A Bifunctional PARP-HDAC Inhibitor with Activity in Ewing Sarcoma

Author:

Ramos Louise123ORCID,Truong Sarah23ORCID,Zhai Beibei123ORCID,Joshi Jay23ORCID,Ghaidi Fariba23ORCID,Lizardo Michael M.4ORCID,Shyp Taras45ORCID,Kung Sonia H.Y.2ORCID,Rezakhanlou Alireza M.2ORCID,Oo Htoo Zarni2ORCID,Adomat Hans2ORCID,Le Bihan Stephane2ORCID,Collins Colin12ORCID,Bacha Jeffrey3ORCID,Brown Dennis3ORCID,Langlands John3ORCID,Shen Wang3ORCID,Lallous Nada12ORCID,Sorensen Poul H.45ORCID,Daugaard Mads1235ORCID

Affiliation:

1. 1Department of Urologic Sciences, University of British Columbia, Vancouver, British Columbia, Canada.

2. 2Vancouver Prostate Centre, Vancouver, British Columbia, Canada.

3. 3Rakovina Therapeutics, Vancouver, British Columbia, Canada.

4. 4BC Cancer Agency, Vancouver, British Columbia, Canada.

5. 5Department of Pathology and Laboratory Medicine, University of British Columbia, Vancouver, Canada.

Abstract

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 γH2AX 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 γH2AX tracking and comet assays. In three-dimensional 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-of-concept for a bifunctional single-molecule therapeutic strategy.

Funder

St. Baldrick's Foundation

National Research Council Canada

Publisher

American Association for Cancer Research (AACR)

Subject

Cancer Research,Oncology

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