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Updated: Jul 26, 2026

Murine Prostate Micro-dissection and Surgical Castration
Published on: May 11, 2016
Functional characterization of mutant androgen receptors from androgen-independent prostate cancer
M A Fenton1, T D Shuster, A M Fertig
1Cancer Biology Program, Division of Hematology/Oncology, Department of Medicine, Beth Israel Hospital Deaconess Medical Center and Harvard Medical School, Boston, Massachusetts 02215, USA.
Abstract:
Mutations in the androgen receptor (AR), that alter steroid hormone specificity have been identified in a series of androgen-independent prostate cancers. To address the functional properties of these mutant ARs that may have contributed to their selection in vivo, responses to a series of steroid hormones and antiandrogens were assessed. CV-1 cells were cotransfected with wild-type or mutant ARs and a luciferase reporter plasmid regulated by an androgen-responsive element. Dose-response curves were analyzed for 5alpha-dihydrotestosterone, the most active androgen in normal prostate, and androstenedione, a major androgen derived from the adrenals. Although the mutant ARs responded to both of these steroids, the responses were equivalent to or less than the wild-type AR. In contrast, responses to flutamide, a competitive antagonist of the wild-type AR, were markedly increased by three of the mutations. Similar responses were observed with a second antiandrogen, nilutamide. Bicalutamide, another antiandrogen related to flutamide, remained an antagonist for these mutant ARs. Finally, flutamide was observed to be a weak partial agonist of the wild-type AR in this system. These results indicate that flutamide used in conjunction with androgen ablation therapy for prostate cancer may select for tumor cells with flutamide-inducible ARs.
Insights
Mutations in the androgen receptor (AR) can lead to prostate cancer treatment resistance. Some AR mutations may promote tumor growth when treated with anti-androgens like flutamide.
Area of Science:
- Oncology
- Molecular Biology
- Endocrinology
Background:
- Androgen receptor (AR) mutations are found in advanced prostate cancers.
- These mutations can alter hormone specificity and contribute to treatment resistance.
Purpose of the Study:
- To investigate the functional impact of AR mutations on steroid hormone and anti-androgen responses.
- To understand how these mutations may be selected for in vivo during cancer progression.
Main Methods:
- CV-1 cells were co-transfected with wild-type or mutant ARs and an androgen-responsive luciferase reporter.
- Dose-response curves were analyzed for androgens (5alpha-dihydrotestosterone, androstenedione) and anti-androgens (flutamide, nilutamide, bicalutamide).
Main Results:
- Mutant ARs showed equivalent or reduced responses to androgens compared to wild-type AR.
- Three AR mutations significantly increased responses to flutamide and nilutamide, acting as agonists.
- Flutamide demonstrated weak partial agonist activity on wild-type AR.
Conclusions:
- Certain AR mutations can confer inducibility by anti-androgens like flutamide.
- Combined androgen ablation and flutamide therapy may inadvertently select for tumor cells with these specific AR mutations.
- This suggests a potential mechanism for acquired resistance in prostate cancer.
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08:36Prostate Organoid Cultures as Tools to Translate Genotypes and Mutational Profiles to Pharmacological Responses
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