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PMID: 20211137 已发表 · ppublish 英语

Distinct factors control histone variant H3.3 localization at specific genomic regions.

Cell ·第 140 卷 ·第 5 期 ·2010-03-30

Goldberg Aaron D, Banaszynski Laura A, Noh Kyung-Min, Lewis Peter W, Elsaesser Simon J, Stadler Sonja, Dewell Scott, Law Martin, Guo Xingyi, Li Xuan, Wen Duancheng, Chapgier Ariane, DeKelver Russell C, Miller Jeffrey C, Lee Ya-Li, Boydston Elizabeth A, Holmes Michael C, Gregory Philip D, Greally John M, Rafii Shahin, Yang Chingwen, Scambler Peter J, Garrick David, Gibbons Richard J, Higgs Douglas R, Cristea Ileana M, Urnov Fyodor D, Zheng Deyou, Allis C David

摘要

The incorporation of histone H3 variants has been implicated in the epigenetic memory of cellular state. Using genome editing with zinc-finger nucleases to tag endogenous H3.3, we report genome-wide profiles of H3 variants in mammalian embryonic stem cells and neuronal precursor cells. Genome-wide patterns of H3.3 are dependent on amino acid sequence and change with cellular differentiation at developmentally regulated loci. The H3.3 chaperone Hira is required for H3.3 enrichment at active and repressed genes. Strikingly, Hira is not essential for localization of H3.3 at telomeres and many transcription factor binding sites. Immunoaffinity purification and mass spectrometry reveal that the proteins Atrx and Daxx associate with H3.3 in a Hira-independent manner. Atrx is required for Hira-independent localization of H3.3 at telomeres and for the repression of telomeric RNA. Our data demonstrate that multiple and distinct factors are responsible for H3.3 localization at specific genomic locations in mammalian cells.

文献信息
期刊
Cell
期刊简称
Cell
发表日期
2010-03-30
收录日期
2010-03-09
更新日期
2016-11-22
语言
英语
国家/地区
United States
NLM ID
0413066
分析服务
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