RFWD3 promotes ZRANB3 recruitment to regulate the remodeling of stalled replication forks

Author:

Moore Chandler E.12ORCID,Yalcindag Selin E.12ORCID,Czeladko Hanna12ORCID,Ravindranathan Ramya12ORCID,Wijesekara Hanthi Yodhara34ORCID,Levy Juliana C.12ORCID,Sannino Vincenzo34ORCID,Schindler Detlev5ORCID,Ciccia Alberto6ORCID,Costanzo Vincenzo34ORCID,Elia Andrew E.H.12ORCID

Affiliation:

1. Department of Radiation Oncology, Massachusetts General Hospital, Harvard Medical School 1 , Boston, MA, USA

2. Center for Cancer Research, Massachusetts General Hospital, Harvard Medical School 2 , Boston, MA, USA

3. DNA Metabolism Laboratory, IFOM ETS, The AIRC Institute for Molecular Oncology 3 , Milan, Italy

4. Department of Oncology and Haematology-Oncology, University of Milan 4 , Milan, Italy

5. Department of Human Genetics, Biozentrum, University of Würzburg 6 , Würzburg, Germany

6. Department of Genetics and Development, Institute for Cancer Genetics, Herbert Irving Comprehensive Cancer Center, Columbia University Irving Medical Center 5 , New York, NY, USA

Abstract

Replication fork reversal is an important mechanism to protect the stability of stalled forks and thereby preserve genomic integrity. While multiple enzymes have been identified that can remodel forks, their regulation remains poorly understood. Here, we demonstrate that the ubiquitin ligase RFWD3, whose mutation causes Fanconi Anemia, promotes recruitment of the DNA translocase ZRANB3 to stalled replication forks and ubiquitinated sites of DNA damage. Using electron microscopy, we show that RFWD3 stimulates fork remodeling in a ZRANB3-epistatic manner. Fork reversal is known to promote nascent DNA degradation in BRCA2-deficient cells. Consistent with a role for RFWD3 in fork reversal, inactivation of RFWD3 in these cells rescues fork degradation and collapse, analogous to ZRANB3 inactivation. RFWD3 loss impairs ZRANB3 localization to spontaneous nuclear foci induced by inhibition of the PCNA deubiquitinase USP1. We demonstrate that RFWD3 promotes PCNA ubiquitination and interaction with ZRANB3, providing a mechanism for RFWD3-dependent recruitment of ZRANB3. Together, these results uncover a new role for RFWD3 in regulating ZRANB3-dependent fork remodeling.

Funder

National Cancer Institute

Breast Cancer Alliance

Associazione Italiana per la Ricerca sul Cancro

Burroughs Wellcome Fund

National Institutes of Health

Schroeder Kurth Fund

Publisher

Rockefeller University Press

Subject

Cell Biology

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