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February 13, 2026Journal of Medicinal Chemistry0 citations

Development of Novel PROTAC RAD51 Degraders as Enhancers of DNA Damage Response for Hepatocellular Carcinoma Treatment

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JHJingyi HuangHWHaiyu WangDJDaohong Jiang

Key Points

  • To develop PROTACs targeting RAD51 and evaluate their effects on DNA damage response in hepatocellular carcinoma.
  • Developed RAD51-targeting PROTACs based on small-molecule inhibitors RI-1 and RI-2.
  • Evaluated the cellular effects of SZU305 (15b) on RAD51 degradation in liver cancer cell lines.
  • Assessed the impact of 15b on homologous recombination efficiency and DNA damage repair.
  • Conducted in vivo studies using Huh-7 xenograft models to evaluate antitumor activity.
  • SZU305 (15b) achieved potent and selective degradation of RAD51 in liver cancer cells.
  • Induced near-complete RAD51 depletion in SK-HEP-1 and Huh-7 cell lines.
  • Increased sensitivity to chemoradiation therapy due to impaired DNA damage repair.
  • Showed strong antitumor activity in vivo without apparent toxicity, especially with sorafenib or irradiation.

Abstract

Recombination Activation Protein 51 (RAD51) is the key recombinase in the homologous recombination (HR) repair pathway. Given its high expression in many cancers and its association with poor prognosis, RAD51 represents a compelling therapeutic target for cancer treatment. Here, we report the development of first-in-class proteolysis-targeting chimeras (PROTACs) directed to RAD51, based on the RAD51-targeting small-molecule inhibitors RI-1 and RI-2. Among them, SZU305 (15b) showed potent and selective RAD51 degradation and antiproliferative effects in multiple liver cancer cell lines, inducing near-complete RAD51 depletion in both SK-HEP-1 and Huh-7 cancer cells. Mechanistically, 15b reduces HR efficiency and impairs DNA damage repair, thereby enhancing chemoradiation sensitivity. In vivo, SZU305 showed strong antitumor activity without apparent toxicity, particularly when combined with sorafenib or irradiation in a Huh-7 xenograft model. These findings highlight the therapeutic potential of RAD51 degradation as a novel strategy to overcome drug resistance in liver cancer.

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Cite This Study

Huang et al. (2026) studied this question.

synapsesocial.com/papers/698ebedd85a1ff6a930162fehttps://doi.org/10.1021/acs.jmedchem.5c02624
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