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

Q Qianqian Dong M Matthew Day Y Yuichiro Saito E Emma Parker L Lotte P. Watts M Masato T. Kanemaki A Antony W. Oliver L Laurence H. Pearl S Shin-ichiro Hiraga A Anne D. Donaldson

Abstract

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.

Article Details

Volume / Issue Vol. 16, Issue 1
Published July 01, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (10)

Q

Qianqian Dong

M

Matthew Day

Y

Yuichiro Saito

E

Emma Parker

L

Lotte P. Watts

M

Masato T. Kanemaki

A

Antony W. Oliver

L

Laurence H. Pearl

S

Shin-ichiro Hiraga

A

Anne D. Donaldson