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人类RIF1长亚型与BRCA1相互作用,以促进DNA复制应激下的重组叉修复。

The human RIF1-Long isoform interacts with BRCA1 to promote recombinational fork repair under DNA replication stress.

作者信息

Dong Qianqian, Day Matthew, Saito Yuichiro, Parker Emma, Watts Lotte P, Kanemaki Masato T, Oliver Antony W, Pearl Laurence H, Hiraga Shin-Ichiro, Donaldson Anne D

机构信息

Chromosome & Cellular Dynamics Section, Institute of Medical Sciences, University of Aberdeen, Aberdeen, UK.

Cancer Research UK DNA Repair Enzymes Group, Genome Damage and Stability Centre, School of Life Sciences, University of Sussex, Brighton, UK.

出版信息

Nat Commun. 2025 Jul 1;16(1):5820. doi: 10.1038/s41467-025-60817-y.

Abstract

RIF1 is a multifunctional protein that regulates DNA replication and repair. RIF1-deficient cells are hypersensitive to DNA replication stress. Of the two alternatively spliced RIF1 isoforms, called RIF1-Short and RIF1-Long, the RIF1-Long isoform is more capable than RIF1-Short in supporting cell recovery from replication stress. Examining replication stress resistance mechanisms specific to RIF1-Long, we find that prolonged replication stress unexpectedly induces interaction of RIF1-Long with BRCA1. Mechanistically, a phosphorylated SPKF motif unique to the RIF1-Long isoform binds the tandem BRCT domain of BRCA1. BRCA1-RIF1-Long interaction is strongly down-regulated through dephosphorylation by RIF1-associated Protein Phosphatase 1. BRCA1-RIF1-Long interaction requires ATR signaling, and occurs predominantly during S phase. Loss of RIF1-Long impairs the formation of RAD51 foci, and reduces the efficiency of homology-mediated repair at broken replication forks. In summary, our investigation establishes RIF1-Long as a new functional binding partner of the BRCA1-BRCT domain, crucial to protect cells from extended DNA replication stress by enabling RAD51-dependent repair of broken replication forks.

摘要

RIF1是一种调节DNA复制和修复的多功能蛋白质。RIF1缺陷型细胞对DNA复制应激高度敏感。在两种选择性剪接的RIF1异构体(称为RIF1-Short和RIF1-Long)中,RIF1-Long异构体在支持细胞从复制应激中恢复方面比RIF1-Short更有能力。通过研究RIF1-Long特有的复制应激抗性机制,我们发现延长的复制应激意外地诱导了RIF1-Long与BRCA1的相互作用。从机制上讲,RIF1-Long异构体特有的磷酸化SPKF基序与BRCA1的串联BRCT结构域结合。BRCA1-RIF1-Long相互作用通过RIF1相关蛋白磷酸酶1的去磷酸化作用而强烈下调。BRCA1-RIF1-Long相互作用需要ATR信号传导,并且主要发生在S期。RIF1-Long的缺失会损害RAD51焦点的形成,并降低断裂复制叉处同源介导修复的效率。总之,我们的研究确定RIF1-Long是BRCA1-BRCT结构域的一种新的功能性结合伙伴,对于通过使断裂的复制叉能够进行RAD51依赖性修复来保护细胞免受延长的DNA复制应激至关重要。

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