcriptional regulation. For example, the E2F sites in the E2F1 promoter are necessary, but not sufficient, to mediate differential promoter activity in G0 and S phase. We have now utilized the E2F1 minimal promoter to test several hypotheses that could account for these observations. To test the hypothesis that G1/S phase regulation is achieved via E2F-mediated repression of a strong promoter, a variety of transactivation domains were brought to the E2F1 minimal promoter. Although many of these factors caused increased promoter activity, growth regulation was not observed, suggesting that a general repression model is incorrect. However, constructs having CCAAT or YY1 sites or certain GC boxes cloned upstream of the E2F1 minimal promoter displayed E2F site-dependent regulation. Further analysis of the promoter activity suggested that E2F requires cooperation with another factor to activate transcription in S phase. However, we found that the requirement for E2F to cooperate with additional factors to achieve growth regulation could be relieved by bringing the E2F1 activation domain to the promoter via a Gal4 DNA binding domain. Our results suggest a model that explains why some, but not all, promoters that contain E2F sites display growth regulation.

摘要

先前的研究表明,E2F位点的存在不足以进行G1/S期转录调控。例如,E2F1启动子中的E2F位点对于介导G0期和S期的差异启动子活性是必要的,但并不充分。我们现在利用E2F1最小启动子来检验几种可以解释这些观察结果的假设。为了检验通过E2F介导的对强启动子的抑制来实现G1/S期调控的假设,将多种反式激活结构域与E2F1最小启动子结合。尽管其中许多因子导致启动子活性增加,但未观察到生长调控,这表明一般的抑制模型是不正确的。然而,在E2F1最小启动子上游克隆有CCAAT或YY1位点或某些GC盒的构建体显示出E2F位点依赖性调控。对启动子活性的进一步分析表明,E2F需要与另一种因子合作才能在S期激活转录。然而,我们发现,通过Gal4 DNA结合结构域将E2F1激活结构域带到启动子上,可以消除E2F与其他因子合作以实现生长调控的需求。我们的结果提出了一个模型,该模型解释了为什么一些(但不是全部)含有E2F位点的启动子会显示出生长调控。

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