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Sequencing Small Non-coding RNA from Formalin-fixed Tissues and Serum-derived Exosomes from Castration-resistant Prostate Cancer Patients
Published on: November 19, 2019
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.
Abstract:
Androgen receptor (AR) plays a vital role in the development and progression of prostate cancer from the primary stage to the usually lethal stage known as castration-resistant prostate cancer (CRPC). Constitutively active AR splice variants (AR-Vs) lacking the ligand-binding domain are partially responsible for the abnormal activation of AR and may be involved in resistance to AR-targeting drugs occurring in CRPC. There is increasing consensus on the potential of drugs targeting protein-protein interactions. Our lab has recently identified transmembrane 4 superfamily 3 (TM4SF3) as a critical interacting partner for AR and AR-V7 and mapped the minimal interaction regions. Thus, we hypothesized that these interaction domains can be used to design peptides that can disrupt the AR/TM4SF3 interaction and kill prostate cancer cells. Peptides TA1 and AT1 were designed based on the TM3SF3 or AR interaction domain, respectively. TA1 or AT1 was able to decrease AR/TM4SF3 protein interaction and protein stability. Peptide TA1 reduced the recruitment of AR and TM4SF3 to promoters of androgen-regulated genes and subsequent activation of these AR target genes. Peptides TA1 and AT1 were strongly cytotoxic to prostate cancer cells that express AR and/or AR-V7. Peptide TA1 inhibited the growth and induced apoptosis of both enzalutamide-sensitive and importantly enzalutamide-resistant prostate cancer cells. TA1 also blocked the migration and malignant transformation of prostate cancer cells. Our data clearly demonstrate that using peptides to target the important interaction AR has with TM4SF3 provides a novel method to kill enzalutamide-resistant prostate cancer cells that can potentially lead to new more effective therapy for CRPC.
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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