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1
A novel PAX6 mutation in a large Chinese family with aniridia and congenital cataract.一个患有无虹膜和先天性白内障的中国大家庭中的一种新型PAX6突变。
Mol Vis. 2010 Jun 22;16:1141-5.
2
E2f1-3 switch from activators in progenitor cells to repressors in differentiating cells.E2f1-3 从祖细胞中的激活因子转变为分化细胞中的抑制因子。
Nature. 2009 Dec 17;462(7275):930-4. doi: 10.1038/nature08677.
3
Division and apoptosis of E2f-deficient retinal progenitors.E2f 缺陷型视网膜祖细胞的分裂和凋亡。
Nature. 2009 Dec 17;462(7275):925-9. doi: 10.1038/nature08544.
4
Balancing the decision of cell proliferation and cell fate.平衡细胞增殖与细胞命运的抉择。
Cell Cycle. 2009 Feb 15;8(4):532-5. doi: 10.4161/cc.8.4.7609. Epub 2009 Feb 11.
5
Mouse development with a single E2F activator.具有单一E2F激活因子的小鼠发育
Nature. 2008 Aug 28;454(7208):1137-41. doi: 10.1038/nature07066. Epub 2008 Jun 25.
6
Inactivation of the Rb pathway and overexpression of both isoforms of E2F3 are obligate events in bladder tumours with 6p22 amplification.在伴有6p22扩增的膀胱肿瘤中,Rb通路失活以及E2F3两种亚型的过表达是必然发生的事件。
Oncogene. 2008 Apr 24;27(19):2716-27. doi: 10.1038/sj.onc.1210934. Epub 2007 Nov 26.
7
A comprehensive ChIP-chip analysis of E2F1, E2F4, and E2F6 in normal and tumor cells reveals interchangeable roles of E2F family members.一项针对正常细胞和肿瘤细胞中E2F1、E2F4和E2F6的全面染色质免疫沉淀芯片分析揭示了E2F家族成员的可互换作用。
Genome Res. 2007 Nov;17(11):1550-61. doi: 10.1101/gr.6783507. Epub 2007 Oct 1.
8
Rb is critical in a mammalian tissue stem cell population.视网膜母细胞瘤蛋白在哺乳动物组织干细胞群体中至关重要。
Genes Dev. 2007 Jan 1;21(1):85-97. doi: 10.1101/gad.1485307.
9
E2f1, E2f2, and E2f3 control E2F target expression and cellular proliferation via a p53-dependent negative feedback loop.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。
Mol Cell Biol. 2007 Jan;27(1):65-78. doi: 10.1128/MCB.02147-05.
10
Control of the p53-p21CIP1 Axis by E2f1, E2f2, and E2f3 is essential for G1/S progression and cellular transformation.E2f1、E2f2和E2f3对p53-p21CIP1轴的调控对于G1/S期进程和细胞转化至关重要。
J Biol Chem. 2006 Nov 24;281(47):36124-31. doi: 10.1074/jbc.M604152200. Epub 2006 Sep 27.

在缺乏 E2F1-3 的情况下细胞增殖。

Cell proliferation in the absence of E2F1-3.

机构信息

Department of Molecular Virology, Immunology and Medical Genetics, Comprehensive Cancer Center, College of Medicine, The Ohio State University, Columbus, OH 43210, USA.

出版信息

Dev Biol. 2011 Mar 1;351(1):35-45. doi: 10.1016/j.ydbio.2010.12.025. Epub 2010 Dec 23.

DOI:10.1016/j.ydbio.2010.12.025
PMID:21185283
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3868453/
Abstract

E2F transcription factors regulate the progression of the cell cycle by repression or transactivation of genes that encode cyclins, cyclin dependent kinases, checkpoint regulators, and replication proteins. Although some E2F functions are independent of the Retinoblastoma tumor suppressor (Rb) and related family members, p107 and p130, much of E2F-mediated repression of S phase entry is dependent upon Rb. We previously showed in cultured mouse embryonic fibroblasts that concomitant loss of three E2F activators with overlapping functions (E2F1, E2F2, and E2F3) triggered the p53-p21(Cip1) response and caused cell cycle arrest. Here we report on a dramatic difference in the requirement for E2F during development and in cultured cells by showing that cell cycle entry occurs normally in E2f1-3 triply-deficient epithelial stem cells and progenitors of the developing lens. Sixteen days after birth, however, massive apoptosis in differentiating epithelium leads to a collapse of the entire eye. Prior to this collapse, we find that expression of cell cycle-regulated genes in E2F-deficient lenses is aberrantly high. In a second set of experiments, we demonstrate that E2F3 ablation alone does not cause abnormalities in lens development but rescues phenotypic defects caused by loss of Rb, a binding partner of E2F known to recruit histone deacetylases, SWI/SNF and CtBP-polycomb complexes, methyltransferases, and other co-repressors to gene promoters. Together, these data implicate E2F1-3 in mediating transcriptional repression by Rb during cell cycle exit and point to a critical role for their repressive functions in cell survival.

摘要

E2F 转录因子通过抑制或激活编码细胞周期蛋白、细胞周期蛋白依赖性激酶、检查点调节剂和复制蛋白的基因来调节细胞周期的进程。尽管一些 E2F 功能独立于视网膜母细胞瘤肿瘤抑制因子 (Rb) 和相关家族成员 p107 和 p130,但 E2F 介导的 S 期进入的大部分抑制作用都依赖于 Rb。我们之前在培养的小鼠胚胎成纤维细胞中表明,同时丧失具有重叠功能的三种 E2F 激活剂(E2F1、E2F2 和 E2F3)会触发 p53-p21(Cip1) 反应并导致细胞周期停滞。在这里,我们通过显示 E2f1-3 三重缺陷的上皮干细胞和发育中的晶状体祖细胞的细胞周期进入正常发生,报告了发育中和培养细胞中 E2F 需求的显著差异。然而,出生后 16 天,分化上皮中的大量细胞凋亡导致整个眼睛的崩溃。在此崩溃之前,我们发现 E2F 缺陷的晶状体中细胞周期调节基因的表达异常升高。在第二组实验中,我们证明 E2F3 的缺失本身不会导致晶状体发育异常,但可以挽救因 Rb 缺失引起的表型缺陷,Rb 是 E2F 的结合伴侣,已知招募组蛋白去乙酰化酶、SWI/SNF 和 CtBP-多梳复合物、甲基转移酶和其他共抑制因子到基因启动子。总之,这些数据表明 E2F1-3 在细胞周期退出时通过 Rb 介导转录抑制,并指出其抑制功能在细胞存活中的关键作用。