Department of Biochemistry, Yong Loo Lin School of Medicine, National University of Singapore, Singapore.
National University Health System, Singapore.
Nucleic Acids Res. 2018 Jun 1;46(10):5061-5074. doi: 10.1093/nar/gky245.
The Set2 methyltransferase and its target, histone H3 lysine 36 (H3K36), affect chromatin architecture during the transcription and repair of DNA double-stranded breaks. Set2 also confers resistance against the alkylating agent, methyl methanesulfonate (MMS), through an unknown mechanism. Here, we show that Schizosaccharomyces pombe (S. pombe) exhibit MMS hypersensitivity when expressing a set2 mutant lacking the catalytic histone methyltransferase domain or a H3K36R mutant (reminiscent of a set2-null mutant). Set2 acts synergistically with base excision repair factors but epistatically with nucleotide excision repair (NER) factors, and determines the timely nuclear accumulation of the NER initiator, Rhp23, in response to MMS. Set2 facilitates Rhp23 recruitment to chromatin at the brc1 locus, presumably to repair alkylating damage and regulate the expression of brc1+ in response to MMS. Set2 also show epistasis with DNA damage checkpoint proteins; regulates the activation of Chk1, a DNA damage response effector kinase; and acts in a similar functional group as proteins involved in homologous recombination. Consistently, Set2 and H3K36 ensure the dynamicity of Rhp54 in DNA repair foci formation after MMS treatment. Overall, our results indicate a novel role for Set2/H3K36me in coordinating the recruitment of DNA repair machineries to timely manage alkylating damage.
Set2 甲基转移酶及其靶标组蛋白 H3 赖氨酸 36(H3K36)在 DNA 双链断裂的转录和修复过程中影响染色质结构。Set2 还通过未知机制赋予对烷化剂甲基甲烷磺酸酯(MMS)的抗性。在这里,我们表明,表达缺乏催化组蛋白甲基转移酶结构域的 set2 突变体或 H3K36R 突变体(类似于 set2 缺失突变体)的酿酒酵母(S. pombe)对 MMS 表现出 MMS 超敏性。Set2 与碱基切除修复因子协同作用,但与核苷酸切除修复(NER)因子上位作用,并决定了 NER 起始因子 Rhp23 在 MMS 响应中的及时核积累。Set2 有助于 Rhp23 在 brc1 基因座的染色质上的募集,大概是为了修复烷化损伤并调节 brc1+的表达以响应 MMS。Set2 还与 DNA 损伤检查点蛋白上位作用;调节 DNA 损伤反应效应激酶 Chk1 的激活;并与参与同源重组的蛋白质具有相似的功能组。一致地,Set2 和 H3K36 在 MMS 处理后确保 Rhp54 在 DNA 修复焦点形成中的动态性。总体而言,我们的结果表明 Set2/H3K36me 在协调 DNA 修复机制的募集以及时处理烷化损伤方面具有新的作用。