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Journal article

Mre11-dependent degradation of stalled DNA replication forks is prevented by BRCA2 and PARP1.

Abstract:
PARP inhibitors are currently being used in clinical trials to treat BRCA1- or BRCA2-defective tumors, based on the synthetic lethal interaction between PARP1 and BRCA1/2-mediated homologous recombination (HR). However, the molecular mechanisms that drive this synthetic lethality remain unclear. Here, we show increased levels of Mre11, a key component of MRN (Mre11-Rad50-Nbs1) complex that plays a role in the restart of stalled replication forks and enhanced resection at stalled replication forks in BRCA2-deficient cells. BRCA2-deficient cells also showed hypersensitivity to the Mre11 inhibitor mirin. Interestingly, PARP1 activity was required to protect stalled forks from Mre11-dependent degradation. Resistance to PARP inhibition in BRCA2-mutant cells led to reduced levels of Mre11 foci and also rescued their sensitivity to mirin. Taken together, our findings not only show that Mre11 activity is required for the survival of BRCA2 mutant cells but also elucidate roles for both the BRCA2 and PARP1 proteins in protecting stalled replication forks, which offers insight into the molecular mechanisms of the synthetic lethality between BRCA2 and PARP1.
Publication status:
Published

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Publisher copy:
10.1158/0008-5472.can-11-3417

Authors

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Institution:
University of Oxford
Division:
MPLS
Department:
Engineering Science
Sub department:
Institute of Biomedical Engineering
Role:
Author


Journal:
Cancer research More from this journal
Volume:
72
Issue:
11
Pages:
2814-2821
Publication date:
2012-06-01
DOI:
EISSN:
1538-7445
ISSN:
0008-5472


Language:
English
Keywords:
Pubs id:
pubs:320425
UUID:
uuid:0ec7557d-73a5-4be1-9a82-dee38815babd
Local pid:
pubs:320425
Source identifiers:
320425
Deposit date:
2012-12-19
ARK identifier:

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