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Updated: Aug 28, 2025

Sequencing Small Non-coding RNA from Formalin-fixed Tissues and Serum-derived Exosomes from Castration-resistant Prostate Cancer Patients
Published on: November 19, 2019
AR Structural Variants and Prostate Cancer
1Sanofi, Research and Development, Cambridge, MA, USA. Laura.Cato@sanofi.com.
Abstract:
Therapeutic interventions for advanced castration-resistant prostate cancer (CRPC) are focused on inhibiting the androgen receptor (AR) through targeting of its C-terminal ligand binding domain (LBD). However, a significant subset of CRPC patients demonstrate primary resistance to androgen deprivation and anti-androgen therapies, suggesting that other targets, outside of the AR, might be pertinent to the cancer progression. One explanation is the expression of androgen receptor splice variants (AR-Vs). So far, more than 20 AR-Vs have been identified from both prostate cancer cell lines and prostate cancer tissue biopsies. Most of the AR-Vs have a conserved N-terminal domain, but lack the LBD, yet retain the ability to bind DNA and activate downstream signaling. Although it remains unclear whether AR-Vs are principal divers or mere bystanders of CRPC progression, inhibiting AR-Vs, through drugs that target the AR transactivation function outside of the LBD, has been a major emphasis for next generation therapeutics in prostate cancer. This book chapter is dedicated to the role of AR variants and their clinical importance. We will review the initial discovery of AR-Vs, their regulation and prevalence, as well as their biological function in prostate cancer. We will provide an overview of the role of AR-Vs in the development of metastatic CRPC and in promoting clinical treatment failures. Lastly, we will present an introduction to the therapeutic approaches towards developing AR-V-targeted therapies including the continuing progress, the old challenges, and the new prospects.
Insights
Androgen receptor splice variants (AR-Vs) drive resistance in advanced prostate cancer. Targeting AR-Vs offers a promising therapeutic strategy beyond traditional androgen deprivation therapies for improved patient outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Advanced prostate cancer treatments often target the androgen receptor (AR) ligand binding domain (LBD).
- A subset of patients show resistance to these therapies, indicating alternative mechanisms of cancer progression.
- Androgen receptor splice variants (AR-Vs) are implicated in this resistance, lacking the LBD but retaining DNA-binding and signaling capabilities.
Purpose of the Study:
- To review the discovery, regulation, prevalence, and biological function of AR-Vs in prostate cancer.
- To elucidate the role of AR-Vs in the development of metastatic castration-resistant prostate cancer (CRPC) and treatment failure.
- To introduce therapeutic strategies targeting AR-Vs for next-generation prostate cancer treatments.
Main Methods:
- Literature review of AR-V discovery and characterization.
- Analysis of AR-V prevalence in prostate cancer cell lines and tissues.
- Review of studies on AR-V biological functions and clinical significance.
Main Results:
- Over 20 AR-Vs have been identified, sharing conserved N-terminal domains but lacking the LBD.
- AR-Vs can activate downstream signaling pathways independently of full-length AR.
- AR-Vs are associated with metastatic CRPC and clinical treatment failures.
Conclusions:
- AR-Vs represent a critical mechanism of resistance in advanced prostate cancer.
- Targeting AR-V transactivation functions outside the LBD is a key focus for novel therapeutics.
- Developing effective AR-V-targeted therapies is crucial for overcoming treatment resistance and improving patient prognosis.
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