In mammals, DNA methylation is essential for protecting repetitive sequences from aberrant transcription and recombination. In some developmental contexts (e.g., preimplantation embryos) DNA is hypomethylated but repetitive elements are not dysregulated, suggesting that alternative protection mechanisms exist. Here we explore the processes involved by investigating the role of the chromatin factors Daxx and Atrx. Using genome-wide binding and transcriptome analysis, we found that Daxx and Atrx have distinct chromatin-binding profiles and are co-enriched at tandem repetitive elements in wild-type mouse ESCs. Global DNA hypomethylation further promoted recruitment of the Daxx/Atrx complex to tandem repeat sequences, including retrotransposons and telomeres. Knockdown of Daxx/Atrx in cells with hypomethylated genomes exacerbated aberrant transcriptional de-repression of repeat elements and telomere dysfunction. Mechanistically, Daxx/Atrx-mediated repression seems to involve Suv39h recruitment and H3K9 trimethylation. Our data therefore suggest that Daxx and Atrx safeguard the genome by silencing repetitive elements when DNA methylation levels are low.
The Daxx/Atrx Complex Protects Tandem Repetitive Elements during DNA Hypomethylation by Promoting H3K9 Trimethylation.
Daxx/Atrx 复合物通过促进 H3K9 三甲基化来保护 DNA 低甲基化过程中的串联重复元件
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作者:He Quanyuan, Kim Hyeung, Huang Rui, Lu Weisi, Tang Mengfan, Shi Fengtao, Yang Dong, Zhang Xiya, Huang Junjiu, Liu Dan, Songyang Zhou
| 期刊: | Cell Stem Cell | 影响因子: | 20.400 |
| 时间: | 2015 | 起止号: | 2015 Sep 3; 17(3):273-86 |
| doi: | 10.1016/j.stem.2015.07.022 | 研究方向: | 表观遗传 |
| 信号通路: | DNA甲基化 | ||
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