BRCA1 Mutation-Specific Responses to 53BP1 Loss-Induced Homologous Recombination and PARP Inhibitor Resistance
Author(s) -
Joseph Nacson,
John J. Krais,
Andrea J. Bernhardy,
Emma Clausen,
Wanjuan Feng,
Yifan Wang,
Émmanuelle Nicolas,
Kathy Q. Cai,
Rossella Tricarico,
Hua Xiang,
Daniela Di Marcantonio,
Esteban Martı́nez,
Dali Zong,
Elizabeth A. Handorf,
Alfonso Bellacosa,
Joseph R. Testa,
André Nussenzweig,
Gaorav P. Gupta,
Stephen M. Sykes,
Neil Johnson
Publication year - 2018
Publication title -
cell reports
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.264
H-Index - 154
eISSN - 2639-1856
pISSN - 2211-1247
DOI - 10.1016/j.celrep.2018.08.086
Subject(s) - rad51 , homologous recombination , mutation , biology , dna damage , microbiology and biotechnology , poly adp ribose polymerase , mutant , dna repair , parp inhibitor , cancer research , chemistry , genetics , gene , dna , polymerase
BRCA1 functions in homologous recombination (HR) both up- and downstream of DNA end resection. However, in cells with 53BP1 gene knockout (KO), BRCA1 is dispensable for the initiation of resection, but whether BRCA1 activity is entirely redundant after end resection is unclear. Here, we found that 53bp1 KO rescued the embryonic viability of a Brca1 ΔC/ΔC mouse model that harbors a stop codon in the coiled-coil domain. However, Brca1 ΔC/ΔC ;53bp1 -/- mice were susceptible to tumor formation, lacked Rad51 foci, and were sensitive to PARP inhibitor (PARPi) treatment, indicative of suboptimal HR. Furthermore, BRCA1 mutant cancer cell lines were dependent on truncated BRCA1 proteins that retained the ability to interact with PALB2 for 53BP1 KO induced RAD51 foci and PARPi resistance. Our data suggest that the overall efficiency of 53BP1 loss of function induced HR may be BRCA1 mutation dependent. In the setting of 53BP1 KO, hypomorphic BRCA1 proteins are active downstream of end resection, promoting RAD51 loading and PARPi resistance.
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