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RNF8使RecQL4泛素化,并促进其从DNA双链断裂处解离。

RNF8 ubiquitinates RecQL4 and promotes its dissociation from DNA double strand breaks.

作者信息

Tan Qunsong, Niu Kaifeng, Zhu Yuqi, Chen Zixiang, Li Yueyang, Li Mengge, Wei Di, Balajee Adayabalam S, Fang Hongbo, Zhao Yongliang

机构信息

Key Laboratory of Genomic and Precision Medicine, Beijing Institute of Genomics, Chinese Academy of Sciences, Beijing, 100101, China.

China National Center for Bioinformation, Beijing, 100101, China.

出版信息

Oncogenesis. 2021 Mar 5;10(3):24. doi: 10.1038/s41389-021-00315-0.

Abstract

Ubiquitination-dependent DNA damage response (DDR) signals play a critical role in the cellular choice of DNA damage repair pathways. Human DNA helicase RecQL4 participates in DNA replication and repair, and loss of RecQL4 is associated with autosomal recessive genetic disorders characterized by genomic instability features. In an earlier study, RecQL4 was isolated as a stable complex that contained two ubiquitin ligases of the N-end rule (UBR1 and UBR2). However, it is unknown whether or not RecQL4 ubiquitination status is critical for its DNA repair function. Here, we report that RecQL4 directly interacts with RNF8 (a RING finger ubiquitin E3 ligase), and both co-localize at DNA double-strand break (DSB) sites. Our findings indicate that RNF8 ubiquitinates RecQL4 protein mainly at the lysine sites of 876, 1048, and 1101, thereby facilitating the dissociation of RecQL4 from DSB sites. RecQL4 mutant at ubiquitination sites had a significantly prolonged retention at DSBs, which hinders the recruitment of its direct downstream DSB repair proteins (CtIP & Ku80). Interestingly, reduced DSB repair capacity observed in RecQL4 depleted cells was restored only by the reconstitution of wild-type RecQL4, but not the ubiquitination mutant. Additionally, RecQL4 directly interacts with WRAP53β that is known to recruit RNF8 to DSBs and WRAP53β enhances the association of RecQL4 with RNF8. WRAP53β silencing resulted in a nearly diminished recruitment of RNF8 to DSBs and in a greatly attenuated dissociation of RecQL4 from the DSB sites. Collectively, our study demonstrates that the ubiquitination event mediated by RNF8 constitutes an essential component for RecQL4's function in DSB repair.

摘要

泛素化依赖性DNA损伤反应(DDR)信号在细胞对DNA损伤修复途径的选择中起关键作用。人类DNA解旋酶RecQL4参与DNA复制和修复,RecQL4的缺失与以基因组不稳定特征为特点的常染色体隐性遗传疾病相关。在早期研究中,RecQL4作为一种稳定复合物被分离出来,该复合物包含两个N端规则的泛素连接酶(UBR1和UBR2)。然而,RecQL4的泛素化状态对其DNA修复功能是否至关重要尚不清楚。在此,我们报告RecQL4直接与RNF8(一种环状结构域泛素E3连接酶)相互作用,且二者都共定位于DNA双链断裂(DSB)位点。我们的研究结果表明,RNF8主要在876、1048和1101的赖氨酸位点使RecQL4蛋白泛素化,从而促进RecQL4从DSB位点解离。泛素化位点处的RecQL4突变体在DSB处的保留时间显著延长,这阻碍了其直接下游DSB修复蛋白(CtIP和Ku80)的募集。有趣的是,在RecQL4缺失的细胞中观察到的DSB修复能力降低,仅通过野生型RecQL4的重组得以恢复,而泛素化突变体则不能。此外,RecQL4直接与已知可将RNF8募集到DSB的WRAP53β相互作用,并且WRAP53β增强了RecQL4与RNF8的结合。WRAP53β沉默导致RNF8向DSB的募集几乎减少,并且RecQL4从DSB位点的解离大大减弱。总体而言,我们的研究表明,由RNF8介导的泛素化事件是RecQL4在DSB修复中发挥功能的重要组成部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a21/7935965/f2fbea3c5e86/41389_2021_315_Fig1_HTML.jpg

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