Androgen receptor splice variants and prostate cancer: From bench to bedside
Kristine M Wadosky1, Shahriar Koochekpour1,2
1Department of Cancer Genetics, Center for Genetics and Pharmacology, Roswell Park Cancer Institute, Buffalo, NY, USA.
Abstract:
Therapeutic interventions for advanced prostate cancer (PCa) center on inhibiting androgen receptor (AR) and downstream signaling pathways. Resistance to androgen deprivation therapy and/or AR antagonists is inevitable and molecular mechanisms driving castration-resistant PCa (CR-PCa) primarily involve alterations in AR expression and activity. Detailed molecular biology work over the past decade, discussed at length in this review article, has revealed several AR transcripts that result from alternative splicing. These AR splice variants are increased in cell and mouse models of CR-PCa and in CR-PCa tumors. Several AR variants lack the ligand binding domain, but retain their ability to bind DNA and activate transcription-linking constitutive AR function and therapeutic failure. ARV7 is the only variant endogenously detected at the protein level and thus has undergone more thorough molecular characterization. Clinical trials in PCa are currently investigating ARV7 utility as a biomarker and new therapeutics that inhibit ARV7 . Overall, this review will illustrate the historical perspectives of AR splice variant discovery using fundamental molecular biology techniques and how it changed the clinical approach to both therapeutic decisions and strategy. The body of work investigating AR splice variants in PCa represents a true example of translational research from bench to bedside.
Insights
Androgen receptor (AR) splice variants drive resistance to prostate cancer (PCa) therapies. Understanding these variants, like AR-V7, is key to developing new treatments for castration-resistant PCa (CR-PCa).
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Advanced prostate cancer (PCa) treatments target the androgen receptor (AR).
- Resistance to therapy, leading to castration-resistant PCa (CR-PCa), is driven by AR alterations.
- Alternative splicing of AR transcripts produces splice variants that promote CR-PCa.
Purpose of the Study:
- To review the discovery and impact of AR splice variants in prostate cancer.
- To highlight the role of AR variants in therapeutic resistance.
- To discuss the clinical implications of AR splice variants as biomarkers and therapeutic targets.
Main Methods:
- Review of molecular biology studies on AR splice variants.
- Analysis of AR variant expression in CR-PCa models and patient tumors.
- Discussion of clinical trial data for ARV7 as a biomarker and therapeutic target.
Main Results:
- Several AR splice variants are increased in CR-PCa.
- Some variants lack the ligand-binding domain but retain transcriptional activity.
- AR-V7 is the only variant detected endogenously at the protein level and is a focus for clinical research.
Conclusions:
- AR splice variants are crucial in the development of CR-PCa and therapeutic failure.
- AR-V7 shows promise as a biomarker for treatment selection.
- Research into AR splice variants exemplifies successful translational research from the lab to the clinic.
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