RAD51 protects against nonconservative DNA double-strand break repair through a nonenzymatic function

Author:

So Ayeong12,Dardillac Elodie12ORCID,Muhammad Ali3,Chailleux Catherine4,Sesma-Sanz Laura56,Ragu Sandrine12,Le Cam Eric3,Canitrot Yvan4,Masson Jean Yves56,Dupaigne Pauline3,Lopez Bernard S12ORCID,Guirouilh-Barbat Josée12

Affiliation:

1. Université de Paris, INSERM U1016, UMR 8104 CNRS, Institut Cochin, Equipe Labellisée Ligue Contre le Cancer, France

2. CNRS UMR 8200, Gustave-Roussy, Université Paris-Saclay, 114 rue Edouard Vaillant, 94805 Villejuif, France

3. Genome Maintenance and Molecular Microscopy UMR 9019 CNRS, Université Paris-Saclay, Gustave Roussy, F-94805, Villejuif Cedex, France

4. CBI, CNRS UMR5088, LBCMCP, Toulouse University, Toulouse, France

5. Genome Stability Laboratory, CHU de Québec Research Center (Oncology Division), Quebec City, QC, Canada

6. Department of Molecular Biology, Medical Biochemistry and Pathology, Laval University Cancer Research Center, Quebec City, QC, Canada

Abstract

Abstract Selection of the appropriate DNA double-strand break (DSB) repair pathway is decisive for genetic stability. It is proposed to act according to two steps: 1-canonical nonhomologous end-joining (C-NHEJ) versus resection that generates single-stranded DNA (ssDNA) stretches; 2-on ssDNA, gene conversion (GC) versus nonconservative single-strand annealing (SSA) or alternative end-joining (A-EJ). Here, we addressed the mechanisms by which RAD51 regulates this second step, preventing nonconservative repair in human cells. Silencing RAD51 or BRCA2 stimulated both SSA and A-EJ, but not C-NHEJ, validating the two-step model. Three different RAD51 dominant-negative forms (DN-RAD51s) repressed GC and stimulated SSA/A-EJ. However, a fourth DN-RAD51 repressed SSA/A-EJ, although it efficiently represses GC. In living cells, the three DN-RAD51s that stimulate SSA/A-EJ failed to load efficiently onto damaged chromatin and inhibited the binding of endogenous RAD51, while the fourth DN-RAD51, which inhibits SSA/A-EJ, efficiently loads on damaged chromatin. Therefore, the binding of RAD51 to DNA, rather than its ability to promote GC, is required for SSA/A-EJ inhibition by RAD51. We showed that RAD51 did not limit resection of endonuclease-induced DSBs, but prevented spontaneous and RAD52-induced annealing of complementary ssDNA in vitro. Therefore, RAD51 controls the selection of the DSB repair pathway, protecting genome integrity from nonconservative DSB repair through ssDNA occupancy, independently of the promotion of CG.

Funder

Ligue Nationale contre le cancer

Agence Nationale de la Recherche

Institut National Du Cancer

CIHR Foundation

Publisher

Oxford University Press (OUP)

Subject

Genetics

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