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Targeting Cellular Pseudo-Senescence to Overcome PARP inhibitors Resistance in BRCA1 -Mutated Breast Cancer

Tian, Z.;Chatla, S.;Indulkar, S.;Kim, D.;Wei, X.;Liao, Y.;Yang, D.;Pompetti, A.;Calendo, G.;Wang, C.;Edmonston, T.;Lou, Z.;Skorski, T.;Wang, L.;Huang, J.

2026-06-26 Cancer Biology
10.64898/2026.06.25.734617 bioRxiv
Show abstract

Poly (ADP-ribose) polymerase (PARP) inhibitors (PARPi) are a mainstay therapy for homologous recombination (HR)-deficient cancers; however, resistance remains a major clinical challenge. Previously, through a genome wide CRISPR screen, we identified ZNF251 haploinsufficiency as a novel driver of PARPi resistance. In BRCA1-mutant (BRCA1mut) cells, ZNF251 deficiency led to HR hyperactivation, conferring PARPi resistance that could be reversed by RAD51 inhibition. In this study, we further show that ZNF251 deficiency induces replication stress and a pseudo-senescence state, in which cells exhibit molecular and phenotypic markers of senescence while retaining proliferative capacity. Because senomorphic and senolytic therapies can target senescent cells, we tested whether these approaches could overcome PARPi resistance in ZNF251-deficient breast cancer cells. Critically, targeting this senescence-like state with either senomorphic agents, such as cytokine inhibitors, or senolytic agents, such as BCL-2 and BCL-XL inhibitors, overcame PARPi resistance ex vivo and in vivo. Importantly, pseudo-senescence was also observed in other PARPi-resistant contexts driven by HR hyperactivation, including 53BP1- and Shieldin-mutant cells, suggesting that it may represent a broader mechanism underlying PARPi resistance in breast cancer. Furthermore, in two olaparib-resistant, BRCA-mutant triple-negative breast cancer organoid models, treatment with DT2216, a BCL-XL-targeting PROTAC, sensitized both models to olaparib. Together, our work defines a novel pathway linking HR hyperactivation, replication stress, and pseudo-senescence, and positions both senomorphic and senolytic therapies as promising strategies to overcome PARPi resistance in BRCA1mut breast cancer. HighlightsO_LIZNF251 deficiency drives PARP inhibitor resistance through HR hyperactivation, replication stress, and pseudo-senescence in BRCA1-mutant breast cancer. C_LIO_LISenomorphic and senolytic therapies overcome PARP inhibitor resistance in vitro, in vivo, and in patient-derived organoid models. C_LIO_LIPseudo-senescence represents a shared vulnerability of HR-hyperactivated PARPi-resistant cancers and can be therapeutically targeted. C_LI

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