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RNF20介导的H2B单泛素化保护停滞的复制叉不被降解,并促进复制叉重新启动。

RNF20-mediated H2B monoubiquitination protects stalled forks from degradation and promotes fork restart.

作者信息

Bhattacharya Debanjali, Dwivedi Harsh Kumar, Nagaraju Ganesh

机构信息

Department of Biochemistry, Indian Institute of Science, Bangalore, Karnataka, 560012, India.

出版信息

EMBO Rep. 2025 Jun 10. doi: 10.1038/s44319-025-00497-3.

Abstract

Chromatin modifications play an important role in transcription, DNA replication and repair. Nonetheless, whether histone modifications regulate replication stress responses remains obscure. Here, we show that RNF20 localizes to and promotes H2B monoubiquitination (H2Bub) at replicating sites. Knockdown of RNF20 leads to degradation of stalled forks by nucleolytic enzymes, which can be rescued by inhibition of MRE11/DNA2 and co-depletion of SMARCAL1/HLTF/ZRANB3 fork remodelers. RNF20 facilitates the loading of RAD51 and RAD51C at stalled fork sites and acts in the same pathway of RAD51/RAD51C-mediated fork protection and restart. Analyses with RING domain and phosphorylation-deficient mutants of RNF20 show that its catalytic activity and ATR-mediated phosphorylation are essential for its role in replication stress responses. Finally, treatment of RNF20-depleted cells with chromatin relaxing agents rescues fork protection and restart defects. Collectively, our study uncovers a role for RNF20-mediated H2Bub in regulating chromatin dynamics to safeguard replicating genomes.

摘要

染色质修饰在转录、DNA复制和修复中发挥着重要作用。然而,组蛋白修饰是否调节复制应激反应仍不清楚。在这里,我们表明RNF20定位于复制位点并促进H2B单泛素化(H2Bub)。敲低RNF20会导致停滞的复制叉被核酸酶降解,抑制MRE11/DNA2以及共同缺失SMARCAL1/HLTF/ZRANB3复制叉重塑因子可挽救这种情况。RNF20促进RAD51和RAD51C在停滞复制叉位点的加载,并在RAD51/RAD51C介导的复制叉保护和重启的相同途径中发挥作用。对RNF20的环状结构域和磷酸化缺陷突变体的分析表明,其催化活性和ATR介导的磷酸化对其在复制应激反应中的作用至关重要。最后,用染色质松弛剂处理RNF20缺失的细胞可挽救复制叉保护和重启缺陷。总的来说,我们的研究揭示了RNF20介导的H2Bub在调节染色质动力学以保护复制基因组方面的作用。

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