Protection of nascent DNA at stalled replication forks is mediated by phosphorylation of RIF1 intrinsically disordered region

Author:

Balasubramanian Sandhya12ORCID,Andreani Matteo12ORCID,Andrade Júlia Goncalves1,Saha Tannishtha12,Sundaravinayagam Devakumar1,Garzón Javier3,Zhang Wenzhu4,Popp Oliver5,Hiraga Shin-ichiro3ORCID,Rahjouei Ali1,Rosen Daniel B6ORCID,Mertins Philipp5,Chait Brian T4,Donaldson Anne D3ORCID,Di Virgilio Michela17ORCID

Affiliation:

1. Laboratory of Genome Diversification & Integrity, Max Delbrück Center for Molecular Medicine in the Helmholtz Association

2. Freie Universität Berlin

3. Institute of Medical Sciences, University of Aberdeen, Foresterhill

4. Laboratory of Mass Spectrometry and Gaseous Ion Chemistry, The Rockefeller University

5. Proteomics Platform, Max Delbrück Center for Molecular Medicine in the Helmholtz Association and Berlin Institute of Health

6. Laboratory of Molecular Immunology, The Rockefeller University

7. Charité-Universitätsmedizin Berlin

Abstract

RIF1 is a multifunctional protein that plays key roles in the regulation of DNA processing. During repair of DNA double-strand breaks (DSBs), RIF1 functions in the 53BP1-Shieldin pathway that inhibits resection of DNA ends to modulate the cellular decision on which repair pathway to engage. Under conditions of replication stress, RIF1 protects nascent DNA at stalled replication forks from degradation by the DNA2 nuclease. How these RIF1 activities are regulated at the post-translational level has not yet been elucidated. Here, we identified a cluster of conserved ATM/ATR consensus SQ motifs within the intrinsically disordered region (IDR) of mouse RIF1 that are phosphorylated in proliferating B lymphocytes. We found that phosphorylation of the conserved IDR SQ cluster is dispensable for the inhibition of DSB resection by RIF1, but is essential to counteract DNA2-dependent degradation of nascent DNA at stalled replication forks. Therefore, our study identifies a key molecular feature that enables the genome-protective function of RIF1 during DNA replication stress.

Funder

H2020 European Research Council

Helmholtz Association

National Institutes of Health

Cancer Research UK

MDC

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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