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Updated: Feb 24, 2026

A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
Allosteric alterations in the androgen receptor and activity in prostate cancer
Takuma Uo1, Stephen R Plymate2,3, Cynthia C Sprenger2
1Department of MedicineUniversity of Washington, Seattle, Washington, USA tuo@u.washington.edu.
Abstract:
Organisms have evolved to generate biological complexity in their proteome and transcriptome from a limited number of genes. This concept holds true for the androgen receptor, which displays a diversity of inclusion/exclusion events in its structural motifs as a mechanism of resistance to the most forefront anti-androgen therapies. More than 20 androgen receptor variants that lack various portions of ligand-binding domain have been identified in human prostate cancer (PCa) samples. Most of the variants are inactive on their own, with a few exceptions displaying constitutive activity. The full-length receptor and one or more variants can be co-expressed in the same cell under many circumstances, which raises the question of how these variants physically and functionally interact with the full-length receptor or one another in the course of PCa progression. To address this issue, in this review, we will characterize and discuss androgen receptor variants, including the novel variants discovered in the last couple of years (i) individually, (ii) with respect to their physical and functional interaction with one another and (iii) in clinical relevance. Here, we also introduce the very recent understanding of AR-Vs obtained through successful development of some AR-V-specific antibodies as well as identification of novel AR-Vs by data mining approaches.
Insights
Androgen receptor variants (AR-Vs) contribute to prostate cancer (PCa) treatment resistance. This review details AR-V characteristics, interactions, and clinical relevance, including new discoveries and antibodies.
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- Organisms achieve proteomic and transcriptomic complexity from limited genes.
- The androgen receptor (AR) exhibits diverse structural variations, contributing to resistance against anti-androgen therapies.
- Over 20 AR variants lacking parts of the ligand-binding domain are found in prostate cancer (PCa).
Purpose of the Study:
- To review and discuss androgen receptor variants (AR-Vs).
- To characterize AR-Vs individually, their interactions, and clinical relevance.
- To highlight recent discoveries and understanding of AR-Vs.
Main Methods:
- Literature review and data mining.
- Characterization of AR variants.
- Discussion of AR-V interactions and clinical significance.
Main Results:
- AR variants arise from inclusion/exclusion events in structural motifs.
- Most AR variants are inactive, but some show constitutive activity.
- Co-expression of full-length AR and AR-Vs raises questions about their interactions.
Conclusions:
- Understanding AR-Vs is crucial for advancing PCa treatment.
- Novel AR-Vs and AR-V-specific antibodies are improving our knowledge.
- AR-V interactions and clinical relevance are key areas for future research.
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