Distinct effects of sacituzumab govitecan and berzosertib on DNA damage response in ovarian cancer

Antibody–drug conjugates (ADCs) have become an important class of anticancer drugs in solid tumors including drug-resistant gynecologic malignancies. TROP2 is a cell surface antigen that is highly expressed in ovarian carcinoma (OC) but minimally expressed in normal ovarian tissues. In this study, w...

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Veröffentlicht in:iScience 2024-12, Vol.27 (12), p.111283, Article 111283
Hauptverfasser: Nair, Jayakumar R., Huang, Tzu-Ting, Sunkara, Anu, Pruitt, Margaret R., Ibanez, Kristen R., Chiang, Chih-Yuan, Cheng, Ken Chih-Chien, Wilson, Kelli, Cardillo, Thomas M., Hofsess, Scott, Lee, Jung-Min
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Sprache:eng
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Zusammenfassung:Antibody–drug conjugates (ADCs) have become an important class of anticancer drugs in solid tumors including drug-resistant gynecologic malignancies. TROP2 is a cell surface antigen that is highly expressed in ovarian carcinoma (OC) but minimally expressed in normal ovarian tissues. In this study, we aimed to identify how TROP2-specific ADC, sacituzumab govitecan (SG), modulates DNA damage response pathways in drug-resistant OC. We found that SG induces G2/M arrest, increases RPA1 foci, and decreases replication fork speed, resulting in replication stress in TROP2-positive cells while these were less evident in TROP2-negative cells. In OC in vitro and in vivo models, SN-38 sensitivity and TROP2 expression play key roles in response to either ATR inhibitor or SG alone, or in combination. Additionally, inhibition of translesion DNA synthesis enhances SG and PARP inhibitor (PARPi) sensitivity in PARPi-resistant OC cells. These findings provide mechanistic insights for clinical development of SG in drug-resistant OC. [Display omitted] •SG shows antitumor activity in TROP2-high and TROP2-low ovarian cancer models•SG and ATRi have distinct effects on cell cycle and DNA damage response pathways•SG induces replication stress in TROP2-positive ovarian cancer cells•SG response is dependent on ssDNA repair, RF progression, and HR responses Cancer; Molecular biology; Oncology
ISSN:2589-0042
2589-0042
DOI:10.1016/j.isci.2024.111283