Systematic Optimization of Proteolysis-Targeting Chimeras for PIN1 Enables Selective Degradation and Antitumor

Yuying Ma1, Yang Teng1, Jinjin Liu1,2

  • 1College of Pharmacy, Chongqing Medical University, Chongqing 400016, China.

Pharmaceutics
|March 28, 2026
PubMed

Insights

Researchers developed novel PROTACs targeting PIN1 (peptidyl-prolyl cis-trans isomerase) for cancer therapy. The lead compound, PC2, effectively degraded PIN1 in vivo, showing significant tumor suppression with no observed toxicity, validating targeted PIN1 degradation as a cancer strategy.

Area of Science:

  • Oncology
  • Molecular Biology
  • Drug Discovery

Background:

  • Peptidyl-prolyl cis-trans isomerase PIN1 is crucial in cancer pathways and often overexpressed.
  • Existing PIN1 inhibitors show promise, but PIN1 degraders lack detailed SAR and consistent efficacy.
  • The therapeutic value of PIN1 degradation remains uncertain due to these limitations.

Purpose of the Study:

  • To systematically analyze structure-activity relationships (SAR) of PIN1-targeting PROTACs.
  • To identify potent and selective PIN1 degraders with enhanced cellular efficacy.
  • To evaluate the in vivo antitumor activity and safety of lead PIN1 degraders.

Main Methods:

  • Designed two series of PIN1-targeting PROTACs using sulfopin and CRBN/VHL ligands.
  • Conducted systematic SAR studies focusing on linker characteristics.
  • Assessed PIN1 degradation via Western blotting and mechanistic studies.
  • Evaluated in vivo efficacy and safety in an MCF-7 xenograft mouse model.

Main Results:

  • Short, linear linkers and reduced hydrogen bond donors improved PIN1 degradation.
  • VHL-recruiting PROTACs exhibited lower cellular activity compared to CRBN-recruiting ones.
  • PC2, a CRBN-recruiting PROTAC, selectively induced PIN1 degradation via the ubiquitin-proteasome system.
  • PC2 demonstrated significant in vivo tumor suppression without toxicity and achieved intratumoral PIN1 degradation.

Conclusions:

  • Established SAR-guided design principles for PIN1-targeting PROTACs.
  • Demonstrated that selective PIN1 degradation can yield substantial in vivo antitumor effects.
  • PC2 is the first PIN1 degrader validated in animal models, supporting PIN1 degradation as a viable anticancer strategy.