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December 2, 2025Nature Communications23 citationsOpen Access

Discovery of a bifunctional PKMYT1-targeting PROTAC empowered by AI-generation

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TLTingting Liu

Key Points

  • D16-M1P2 leads to enhanced antiproliferative potency in PKMYT1-targeted cancer therapies, improving selectivity.
  • The PROTAC exhibits strong pharmacodynamic effects, indicating its effectiveness as a therapeutic target.
  • Cereblon-binding Improves the degradation of PKMYT1, leveraging synthetic lethality for oncogenic alterations.
  • This innovation may enable new cancer therapy strategies, focusing on precise chemical probes for PKMYT1 biology.

Abstract

PKMYT1 has recently emerged as a compelling therapeutic target for precision cancer therapy due to its synthetic lethality with oncogenic alterations such as CCNE1 amplification and mutations in FBXW7 and PPP2R1A. Current small molecule PKMYT1 inhibitors face limitations, such as insufficient molecular diversity and poor selectivity. We herein use our generative AI platform to develop a bifunctional PKMYT1 degrader by linking an entirely novel PKMYT1 inhibitor to an optimized cereblon (CRBN) binder. The lead PROTAC D16-M1P2 demonstrates dual mechanisms of PKMYT1 degradation and inhibition, with strong antiproliferative potency facilitated by high selectivity. It also exhibits favorable oral bioavailability, stronger pharmacodynamic effects relative to the PKMYT1 inhibitor alone, and robust antitumor response as a monotherapy in xenograft models. This PROTAC serves as a precise chemical probe to explore PKMYT1 biology and a promising lead for further cancer therapy exploration.

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Cite This Study

Tingting Liu (2025) studied this question.

synapsesocial.com/papers/692e3d986c9b3ab28c187a17https://doi.org/10.1038/s41467-025-65796-8
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