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E2f1、E2f2和E2f3通过p53依赖性负反馈环控制E2F靶标表达和细胞增殖。

E2f1, E2f2, and E2f3 control E2F target expression and cellular proliferation via a p53-dependent negative feedback loop.

作者信息

Timmers Cynthia, Sharma Nidhi, Opavsky Rene, Maiti Baidehi, Wu Lizhao, Wu Juan, Orringer Daniel, Trikha Prashant, Saavedra Harold I, Leone Gustavo

机构信息

Human Cancer Genetics program, Department of Molecular Virology, Immunology and Medical Genetics, and Comprehensive Cancer Center, The Ohio State University, 410 W. 12th Avenue, Columbus, OH 43210, USA.

出版信息

Mol Cell Biol. 2007 Jan;27(1):65-78. doi: 10.1128/MCB.02147-05.

Abstract

E2F-mediated control of gene expression is believed to have an essential role in the control of cellular proliferation. Using a conditional gene-targeting approach, we show that the targeted disruption of the entire E2F activator subclass composed of E2f1, E2f2, and E2f3 in mouse embryonic fibroblasts leads to the activation of p53 and the induction of p53 target genes, including p21(CIP1). Consequently, cyclin-dependent kinase activity and retinoblastoma (Rb) phosphorylation are dramatically inhibited, leading to Rb/E2F-mediated repression of E2F target gene expression and a severe block in cellular proliferation. Inactivation of p53 in E2f1-, E2f2-, and E2f3-deficient cells, either by spontaneous mutation or by conditional gene ablation, prevented the induction of p21(CIP1) and many other p53 target genes. As a result, cyclin-dependent kinase activity, Rb phosphorylation, and E2F target gene expression were restored to nearly normal levels, rendering cells responsive to normal growth signals. These findings suggest that a critical function of the E2F1, E2F2, and E2F3 activators is in the control of a p53-dependent axis that indirectly regulates E2F-mediated transcriptional repression and cellular proliferation.

摘要

E2F介导的基因表达调控被认为在细胞增殖控制中起关键作用。利用条件性基因靶向方法,我们发现,在小鼠胚胎成纤维细胞中,由E2f1、E2f2和E2f3组成的整个E2F激活子类的靶向破坏会导致p53激活以及p53靶基因的诱导,包括p21(CIP1)。因此,细胞周期蛋白依赖性激酶活性和视网膜母细胞瘤(Rb)磷酸化受到显著抑制,导致Rb/E2F介导的E2F靶基因表达抑制以及细胞增殖严重受阻。通过自发突变或条件性基因切除使E2f1、E2f2和E2f3缺陷细胞中的p53失活,可阻止p21(CIP1)和许多其他p53靶基因的诱导。结果,细胞周期蛋白依赖性激酶活性、Rb磷酸化和E2F靶基因表达恢复到接近正常水平,使细胞对正常生长信号有反应。这些发现表明,E2F1、E2F2和E2F3激活剂的一个关键功能是控制一个p53依赖性轴,该轴间接调节E2F介导的转录抑制和细胞增殖。

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