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.

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.