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Updated: Jun 28, 2026

An Orthotopic Murine Model of Human Prostate Cancer Metastasis
Published on: September 18, 2013
Profiling human androgen receptor mutations reveals treatment effects in a mouse model of prostate cancer
Orla A O'Mahony1, Mara P Steinkamp, Megan A Albertelli
1Department of Human Genetics, University of Michigan Medical School, Ann Arbor, Michigan 48109-5618, USA.
Abstract:
Gain-of-function mutations in the androgen receptor (AR) are found in prostate cancer and are implicated in the failure of hormone therapy. Most studies have emphasized the ligand-binding domain (LBD) where mutations can create promiscuous receptors, but mutations in the NH(2)-terminal transactivation domain have also been found. To assess AR alteration as a mechanism of treatment resistance, a mouse model (h/mAR-TRAMP) was used in which the murine AR coding region is replaced by human sequence and prostate cancer initiated by a transgenic oncogene. Mice received either no treatment, androgen depletion by castration, or treatment with antiandrogens, and 20 AR transcripts were sequenced per end-stage tumor. All tumors expressed several mutant alleles, although most mutations were low frequency. Some mutations that occurred multiple times within the population were differentially located dependent on treatment. Mutations in castrated or antiandrogen-treated mice were widely dispersed but with a prominent cluster in the LBD (amino acids 736-771), whereas changes in intact mice centered near the NH(2)-terminal polymorphic glutamine tract. Functional characterization of selected LBD mutant alleles showed diverse effects on AR activity, with about half of the mutations reducing transactivation in vitro. One receptor, AR-R753Q, behaved in a cell- and promoter-dependent manner, although as a germ-line mutation it causes androgen insensitivity syndrome. This suggests that alleles that are loss of function during development may still activate a subset of AR targets to become gain of function in tumorigenesis. Mutant ARs may thus use multiple mechanisms to evade cancer treatment.
Insights
Gain-of-function mutations in the androgen receptor (AR) drive prostate cancer and treatment failure. These AR alterations, particularly in the ligand-binding domain, can lead to diverse effects and treatment evasion.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Gain-of-function mutations in the androgen receptor (AR) are linked to prostate cancer progression and resistance to hormone therapy.
- While ligand-binding domain (LBD) mutations are well-studied, alterations in the NH(2)-terminal transactivation domain also contribute to AR function.
Purpose of the Study:
- To investigate androgen receptor (AR) alterations as a mechanism of treatment resistance in prostate cancer.
- To analyze the impact of different therapeutic interventions on AR mutation profiles.
Main Methods:
- Utilized a human/murine AR (h/mAR-TRAMP) mouse model for prostate cancer initiation.
- Administered treatments including no treatment, castration (androgen depletion), and antiandrogen therapy.
- Sequenced 20 AR transcripts per end-stage tumor to identify mutations.
Main Results:
- All tumors exhibited multiple AR mutant alleles, with varying frequencies.
- Mutations clustered in the LBD (amino acids 736-771) in treated mice (castration/antiandrogen) and near the NH(2)-terminal glutamine tract in untreated mice.
- Functional analysis revealed diverse effects of LBD mutations on AR activity, with some showing reduced transactivation in vitro.
Conclusions:
- Mutant ARs employ multiple strategies to evade cancer therapy.
- Alleles with loss-of-function during development may gain function in tumorigenesis, contributing to treatment resistance.
- AR alterations are a significant mechanism underlying treatment failure in prostate cancer.

