DOT1L-mediated RAP80 methylation promotes BRCA1 recruitment to elicit DNA repair

DNA修复 染色质 生物 DNA损伤 甲基转移酶 甲基化 DNA甲基化 癌症研究 染色质重塑 遗传学 DNA 基因 基因表达
作者
Huangqi Tang,Ya-Fei Lu,Rongsheng Zeng,Chaohua Liu,Yuxin Shu,Yupei Wu,Jiajie Su,Longjiang Di,Jinqin Qian,Jun Zhang,Yuan Tian,Xiaopeng Lu,Xin‐Hai Pei,Qian Zhu,Wei‐Guo Zhu
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [Proceedings of the National Academy of Sciences]
卷期号:121 (35) 被引量:4
标识
DOI:10.1073/pnas.2320804121
摘要

Breast Cancer Type 1 Susceptibility Protein (BRCA1) is a tumor-suppressor protein that regulates various cellular pathways, including those that are essential for preserving genome stability. One essential mechanism involves a BRCA1-A complex that is recruited to double-strand breaks (DSBs) by RAP80 before initiating DNA damage repair (DDR). How RAP80 itself is recruited to DNA damage sites, however, is unclear. Here, we demonstrate an intrinsic correlation between a methyltransferase DOT1L-mediated RAP80 methylation and BRCA1-A complex chromatin recruitment that occurs during cancer cell radiotherapy resistance. Mechanistically, DOT1L is quickly recruited onto chromatin and methylates RAP80 at multiple lysines in response to DNA damage. Methylated RAP80 is then indispensable for binding to ubiquitinated H2A and subsequently triggering BRCA1-A complex recruitment onto DSBs. Importantly, DOT1L-catalyzed RAP80 methylation and recruitment of BRCA1 have clinical relevance, as inhibition of DOT1L or RAP80 methylation seems to enhance the radiosensitivity of cancer cells both in vivo and in vitro. These data reveal a crucial role for DOT1L in DDR through initiating recruitment of RAP80 and BRCA1 onto chromatin and underscore a therapeutic strategy based on targeting DOT1L to overcome tumor radiotherapy resistance.
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