In vivo reduction of RAD51‐mediated homologous recombination triggers aging but impairs oncogenesis

Author:

Matos‐Rodrigues Gabriel12,Barroca Vilma3,Muhammad Ali‐Akbar4,Dardillac Elodie1ORCID,Allouch Awatef5,Koundrioukoff Stephane67,Lewandowski Daniel3,Despras Emmanuelle8,Guirouilh‐Barbat Josée1,Frappart Lucien9ORCID,Kannouche Patricia8ORCID,Dupaigne Pauline4ORCID,Le Cam Eric4,Perfettini Jean‐Luc5ORCID,Romeo Paul‐Henri3,Debatisse Michelle67,Jasin Maria10,Livera Gabriel2,Martini Emmanuelle2ORCID,Lopez Bernard S1ORCID

Affiliation:

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

2. Université de Paris and Université Paris‐Saclay, Laboratory of Development of the Gonads, IRCM/IBFJ CEA, UMR Genetic Stability Stem Cells and Radiation Fontenay aux Roses France

3. Université de Paris and Université Paris‐Saclay, Inserm, IRCM/IBFJ CEA UMR Genetic Stability Stem Cells and Radiation Fontenay aux Roses France

4. Genome Maintenance and Molecular Microscopy UMR8126 CNRS Université Paris‐Sud, Université Paris‐Saclay, Gustave Roussy Villejuif Cedex France

5. Cell Death and Aging Team, INSERM U1030, Laboratory of Molecular Radiotherapy University Paris‐Sud and Gustave Roussy Villejuif France

6. CNRS UMR8200 Sorbonne Universités UPMC University Paris France

7. Institut Gustave Roussy Villejuif France

8. CNRS UMR8200, Laboratory of Genetic Instability and Oncogenesis University Paris‐Sud and Gustave Roussy Villejuif France

9. Leibniz Institute on Aging‐Fritz Lipmann Institute Jena Germany

10. Developmental Biology Program Memorial Sloan Kettering Cancer Center New York NY USA

Abstract

AbstractHomologous recombination (HR) is a prominent DNA repair pathway maintaining genome integrity. Mutations in many HR genes lead to cancer predisposition. Paradoxically, the implication of the pivotal HR factor RAD51 on cancer development remains puzzling. Particularly, no RAD51 mouse models are available to address the role of RAD51 in aging and carcinogenesis in vivo. We engineered a mouse model with an inducible dominant‐negative form of RAD51 (SMRad51) that suppresses RAD51‐mediated HR without stimulating alternative mutagenic repair pathways. We found that in vivo expression of SMRad51 led to replicative stress, systemic inflammation, progenitor exhaustion, premature aging and reduced lifespan, but did not trigger tumorigenesis. Expressing SMRAD51 in a breast cancer predisposition mouse model (PyMT) decreased the number and the size of tumors, revealing an anti‐tumor activity of SMRAD51. We propose that these in vivo phenotypes result from chronic endogenous replication stress caused by HR decrease, which preferentially targets progenitors and tumor cells. Our work underlines the importance of RAD51 activity for progenitor cell homeostasis, preventing aging and more generally for the balance between cancer and aging.

Funder

CNIB

Ligue Contre le Cancer

Publisher

Springer Science and Business Media LLC

Subject

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

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