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Androgen receptor protein is down-regulated by basic fibroblast growth factor in prostate cancer cells
M V Cronauer1, C Nessler-Menardi, H Klocker
1Department of Urology, University of Innsbruck, Austria.
Abstract:
Interactions between polypeptide growth factors and the androgen receptor (AR) are important for regulation of cellular events in carcinoma of the prostate. Basic fibroblast growth factor (bFGF), the prototype of heparin-binding growth factors, and the AR are commonly expressed in prostate cancer. bFGF diminished prostate-specific antigen protein in the supernatants of androgen-stimulated human prostate cancer cells LNCaP by 80%. In the present study, we asked whether the bFGF effect on prostate-specific antigen is preceded by action on AR expression. LNCaP cells were treated with bFGF and AR protein expression was determined by immunoblotting and ligand binding assay. bFGF down-regulated AR protein in a dose-dependent manner showing a maximal effect at 50 ng ml(-1) both in the presence or absence of dihydrotestosterone. Down-regulation of AR protein expression occurred already after 8 h of bFGF treatment and a maximal inhibition was observed 24 h after addition of bFGF to culture media. As AR expression can be reduced by an increase in intracellular calcium levels, we investigated whether the bFGF effect on AR protein is mediated by this mechanism. Calcium release from intracellular stores and store-operated calcium influx after treatment with either bFGF or calcium ionophore A 23187 were measured by single cell fluorescence technique. The ionophore A 23187 was able to induce calcium influx and an increase in cytoplasmic calcium concentration in LNCaP cells. In contrast, bFGF was incapable of eliciting a similar effect. In contrast to AR protein, AR mRNA levels were not affected by bFGF as shown by semiquantitative reverse transcription polymerase chain reaction. In summary, these studies show that bFGF is a potent negative regulator of AR protein expression in the human prostate cancer cell line LNCaP.
Insights
Basic fibroblast growth factor (bFGF) reduces androgen receptor (AR) protein levels in prostate cancer cells. This bFGF-mediated downregulation of AR protein, but not AR mRNA, suggests a novel regulatory mechanism in prostate cancer progression.
Area of Science:
- Cell Biology
- Molecular Oncology
- Cancer Research
Background:
- Androgen receptor (AR) signaling is crucial in prostate cancer development and progression.
- Polypeptide growth factors interact with AR, influencing cellular events in prostate carcinoma.
- Basic fibroblast growth factor (bFGF) and AR are frequently detected in prostate cancer tissues.
Purpose of the Study:
- To investigate the effect of bFGF on AR expression in prostate cancer cells.
- To determine if bFGF-induced changes in prostate-specific antigen (PSA) are mediated by alterations in AR expression.
- To explore the potential role of intracellular calcium in mediating bFGF's effect on AR.
Main Methods:
- Human prostate cancer LNCaP cells were treated with bFGF.
- AR protein levels were assessed using immunoblotting and ligand binding assays.
- AR mRNA levels were analyzed via semiquantitative reverse transcription polymerase chain reaction.
- Intracellular calcium levels were measured using single-cell fluorescence techniques.
Main Results:
- bFGF significantly down-regulated AR protein expression in a dose- and time-dependent manner.
- The maximal effect of bFGF on AR protein was observed at 50 ng/ml after 24 hours.
- bFGF did not alter AR mRNA levels, indicating post-transcriptional regulation.
- bFGF did not induce intracellular calcium release or influx, suggesting calcium is not the mediating mechanism.
Conclusions:
- bFGF acts as a potent negative regulator of AR protein expression in LNCaP cells.
- The bFGF-mediated decrease in AR protein occurs independently of changes in AR mRNA levels.
- These findings reveal a novel mechanism by which bFGF influences AR signaling in prostate cancer.