ABRAXAS1 orchestrates BRCA1 activities to counter genome destabilizing repair pathways—lessons from breast cancer patients

Author:

Sachsenweger Juliane,Jansche Rebecca,Merk Tatjana,Heitmeir Benedikt,Deniz Miriam,Faust Ulrike,Roggia Cristiana,Tzschach AndreasORCID,Schroeder Christopher,Riess Angelika,Pospiech Helmut,Peltoketo Hellevi,Pylkäs Katri,Winqvist RobertORCID,Wiesmüller LisaORCID

Abstract

AbstractIt has been well-established that mutations inBRCA1andBRCA2, compromising functions in DNA double-strand break repair (DSBR), confer hereditary breast and ovarian cancer risk. Importantly, mutations in these genes explain only a minor fraction of the hereditary risk and of the subset of DSBR deficient tumors. Our screening efforts identified two truncating germline mutations in the gene encoding the BRCA1 complex partner ABRAXAS1 in German early-onset breast cancer patients. To unravel the molecular mechanisms triggering carcinogenesis in these carriers of heterozygous mutations, we examined DSBR functions in patient-derived lymphoblastoid cells (LCLs) and in genetically manipulated mammary epithelial cells. By use of these strategies we were able to demonstrate that these truncatingABRAXAS1mutations exerted dominant effects on BRCA1 functions. Interestingly, we did not observe haploinsufficiency regarding homologous recombination (HR) proficiency (reporter assay, RAD51-foci, PARP-inhibitor sensitivity) in mutation carriers. However, the balance was shifted to use of mutagenic DSBR-pathways. The dominant effect of truncated ABRAXAS1 devoid of the C-terminal BRCA1 binding site can be explained by retention of the N-terminal interaction sites for other BRCA1-A complex partners like RAP80. In this case BRCA1 was channeled from the BRCA1-A to the BRCA1-C complex, which induced single-strand annealing (SSA). Further truncation, additionally deleting the coiled-coil region of ABRAXAS1, unleashed excessive DNA damage responses (DDRs) de-repressing multiple DSBR-pathways including SSA and non-homologous end-joining (NHEJ). Our data reveal de-repression of low-fidelity repair activities as a common feature of cells from patients with heterozygous mutations in genes encoding BRCA1 and its complex partners.

Funder

Deutsche Forschungsgemeinschaft

Deutsche Krebshilfe

PhD fellowship from International Graduate School in Molecular Medicine Ulm

Dr.med scholarship for Experimental Medicine from Medical Faculty of Ulm University

Else Kröner Fresenius Stiftung

Finnish Cancer Foundation Academy of Finland Sigrid Juselius Foundation

Publisher

Springer Science and Business Media LLC

Subject

Cancer Research,Cell Biology,Cellular and Molecular Neuroscience,Immunology

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