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甲基转移酶SETD6介导的RAD18甲基化可减轻DNA断裂。

RAD18 methylation by the methyltransferase SETD6 attenuates DNA breaks.

作者信息

Weil Lital Estrella, Feldman Michal, Van Duine Jennifer, Qiu Ji, LaBaer Joshua, Levy Dan

机构信息

The Shraga Segal Department of Microbiology, Immunology and Genetics, Ben-Gurion University of the Negev, P.O.B. 653, Be'er-Sheva, 84105, Israel.

The Biodesign Institute, Arizona State University, P.O.B. 653, Tempe, AZ, USA.

出版信息

Sci Rep. 2025 Aug 27;15(1):31643. doi: 10.1038/s41598-025-16908-3.

DOI:10.1038/s41598-025-16908-3
PMID:40866490
Abstract

This study investigated the interaction between the SETD6 lysine methyltransferase and RAD18, a key protein in the DNA damage repair pathway. SETD6 belongs to the SET-domain-containing family of proteins, which are known to catalyze protein methylation, a post-translational modification that plays a critical role in regulating protein function, stability, and interactions. Using protein microarray technology, we identified RAD18 as an interactor and substrate of SETD6. We confirmed this interaction through ELISA and immunoprecipitation assays, demonstrating that SETD6 directly binds and methylates RAD18. Using mass spectrometry and site-directed mutagenesis, we identified that RAD18 undergoes mono-methylation at the K73 and K406 residues. Furthermore, we found that RAD18 methylation affects its nuclear localization. Specifically, SETD6 KO cells exhibited increased nuclear RAD18 levels, suggesting that methylation status influences RAD18's shuttling between the cytoplasm and nucleus. Notably, depletion of SETD6 led to elevated markers of DNA damage (γH2AX) and increased DNA breaks, as evidenced by comet assays. Restoring SETD6 activity significantly reduced DNA damage, while a catalytic inactive mutant did not have this effect, underscoring the importance of SETD6's enzymatic function. Overall, our results demonstrate that SETD6-mediated methylation of RAD18 is essential for attenuating DNA breaks, thereby regulating its cellular localization and function in maintaining genomic integrity.

摘要

本研究调查了SETD6赖氨酸甲基转移酶与DNA损伤修复途径中的关键蛋白RAD18之间的相互作用。SETD6属于含SET结构域的蛋白质家族,已知该家族可催化蛋白质甲基化,这是一种在调节蛋白质功能、稳定性和相互作用中起关键作用的翻译后修饰。利用蛋白质微阵列技术,我们鉴定出RAD18是SETD6的相互作用蛋白和底物。我们通过ELISA和免疫沉淀实验证实了这种相互作用,表明SETD6直接结合并甲基化RAD18。利用质谱和定点诱变技术,我们确定RAD18在K73和K406残基处发生单甲基化。此外,我们发现RAD18甲基化影响其核定位。具体而言,SETD6基因敲除细胞中RAD18的核水平升高,这表明甲基化状态影响RAD18在细胞质和细胞核之间的穿梭。值得注意的是,SETD6的缺失导致DNA损伤标志物(γH2AX)升高和DNA断裂增加,彗星实验证明了这一点。恢复SETD6活性可显著降低DNA损伤,而催化失活的突变体则没有这种效果,这突出了SETD6酶功能的重要性。总体而言,我们的结果表明,SETD6介导的RAD18甲基化对于减轻DNA断裂至关重要,从而调节其细胞定位及其在维持基因组完整性中的功能。

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本文引用的文献

1
Orchestrating epigenetics: a comprehensive review of the methyltransferase SETD6.调控表观遗传学:甲基转移酶SETD6的全面综述
Exp Mol Med. 2025 Mar;57(3):533-544. doi: 10.1038/s12276-025-01423-2. Epub 2025 Mar 18.
2
Chromatin assembly factor 1 subunit A promotes TLS pathway by recruiting E3 ubiquitin ligase RAD18 in cancer cells.染色质组装因子1亚基A通过在癌细胞中招募E3泛素连接酶RAD18促进跨损伤合成途径。
Cell Death Dis. 2025 Mar 1;16(1):147. doi: 10.1038/s41419-025-07468-5.
3
Structural mechanisms of SLF1 interactions with Histone H4 and RAD18 at the stalled replication fork.
在停滞的复制叉处 SLF1 与组蛋白 H4 和 RAD18 相互作用的结构机制。
Nucleic Acids Res. 2024 Nov 11;52(20):12405-12421. doi: 10.1093/nar/gkae831.
4
PARP10 promotes the repair of nascent strand DNA gaps through RAD18 mediated translesion synthesis.PARP10 通过 RAD18 介导的跨损伤合成促进新生链 DNA 缺口的修复。
Nat Commun. 2024 Jul 23;15(1):6197. doi: 10.1038/s41467-024-50429-3.
5
RAD18 O-GlcNAcylation promotes translesion DNA synthesis and homologous recombination repair.RAD18 的 O-GlcNAc 修饰促进了跨损伤 DNA 合成和同源重组修复。
Cell Death Dis. 2024 May 8;15(5):321. doi: 10.1038/s41419-024-06700-y.
6
ATR limits Rad18-mediated PCNA monoubiquitination to preserve replication fork and telomerase-independent telomere stability.ATR 限制 Rad18 介导的 PCNA 单泛素化以维持复制叉和端粒酶独立的端粒稳定性。
EMBO J. 2024 Apr;43(7):1301-1324. doi: 10.1038/s44318-024-00066-9. Epub 2024 Mar 11.
7
PAK4 methylation by the methyltransferase SETD6 attenuates cell adhesion.SETD6 甲基转移酶对 PAK4 的甲基化作用减弱了细胞黏附。
Sci Rep. 2020 Oct 13;10(1):17068. doi: 10.1038/s41598-020-74081-1.
8
Stimulation of CRISPR-mediated homology-directed repair by an engineered RAD18 variant.工程化 RAD18 变体对 CRISPR 介导的同源定向修复的刺激作用。
Nat Commun. 2019 Jul 30;10(1):3395. doi: 10.1038/s41467-019-11105-z.
9
Lysine methylation signaling of non-histone proteins in the nucleus.核中非组蛋白赖氨酸甲基化信号。
Cell Mol Life Sci. 2019 Aug;76(15):2873-2883. doi: 10.1007/s00018-019-03142-0. Epub 2019 May 23.
10
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Mol Cell Proteomics. 2019 Jul;18(7):1428-1436. doi: 10.1074/mcp.RA119.001518. Epub 2019 May 10.