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
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Advisors
Supervisors
Document Type
Article
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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