BRCA1185delAG tumors may acquire therapy resistance through expression of RING-less BRCA1

Rinske Drost(The Netherlands Cancer Institute), Kiranjit K. Dhillon(Fred Hutch Cancer Center), Hanneke van der Gulden(The Netherlands Cancer Institute), Ingrid van der Heijden(The Netherlands Cancer Institute), Inger Brandsma(Erasmus MC), Cristina Cruz(Vall d'Hebron Institute of Oncology), Dafni Chondronasiou(The Netherlands Cancer Institute), Marta Castroviejo‐Bermejo, Ute Boon(Cancer Genomics Centre), Eva Schut(Cancer Genomics Centre), Eline van der Burg(The Netherlands Cancer Institute), Ellen Wientjens(Cancer Genomics Centre), Mark Pieterse(The Netherlands Cancer Institute), Christiaan Klijn(The Netherlands Cancer Institute), Sjoerd Klarenbeek(Cancer Genomics Centre), Fabricio Loayza‐Puch(The Netherlands Cancer Institute), Ran Elkon(The Netherlands Cancer Institute), Liesbeth van Deemter(Cancer Genomics Centre), Sven Rottenberg(The Netherlands Cancer Institute), Marieke van de Ven, Dick H. W. Dekkers(Erasmus MC), Jeroen Demmers(Erasmus MC), Dik C. van Gent(Erasmus MC), Reuven Agami(The Netherlands Cancer Institute), Judith Balmañà(Vall d'Hebron Hospital Universitari), Violeta Serra, Toshiyasu Taniguchi(Fred Hutch Cancer Center), Peter Bouwman(Cancer Genomics Centre), Jos Jonkers(Cancer Genomics Centre)
Journal of Clinical Investigation
July 24, 2016
Cited by 140Open Access
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Abstract

Heterozygous germline mutations in breast cancer 1 (BRCA1) strongly predispose women to breast cancer. BRCA1 plays an important role in DNA double-strand break (DSB) repair via homologous recombination (HR), which is important for tumor suppression. Although BRCA1-deficient cells are highly sensitive to treatment with DSB-inducing agents through their HR deficiency (HRD), BRCA1-associated tumors display heterogeneous responses to platinum drugs and poly(ADP-ribose) polymerase (PARP) inhibitors in clinical trials. It is unclear whether all pathogenic BRCA1 mutations have similar effects on the response to therapy. Here, we have investigated mammary tumorigenesis and therapy sensitivity in mice carrying the Brca1185stop and Brca15382stop alleles, which respectively mimic the 2 most common BRCA1 founder mutations, BRCA1185delAG and BRCA15382insC. Both the Brca1185stop and Brca15382stop mutations predisposed animals to mammary tumors, but Brca1185stop tumors responded markedly worse to HRD-targeted therapy than did Brca15382stop tumors. Mice expressing Brca1185stop mutations also developed therapy resistance more rapidly than did mice expressing Brca15382stop. We determined that both murine Brca1185stop tumors and human BRCA1185delAG breast cancer cells expressed a really interesting new gene domain-less (RING-less) BRCA1 protein that mediated resistance to HRD-targeted therapies. Together, these results suggest that expression of RING-less BRCA1 may serve as a marker to predict poor response to DSB-inducing therapy in human cancer patients.


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