生物
同源重组
雷达51
DNA修复
细胞生物学
DNA损伤
合成致死
表观遗传学
调节器
分子生物学
非同源性末端接合
DNA
磷酸化
癌症研究
遗传学
基因
作者
Yuping Chen,Jinhuan Wu,Linhui Zhai,Tingting Zhang,Hui Yin,Huanyao Gao,Fei Zhao,Zhe Wang,Xiaoning Yang,Mingpeng Jin,Bingsong Huang,Xin Ding,Rui Li,Jie Yang,Yiming He,Qianwen Wang,Weibin Wang,Jake A. Kloeber,Yunxuan Li,Bingbing Hao
出处
期刊:Cell
[Cell Press]
日期:2023-12-20
卷期号:187 (2): 294-311.e21
被引量:117
标识
DOI:10.1016/j.cell.2023.11.022
摘要
Lactylation is a lactate-induced post-translational modification best known for its roles in epigenetic regulation. Herein, we demonstrate that MRE11, a crucial homologous recombination (HR) protein, is lactylated at K673 by the CBP acetyltransferase in response to DNA damage and dependent on ATM phosphorylation of the latter. MRE11 lactylation promotes its binding to DNA, facilitating DNA end resection and HR. Inhibition of CBP or LDH downregulated MRE11 lactylation, impaired HR, and enhanced chemosensitivity of tumor cells in patient-derived xenograft and organoid models. A cell-penetrating peptide that specifically blocks MRE11 lactylation inhibited HR and sensitized cancer cells to cisplatin and PARPi. These findings unveil lactylation as a key regulator of HR, providing fresh insights into the ways in which cellular metabolism is linked to DSB repair. They also imply that the Warburg effect can confer chemoresistance through enhancing HR and suggest a potential therapeutic strategy of targeting MRE11 lactylation to mitigate the effects.
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