Peptides disrupting TM4SF3 interaction with AR or AR-V7 block prostate cancer cell proliferation

Prabesh Khatiwada1,2, Ujjwal Rimal1, Mamata Malla1

  • 1Department of Biological Sciences, University of Toledo, Toledo, Ohio, USA.

Insights

Novel peptides targeting the androgen receptor (AR) and transmembrane 4 superfamily 3 (TM4SF3) interaction show promise for killing prostate cancer cells, including enzalutamide-resistant castration-resistant prostate cancer (CRPC).

Area of Science:

  • Oncology
  • Molecular Biology
  • Drug Discovery

Background:

  • Androgen receptor (AR) signaling drives prostate cancer progression to castration-resistant prostate cancer (CRPC).
  • AR splice variants (AR-Vs) contribute to abnormal AR activation and drug resistance in CRPC.
  • Targeting protein-protein interactions is a promising therapeutic strategy.

Purpose of the Study:

  • To investigate the potential of disrupting the AR/TM4SF3 interaction using designed peptides.
  • To evaluate the efficacy of these peptides in killing prostate cancer cells, including resistant forms.

Main Methods:

  • Identification of AR and AR-V7 interaction with TM4SF3 and mapping of minimal interaction regions.
  • Design and synthesis of peptides (TA1, AT1) targeting these interaction domains.
  • Assessment of peptide effects on AR/TM4SF3 interaction, gene regulation, cell viability, apoptosis, migration, and transformation.

Main Results:

  • Peptides TA1 and AT1 reduced AR/TM4SF3 protein interaction and stability.
  • TA1 inhibited AR/TM4SF3 recruitment to gene promoters and downregulated AR target genes.
  • Both peptides exhibited cytotoxicity against AR- and AR-V7-expressing prostate cancer cells, with TA1 showing efficacy in enzalutamide-resistant models.
  • TA1 also inhibited cell migration and malignant transformation.

Conclusions:

  • Targeting the AR/TM4SF3 interaction with peptides offers a novel therapeutic approach for prostate cancer.
  • Peptide TA1 demonstrates significant potential for treating enzalutamide-resistant CRPC, suggesting a new therapeutic avenue.

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