Guangdong Key Laboratory of Genome Instability and Human Disease Prevention, Department of Biochemistry and Molecular Biology, Shenzhen University School of Medicine, Shenzhen, China.
Department of Physiology, Nanjing Medical University, Nanjing, China.
FASEB J. 2021 Apr;35(4):e21326. doi: 10.1096/fj.202002234R.
Histone modifications play critical roles in DNA damage repair to safeguard genome integrity. However, how different histone modifiers coordinate to build appropriate chromatin context for DNA damage repair is largely unknown. Here, we report a novel interplay between the histone methyltransferase KMT5A and two E3 ligases RNF8 and RNF168 in establishing the histone modification status for DNA damage repair. KMT5A is a newly identified substrate of RNF8 in vitro and in vivo. In response to DNA double-strand breaks (DSBs), RNF8 promotes KMT5A recruitment onto damaged chromatin in a ubiquitination-dependent manner. RNF8-induced KMT5A ubiquitination increases the binding capacity of KMT5A to RNF168. Interestingly, KMT5A not only drives a local increase in H4K20 monomethylation at DSBs, but also promotes RNF168's activity in catalyzing H2A ubiquitination. We proved that the interaction between the H2A acidic patch and KMT5A R188/R189 residues is critical for KMT5A-mediated regulation of H2A ubiquitination. Taken together, our results highlight a new role for KMT5A in linking H4K20 methylation and H2A ubiquitination and provide insight into the histone modification network during DNA damage repair.
组蛋白修饰在 DNA 损伤修复中发挥着关键作用,以维护基因组的完整性。然而,不同的组蛋白修饰酶如何协调构建适当的染色质环境以进行 DNA 损伤修复在很大程度上仍是未知的。在这里,我们报告了组蛋白甲基转移酶 KMT5A 与两个 E3 连接酶 RNF8 和 RNF168 之间的一种新的相互作用,这种相互作用在建立 DNA 损伤修复的组蛋白修饰状态中发挥了重要作用。KMT5A 是 RNF8 在体外和体内新鉴定的底物。在应对 DNA 双链断裂 (DSB) 时,RNF8 以依赖泛素化的方式促进 KMT5A 招募到受损染色质上。RNF8 诱导的 KMT5A 泛素化增加了 KMT5A 与 RNF168 的结合能力。有趣的是,KMT5A 不仅在 DSB 处驱动 H4K20 单甲基化的局部增加,而且还促进了 RNF168 催化 H2A 泛素化的活性。我们证明了 H2A 酸性斑与 KMT5A R188/R189 残基之间的相互作用对于 KMT5A 介导的 H2A 泛素化调控至关重要。综上所述,我们的研究结果突出了 KMT5A 在连接 H4K20 甲基化和 H2A 泛素化中的新作用,并为 DNA 损伤修复过程中的组蛋白修饰网络提供了新的见解。