Poly (ADP) ribose glycohydrolase can be effectively targeted in pancreatic cancer

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Abstract

Patients with metastatic pancreatic ductal adenocarcinoma (PDAC) have an average survival of less than 1 year, underscoring the importance of evaluating novel targets with matched targeted agents. We recently identified that poly (ADP) ribose glycohydrolase (PARG) is a strong candidate target due to its dependence on the pro-oncogenic mRNA stability factor HuR (ELAVL1). Here, we evaluated PARG as a target in PDAC models using both genetic silencing of PARG and established small-molecule PARG inhibitors (PARGi), PDDX-01/04. Homologous repair-deficient cells compared with homologous repair-proficient cells were more sensitive to PARGi in vitro. In vivo, silencing of PARG significantly decreased tumor growth. PARGi synergized with DNA-damaging agents (i.e., oxaliplatin and 5-fluorouracil), but not with PARPi therapy. Mechanistically, combined PARGi and oxaliplatin treatment led to persistence of detrimental PARylation, increased expression of cleaved caspase-3, and increased gH2AX foci. In summary, these data validate PARG as a relevant target in PDAC and establish current therapies that synergize with PARGi.

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Jain, A., Agostini, L. C., McCarthy, G. A., Chand, S. N., Ramirez, A. J., Nevler, A., … Brody, J. R. (2019). Poly (ADP) ribose glycohydrolase can be effectively targeted in pancreatic cancer. Cancer Research, 79(17), 4491–4502. https://doi.org/10.1158/0008-5472.CAN-18-3645

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