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PMID: 26564795 已发表 · ppublish 英语

Epigenetic engineering shows that a human centromere resists silencing mediated by H3K27me3/K9me3.

Molecular biology of the cell ·第 27 卷 ·第 1 期 ·2016-11-01

Martins Nuno M C, Bergmann Jan H, Shono Nobuaki, Kimura Hiroshi, Larionov Vladimir, Masumoto Hiroshi, Earnshaw William C

摘要

Centromeres are characterized by the centromere-specific H3 variant CENP-A, which is embedded in chromatin with a pattern characteristic of active transcription that is required for centromere identity. It is unclear how centromeres remain transcriptionally active despite being flanked by repressive pericentric heterochromatin. To further understand centrochromatin's response to repressive signals, we nucleated a Polycomb-like chromatin state within the centromere of a human artificial chromosome (HAC) by tethering the methyltransferase EZH2. This led to deposition of the H3K27me3 mark and PRC1 repressor binding. Surprisingly, this state did not abolish HAC centromere function or transcription, and this apparent resistance was not observed on a noncentromeric locus, where transcription was silenced. Directly tethering the reader/repressor PRC1 bypassed this resistance, inactivating the centromere. We observed analogous responses when tethering the heterochromatin Editor Suv39h1-methyltransferase domain (centromere resistance) or reader HP1α (centromere inactivation), respectively. Our results reveal that the HAC centromere can resist repressive pathways driven by H3K9me3/H3K27me3 and may help to explain how centromeres are able to resist inactivation by flanking heterochromatin.

文献信息
期刊
Molecular biology of the cell
期刊简称
Mol Biol Cell
发表日期
2016-11-01
收录日期
2015-12-30
更新日期
2016-11-26
语言
英语
国家/地区
United States
NLM ID
9201390
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