A Bifunctional PARP-HDAC Inhibitor with Activity in Ewing Sarcoma

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Abstract

Purpose: Histone deacetylase (HDAC) inhibition has been shown to induce pharmacologic "BRCAness"in cancer cells with proficient DNA repair activity. This provides a rationale for exploring combination treatments with HDAC and PARP inhibition in cancer types that are insensitive to single-agent PARP inhibitors (PARPi). Here, we report the concept and characterization of a novel bifunctional PARPi (kt-3283) with dual activity toward PARP1/2 and HDAC enzymes in Ewing sarcoma cells. Experimental Design: Inhibition of PARP1/2 and HDAC was measured using PARP1/2, HDAC activity, and PAR formation assays. Cytotoxicity was assessed by IncuCyte live cell imaging, CellTiter-Glo, and spheroid assays. Cell-cycle profiles were determined using propidium iodide staining and flow cytometry. DNA damage was examined by gH2AX expression and comet assay. Inhibition of metastatic potential by kt-3283 was evaluated via ex vivo pulmonary metastasis assay (PuMA). Results: Compared with FDA-approved PARP (olaparib) and HDAC (vorinostat) inhibitors, kt-3283 displayed enhanced cytotoxicity in Ewing sarcoma models. The kt-3283-induced cytotoxicity was associated with strong S and G2-M cell-cycle arrest in nanomolar concentration range and elevated DNA damage as assessed by gH2AX tracking and comet assays. In threedimensional spheroid models of Ewing sarcoma, kt-3283 showed efficacy in lower concentrations than olaparib and vorinostat, and kt-3283 inhibited colonization of Ewing sarcoma cells in the ex vivo PuMA model. Conclusions: Our data demonstrate the preclinical justification for studying the benefit of dual PARP and HDAC inhibition in the treatment of Ewing sarcoma in a clinical trial and provides proof-ofconcept for a bifunctional single-molecule therapeutic strategy.

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APA

Ramos, L., Truong, S., Zhai, B., Joshi, J., Ghaidi, F., Lizardo, M. M., … Daugaard, M. (2023). A Bifunctional PARP-HDAC Inhibitor with Activity in Ewing Sarcoma. Clinical Cancer Research, 29(17), 3541–3553. https://doi.org/10.1158/1078-0432.CCR-22-3897

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