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Updated: Aug 7, 2026

Prostate Organoid Cultures as Tools to Translate Genotypes and Mutational Profiles to Pharmacological Responses
Published on: October 24, 2019
Interactive effects of triiodothyronine and androgens on prostate cell growth and gene expression
1Department of Urology, Mayo Graduate School, Mayo Clinic/Foundation, Rochester, Minnesota 55905, USA.
Abstract:
T3 plays an important role in the regulation of cell growth and differentiation. In this study, we show the interactive effects of T3 and androgens on the growth response and expression of the prostate-specific genes, PSA (prostate-specific antigen) and hK2 (human glandular kallikrein), in the human prostate cancer cell line, LNCaP. T3 alone showed pronounced growth enhancement in a dose-dependent fashion. However, in the presence of androgens, higher concentrations of T3 were required to produce additional proliferative effects. T3, androgens, or a combination of the two up-regulated PSA protein production in a dose-dependent fashion, but T3 had little stimulatory effect on hK2 protein expression, regardless of the presence or absence of androgens. Using gene transfer assays, T3 alone showed no effect on transcriptional activation of a reporter gene mediated by the PSA or hK2 enhancer/promoters. T3 potentiated the androgen-mediated transcription of the PSA gene but not that of the hK2 gene. A previous study suggested that the T3 effect on PSA protein expression was caused by an up-regulation of the androgen receptor (AR) protein by T3. Our results contradict these. Although AR expression was increased by T3 alone, Western blot analysis showed that the total cellular AR level was not further increased by T3 in the presence of androgens, in comparison with cells stimulated by androgens alone. Both Western blot analysis and a gel DNA band shift assay revealed that nuclear AR was not increased by T3. This study suggests that transcription factor(s) other than the AR may mediate T3 enhancement of androgenic induction of PSA expression.
Insights
Thyroid hormone (T3) enhances prostate-specific antigen (PSA) production and growth in prostate cancer cells. However, T3
Area of Science:
- Endocrinology
- Molecular Biology
- Cancer Research
Background:
- Thyroid hormone (T3) is crucial for cell growth and differentiation.
- Prostate-specific genes like PSA and hK2 are key in prostate cancer.
- The interaction between T3 and androgens in prostate cancer is not fully understood.
Purpose of the Study:
- To investigate the combined effects of T3 and androgens on LNCaP cell growth.
- To analyze the impact of T3 and androgens on PSA and hK2 gene expression.
- To elucidate the mechanism by which T3 influences androgen-mediated gene regulation.
Main Methods:
- Cell culture of the LNCaP human prostate cancer cell line.
- Dose-response studies evaluating cell proliferation and protein expression (PSA, hK2).
- Gene transfer assays to assess transcriptional activation and Western blot analysis for androgen receptor (AR) levels.
Main Results:
- T3 significantly enhanced LNCaP cell growth in a dose-dependent manner.
- Both T3 and androgens upregulated PSA protein production; T3 had minimal effect on hK2.
- T3 potentiated androgen-induced PSA gene transcription but not hK2, independent of AR levels.
Conclusions:
- T3 enhances PSA expression and cell proliferation in prostate cancer cells.
- The mechanism of T3's effect on PSA is not mediated by increased androgen receptor levels.
- Other transcription factors likely mediate T3's enhancement of androgenic induction of PSA.
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