N 6 -methyladenine modification of DNA enhances RecA-mediated homologous recombination

同源重组 DNA甲基化 DNA DNA修复 甲基化 细菌圆形染色体 遗传学 DNA复制 雷达51 分子生物学 生物 基因 基因表达
作者
Xiaocong Zhao,Bing Wu,Yajun Yang,Ying Li,Qiyuan Qiu,Liu Wang,Ya-Peng Xu,Han Gong,Lun Song,Xuejie Wang,Jingyao Shi,Xuefeng Chen,Shaoran Zhang,Qi Zong,Liang Dai,Shishen Du,Yan Zhang,Wenqiang Wu,Xinghua Zhang
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:122 (34): e2508652122-e2508652122
标识
DOI:10.1073/pnas.2508652122
摘要

Both DNA methylation and homologous recombination (HR) are extensively studied. In bacteria, Dam methylation is the most studied DNA modification, while RecA-mediated HR is a primary mechanism to repair DNA damages including double-stranded breaks, single-stranded gaps, and stalled replication forks. While HR regulation by proteins is extensively studied, whether methylation of DNA itself directly affects the functions of RecA and HR remains unclear. Mainly by single-molecule experiments, we report that Dam methylation of single-stranded DNA (ssDNA) promotes RecA assembly, partially by reducing the effective charge of ssDNA under counterion screening. Furthermore, Dam methylation of double-stranded DNA promotes homologous pairing, joint molecule growth, and strand exchange. In cellular experiments, dam deletion impairs HR, whereas hypermethylation of the adenines in the genome enhances HR in P1 transduction assays and DNA-damage sensitivity tests without significantly upregulated HR-related genes. In addition, the preference of RecA for Dam-methylated DNA in RecA assembly and homologous pairing is conserved across divergent species covering a gram-negative bacterium Klebsiella pneumoniae , a gram-positive bacterium Bacillus subtilis, and a flowering plant Arabidopsis thaliana . Dam methylation of ssDNA increases the ATPase activity of molecular motors such as RecQ helicase that containing RecA-like domains. These findings reveal effects of DNA methylation and mechanisms regulating RecA-mediated HR and molecular motors.
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