Discovery of a novel DNA polymerase inhibitor and characterization of its antiproliferative properties
- Cancer Biol Ther. 2019;20(4):474-486. doi: 10.1080/15384047.2018.1529126.
- 1. a Department of Biochemistry and Molecular Biology , Valhalla , NY , USA.
- 2. b Department of Pathology , New York Medical College , Valhalla , NY , USA.
Chromosomal duplication is targeted by various chemotherapeutic agents for the treatment of Cancer. However, there is no specific inhibitor of DNA polymerases that is viable for Cancer management. Through structure-based in silico screening of the ZINC database, we identified a specific inhibitor of DNA Polymerase δ. The discovered inhibitor, Zelpolib, is projected to bind to the active site of Pol δ when it is actively engaged in DNA replication through interactions with DNA template and primer. Zelpolib shows robust inhibition of Pol δ activity in reconstituted DNA replication assays. Under cellular conditions, Zelpolib is taken up readily by Cancer cells and inhibits DNA replication in assays to assess global DNA synthesis or single-molecule Bases by DNA fiber fluorography. In addition, we show that Zelpolib displays superior antiproliferative properties to methotrexate, 5-flourouracil, and cisplatin in triple-negative breast Cancer cell line, pancreatic Cancer cell line and platinum-resistant pancreatic Cancer cell line. Pol δ is not only involved in DNA replication, it is also a key component in many DNA repair pathways. Pol δ is the key enzyme responsible for D-loop extension during homologous recombination. Indeed, Zelpolib shows robust inhibition of homologous recombination repair of DNA double-strand breaks and induces "BRCAness" in HR-proficient Cancer cells and enhances their sensitivity to PARP inhibitors.
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Cat. No.Product NameDescriptionTargetResearch Area
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target: DNA/RNA SynthesisResearch Areas: Cancer