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January 25, 2026Journal of Medicinal Chemistry3 citations

Discovery of SY-589, a Highly Potent and Orally Bioavailable Polθ Helicase Inhibitor for the Treatment of HR-Deficient Tumors

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CGChongxun GeCHChen HeSSSong Shi

Key Points

  • The aim is to discover and evaluate SY-589, a potent Polθ helicase inhibitor, for treating HR-deficient tumors.
  • Synthesis and characterization of SY-589 as a Polθ inhibitor.
  • In vitro assessment of potency using ATPase and cell growth inhibition assays.
  • In vivo evaluation of antitumor efficacy in HR-deficient tumor models.
  • Assessment of drug synergy with PARP inhibitor Olaparib.
  • SY-589 showed ATPase IC50 of 2.29 nM and CTG IC50 of 2.71 nM.
  • Selectivity index for SY-589 exceeded 1800, indicating strong specificity.
  • The combination of SY-589 and Olaparib resulted in a Loewe score greater than 20, indicating synergistic effects.
  • In vivo studies revealed a tumor growth inhibition (TGI) rate of 109% with the combination treatment.

Abstract

DNA polymerase theta (Polθ), which mediates microhomology-mediated end joining (MMEJ) in homologous recombination-deficient (HRD) cancers, has recently emerged as a compelling synthetic lethal target. Combining Polθ inhibition with PARP inhibitors represents a promising strategy to overcome PARP inhibitor resistance. Here, we present the discovery of SY-589, a highly potent (ATPase IC50 = 2.29 nM), selective (selectivity index >1800), and orally bioavailable (F = 107%) Polθ helicase inhibitor, which exhibits robust antitumor efficacy in HRD tumors in vitro (CTG IC50 = 2.71 nM). Notably, SY-589 synergized strongly with the PARP inhibitor Olaparib in vitro (Loewe score >20) and in vivo (TGI = 109%), enhancing antitumor effects while permitting reduced Olaparib dosing. Overall, SY-589 is a promising candidate of Polθ inhibitor and has been positioned as a rational combination partner with PARP inhibitors, aiming to overcome PARP inhibitor resistance and mitigate their dose-limiting toxicities.

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Cite This Study

Ge et al. (2026) studied this question.

synapsesocial.com/papers/6975b1cefeba4585c2d6d452https://doi.org/10.1021/acs.jmedchem.5c02689
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