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H3K36 dimethylation by MMSET promotes classical non-homologous end-joining at unprotected telomeres

机译:通过MMSet的H3K36脱甲基化促进在未受保护的端粒的经典非同源终端连接

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The epigenetic environment plays an important role in DNA damage recognition and repair, both at DNA double-strand breaks and at deprotected telomeres. To increase understanding on how DNA damage responses (DDR) at deprotected telomeres are regulated by modification and remodeling of telomeric chromatin we screened 38 methyltransferases for their ability to promote telomere dysfunction-induced genomic instability. As top hit we identified MMSET, a histone methyltransferase (HMT) causally linked to multiple myeloma and Wolf-Hirschhorn syndrome. We show that MMSET promotes non-homologous end-joining (NHEJ) at deprotected telomeres through Ligase4-dependent classical NHEJ, and does not contribute to Ligase3-dependent alternative NHEJ. Moreover, we show that this is dependent on the catalytic activity of MMSET, enabled by its SET-domain. Indeed, in absence of MMSET H3K36-dimethylation (H3K36me2) decreases, both globally and at subtelomeric regions. Interestingly, the level of MMSET-dependent H3K36me2 directly correlates with NHEJ-efficiency. We show that MMSET depletion does not impact on recognition of deprotected telomeres by the DDR-machinery or on subsequent recruitment of DDR-factors acting upstream or at the level of DNA repair pathway choice. Our data are most consistent with an important role for H3K36me2 in more downstream steps of the DNA repair process. Moreover, we find additional H3K36me2-specific HMTs to contribute to NHEJ at deprotected telomeres, further emphasizing the importance of H3K36me2 in DNA repair.
机译:表观遗传环境在DNA损伤识别和修复中起着重要作用,无论是在DNA双链断膜和脱保护端粒的情况下。为了提高对脱保护端粒的DNA损伤反应(DDR)的理解是通过对端粒染色质的改性和重塑来调节,我们筛选了38个甲基转移酶,以促进端粒功能障碍诱导的基因组不稳定性的能力。作为顶部击中我们鉴定Mmset,组蛋白甲基转移酶(HMT)与多发性骨髓瘤和Wolf-hirschhorn综合征有关。我们表明MMSET通过Ligase4依赖性经典NHEJ促进不含脱保护的端粒的非同源终末期连接(NHEJ),并且不会有助于Ligase3依赖性替代NHEJ。此外,我们表明这取决于MMSet的催化活性,由其设定域实现。实际上,在没有MMSET H3K36-二甲基化(H3K36ME2)的情况下,在全球和子制区域中降低。有趣的是,MMSet相关的H3K36Me2的水平与NHEJ效率直接相关。我们表明MMSET耗竭不会影响DDR机械的识别不接受药物的端粒,或随后招募作用上游或DNA修复途径选择的DDR因子。我们的数据最符合H3K36ME2在DNA修复过程的更多下游步骤中的重要作用。此外,我们发现额外的H3K36ME2特异性HMTS在脱保护的端粒中有助于NHEJ,进一步强调H3K36ME2在DNA修复中的重要性。

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