EXO1 protects BRCA1-deficient cells against toxic DNA lesions

Publication date

2024-02-15

Authors

van de Kooij, Bert
Schreuder, Anne
Pavani, Raphael
Garzero, Veronica
Uruci, Sidrit
Wendel, Tiemen J.
Van Hoeck, Arne
San Martin Alonso, Marta
Everts, Marieke
Koerse, Dana

Editors

Advisors

Supervisors

Document Type

Article

Collections

Open Access logo

License

cc_by_nc_nd

Abstract

Inactivating mutations in the BRCA1 and BRCA2 genes impair DNA double-strand break (DSB) repair by homologous recombination (HR), leading to chromosomal instability and cancer. Importantly, BRCA1/2 deficiency also causes therapeutically targetable vulnerabilities. Here, we identify the dependency on the end resection factor EXO1 as a key vulnerability of BRCA1-deficient cells. EXO1 deficiency generates poly(ADP-ribose)-decorated DNA lesions during S phase that associate with unresolved DSBs and genomic instability in BRCA1-deficient but not in wild-type or BRCA2-deficient cells. Our data indicate that BRCA1/EXO1 double-deficient cells accumulate DSBs due to impaired repair by single-strand annealing (SSA) on top of their HR defect. In contrast, BRCA2-deficient cells retain SSA activity in the absence of EXO1 and hence tolerate EXO1 loss. Consistent with a dependency on EXO1-mediated SSA, we find that BRCA1-mutated tumors show elevated EXO1 expression and increased SSA-associated genomic scars compared with BRCA1-proficient tumors. Overall, our findings uncover EXO1 as a promising therapeutic target for BRCA1-deficient tumors.

Keywords

BRCA1, cancer, DNA double-strand break repair, EXO1, homologous recombination, single-strand annealing, synthetic lethality, Molecular Biology, Cell Biology

Citation

van de Kooij, B, Schreuder, A, Pavani, R, Garzero, V, Uruci, S, Wendel, T J, van Hoeck, A, San Martin Alonso, M, Everts, M, Koerse, D, Callen, E, Boom, J, Mei, H, Cuppen, E, Luijsterburg, M S, van Vugt, M A T M, Nussenzweig, A, van Attikum, H & Noordermeer, S M 2024, 'EXO1 protects BRCA1-deficient cells against toxic DNA lesions', Molecular Cell, vol. 84, no. 4, pp. 659-674.e7. https://doi.org/10.1016/j.molcel.2023.12.039