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Updated: Jun 26, 2026

A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
Oncogenic activation of androgen receptor
Hsing-Jien Kung1, Christopher P Evans
1Department of Basic Sciences, University of California, Davis Cancer Center, Sacramento, CA 95817, USA. hkung@ucdavis.edu
Background:
There is considerable evidence implicating the aberrant activation or "reactivation" of androgen receptor in the course of androgen-ablation therapy as a potential cause for the development of castration-resistant prostate cancer. Several non-mutually exclusive mechanisms including the inappropriate activation of androgen receptor (AR) by non-steroids have been postulated. The present work is aimed to understand the role of neuropeptides released by neuroendocrine transdifferentiated prostate cancer cells in the aberrant activation of AR.
Objectives:
The study was designed to study how neuropeptides such as gastrin-releasing peptide activate AR and to define the crucial signal pathways involved, in the hope to identify therapeutic targets.
Methods And Materials:
Androgen-dependent LNCaP cell line was used to study the effects of bombesin/gastrin-releasing peptide on the growth of the cell line and the transactivation of AR. The neuropeptide was either added to the media or introduced as a transgene in LNCaP cells to study its paracrine or autocrine effect on LNCaP growth under androgen-deprived conditions. The activation of AR was monitored by reporter assay, chromatin immunoprecipitation (ChIP) of AR, translocation into the nucleus and cDNA microarray of the AR response genes.
Results:
Bombesin/gastrin releasing peptides induce androgen-independent growth of LNCaP in vitro and in vivo. It does so by activating AR, which is accompanied by the activation of Src tyrosine kinase and its target c-myc oncogene. The bombesin or Src-activated AR induces an overlapping set of AR response genes as androgen, but they also a unique set of genes. Intriguingly, the Src-activated and androgen-bound ARs differ in their binding specificity toward AR response elements, indicating the receptors activated by these 2 mechanisms are not conformationally identical. Finally, Src inhibitor was shown to effectively block the activation of AR and the growth effects induced by bombesin.
Conclusion:
The results showed that AR can be activated by neuropeptide, a ligand for G-protein coupled receptor, in the absence of androgen. The activation goes through Src-tyrosine kinase pathway, and tyrosine kinase inhibitor is a potentially useful adjunctive therapy during androgen ablation.
Insights
Neuropeptides like gastrin-releasing peptide can activate the androgen receptor (AR) independently of androgens, driving prostate cancer growth. Targeting the Src-tyrosine kinase pathway with inhibitors may offer a new therapeutic strategy for castration-resistant prostate cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- Aberrant androgen receptor (AR) activation is implicated in castration-resistant prostate cancer (CRPC).
- Neuropeptides from neuroendocrine transdifferentiated prostate cancer cells may contribute to AR reactivation.
- Understanding these mechanisms is crucial for developing novel CRPC therapies.
Purpose of the Study:
- To investigate how neuropeptides, specifically gastrin-releasing peptide (GRP), activate the AR.
- To define the signaling pathways involved in neuropeptide-mediated AR activation.
- To identify potential therapeutic targets for CRPC.
Main Methods:
- Utilized the androgen-dependent LNCaP cell line to assess GRP effects on cell growth and AR transactivation.
- Administered GRP via media or transgene to evaluate paracrine/autocrine effects under androgen deprivation.
- Monitored AR activation through reporter assays, ChIP, nuclear translocation, and cDNA microarray analysis of AR target genes.
Main Results:
- GRP induced androgen-independent growth of LNCaP cells in vitro and in vivo.
- GRP-mediated AR activation involved Src tyrosine kinase and c-myc oncogene.
- Src-activated AR regulated distinct gene sets compared to androgen-activated AR, with differing binding specificities.
- A Src inhibitor effectively blocked GRP-induced AR activation and cell growth.
Conclusions:
- AR can be activated by neuropeptides (ligands for G-protein coupled receptors) in an androgen-independent manner.
- This activation pathway involves Src-tyrosine kinase.
- Tyrosine kinase inhibitors represent a potential adjunctive therapy for androgen-ablation treatment in prostate cancer.
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