DNMT1 forms a complex with Rb, E2F1 and HDAC1 and represses transcription from E2F-responsive promoters

被引:747
作者
Robertson, KD [1 ]
Ait-Si-Ali, S [1 ]
Yokochi, T [1 ]
Wade, PA [1 ]
Jones, PL [1 ]
Wolffe, AP [1 ]
机构
[1] NICHD, Mol Embryol Lab, NIH, Bethesda, MD USA
关键词
D O I
10.1038/77124
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Methylation of CpG islands is associated with transcriptional silencing and the formation of nuclease-resistant chromatin structures enriched in hypoacetylated histones(1-3). Methyl-CpG-binding proteins, such as MeCP2, provide a link between methylated DNA and hypoacetylated histones by recruiting histone deacetylase(4,5), but the mechanisms establishing the methylation patterns themselves are unknown. Whether DNA methylation is always causal for the assembly of repressive chromatin or whether features of transcriptionally silent chromatin might target methyltransferase remains unresolved. Mammalian DNA methyltransferases show little sequence specificity in vitro, yet methylation can be targeted in vivo within chromosomes to repetitive elements(6,7), centromeress(8-10) and imprinted loci(11). This targeting is frequently disrupted in tumour cells, resulting in the improper silencing of tumour-suppressor genes associated with CpG islands(1,2). Here we show that the predominant mammalian DNA methyltransferase, DNMT1, co-purifies with the retinoblastoma (Rb) tumour suppressor gene product, E2F1. and HDAC1 and that DNMT1 cooperates with Rb to repress transcription from promoters containing E2F-binding sites. These results establish a link between DNA methylation, histone deacetylase and sequence-specific DNA binding activity, as well as a growth-regulatory pathway that is disrupted in nearly all cancer cells.
引用
收藏
页码:338 / 342
页数:5
相关论文
共 50 条
[41]   A role for the transcription factor E2F1 in experimental stroke damage [J].
MacManus, JP ;
Hou, ST ;
Jian, M ;
Preston, E ;
Webster, J ;
Zurakowski, B .
PHARMACOLOGY OF CEREBRAL ISCHEMIA 2000, 2000, :17-25
[42]   Control of e2f1 and PCNA by Drosophila Transcription Factor DREF [J].
Kawamori, Akihito ;
Shimaji, Kouhei ;
Yamaguchi, Masamitsu .
GENESIS, 2013, 51 (11) :741-750
[43]   THE ROLE OF THE E2F1 TRANSCRIPTION FACTOR IN INNATE IMMUNITY IN MICE [J].
Yang, I. V. ;
Warg, L. A. ;
Groshong, S. D. ;
Schwartz, D. A. .
AMERICAN JOURNAL OF RESPIRATORY AND CRITICAL CARE MEDICINE, 2010, 181
[44]   Transcription Factor E2F1 Suppresses Dendritic Cell Maturation [J].
Fang, Fang ;
Wang, Yan ;
Li, Rui ;
Zhao, Ying ;
Guo, Yang ;
Jiang, Ming ;
Sun, Jie ;
Ma, Yang ;
Ren, Zijia ;
Tian, Zhigang ;
Wei, Feng ;
Yang, De ;
Xiao, Weihua .
JOURNAL OF IMMUNOLOGY, 2010, 184 (11) :6084-6091
[45]   The E2F1–3 transcription factors are essential for cellular proliferation [J].
Lizhao Wu ;
Cynthia Timmers ;
Baidehi Maiti ;
Harold I. Saavedra ;
Ling Sang ;
Gabriel T. Chong ;
Faison Nuckolls ;
Paloma Giangrande ;
Fred A. Wright ;
Seth J. Field ;
Michael E. Greenberg ;
Stuart Orkin ;
Joseph R. Nevins ;
Michael L. Robinson ;
Gustavo Leone .
Nature, 2001, 414 :457-462
[46]   HDAC1及E2F1在肾透明细胞癌中的表达及意义 [J].
朱鑫 ;
王亚轩 ;
常学良 ;
韩振伟 ;
滕志海 ;
王志胜 ;
高栩 ;
郭绍卫 ;
李景东 ;
黎玮 .
河北医药, 2015, 37 (19) :2885-2888
[47]   Dynamic Coregulatory Complex Containing BRCA1, E2F1 and CtIP Controls ATM Transcription [J].
Moiola, Cristian ;
De Luca, Paola ;
Cotignola, Javier ;
Gardner, Kevin ;
Vazquez, Elba ;
De Siervi, Adriana .
CELLULAR PHYSIOLOGY AND BIOCHEMISTRY, 2012, 30 (03) :596-608
[48]   E2F1 in Melanoma Progression and Metastasis [J].
Alla, Vijay ;
Engelmann, David ;
Niemetz, Annett ;
Pahnke, Jens ;
Schmidt, Anke ;
Kunz, Manfred ;
Emmrich, Stephan ;
Steder, Marc ;
Koczan, Dirk ;
Puetzer, Brigitte M. .
JNCI-JOURNAL OF THE NATIONAL CANCER INSTITUTE, 2010, 102 (02) :127-133
[49]   E2F1, a Novel Regulator of Metabolism [J].
Denechaud, Pierre-Damien ;
Fajas, Lluis ;
Giralt, Albert .
FRONTIERS IN ENDOCRINOLOGY, 2017, 8
[50]   E2F1 regulation by the APC/C [J].
Rubin, Seth M. .
CELL CYCLE, 2010, 9 (20) :4044-4044