新科学想法 文献管理 浏览文献

Nucleosome dynamics define transcriptional enhancers

ct586 添加于 2010-5-2 22:15 | 1174 次阅读 | 0 个评论
  •  作 者

    He HH, Meyer CA, Shin H, Bailey ST, Wei G, Wang Q, Zhang Y, Xu K, Ni M, Lupien M, Mieczkowski P, Lieb JD, Zhao K, Brown M, Liu XS
  •  摘 要

    Chromatin plays a central role in eukaryotic gene regulation. We performed genome-wide mapping of epigenetically marked nucleosomes to determine their position both near transcription start sites and at distal regulatory elements, including enhancers. In prostate cancer cells, where androgen receptor binds primarily to enhancers, we found that androgen treatment dismisses a central nucleosome present at androgen receptor binding sites that is flanked by a pair of marked nucleosomes. A new quantitative model built on the behavior of such nucleosome pairs correctly identified regions bound by the regulators of the immediate androgen response, including androgen receptor and FOXA1. More importantly, this model also correctly predicted previously unidentified binding sites for other transcription factors present after prolonged androgen stimulation, including OCT1 and NKX3-1. Therefore, quantitative modeling of enhancer structure provides a powerful predictive method to infer the identity of transcription factors involved in cellular responses to specific stimuli.
  •  详细资料

    • 关键词: Binding Sites; *Enhancer Elements, Genetic; Hepatocyte Nuclear Factor 3-alpha/genetics; Homeodomain Proteins/genetics; Humans; Male; Models, Genetic; Molecular Sequence Data; Nucleosomes/*physiology; Octamer Transcription Factor-1/genetics; Prostatic Neoplasms/genetics; Receptors, Androgen/*genetics; Transcription Factors/genetics
    • 文献种类:期刊
    • 期刊名称: Nature Genetics
    • 期刊缩写: Nat Genet
    • 期卷页: 2010  42 4 343-347
    • 地址: Department of Biostatistics and Computational Biology, Dana-Farber Cancer Institute and Harvard School of Public Health, Boston, Massachusetts, USA
    • ISBN: 1061-4036
  •  标 签

  • 相关链接 DOI URL 

管理选项: 导出文献

评论(0 人)

facelist doodle 涂鸦板

Copyright;  © 新科学想法 2016-2017   浙公网安备 33010202000686号   ( 浙ICP备09035230号-1 )