Synthetic viability by BRCA2 and PARP1/ARTD1 deficiencies

BRCA2 和 PARP1/ARTD1 缺陷导致的合成生存能力

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作者:Xia Ding,Arnab Ray Chaudhuri,Elsa Callen,Yan Pang,Kajal Biswas,Kimberly D Klarmann,Betty K Martin,Sandra Burkett,Linda Cleveland,Stacey Stauffer,Teresa Sullivan,Aashish Dewan,Hanna Marks,Anthony T Tubbs,Nancy Wong,Eugen Buehler,Keiko Akagi,Scott E Martin,Jonathan R Keller,André Nussenzweig,Shyam K Sharan

Abstract

Poly (ADP-ribose) polymerase (PARP) inhibitor (PARPi) olaparib has been approved for treatment of advanced ovarian cancer associated with BRCA1 and BRCA2 mutations. BRCA1- and BRCA2-mutated cells, which are homologous recombination (HR) deficient, are hypersensitive to PARPi through the mechanism of synthetic lethality. Here we examine the effect of PARPi on HR-proficient cells. Olaparib pretreatment, PARP1 knockdown or Parp1 heterozygosity of Brca2(cko/ko) mouse embryonic stem cells (mESCs), carrying a null (ko) and a conditional (cko) allele of Brca2, results in viable Brca2(ko/ko) cells. PARP1 deficiency does not restore HR in Brca2(ko/ko) cells, but protects stalled replication forks from MRE11-mediated degradation through its impaired recruitment. The functional consequence of Parp1 heterozygosity on BRCA2 loss is demonstrated by a significant increase in tumorigenesis in Brca2(cko/cko) mice. Thus, while olaparib efficiently kills BRCA2-deficient cells, we demonstrate that it can also contribute to the synthetic viability if PARP is inhibited before BRCA2 loss.

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