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Published on: October 24, 2019
Androgen Receptor-Mediated Growth Suppression of HPr-1AR and PC3-Lenti-AR Prostate Epithelial Cells
Young-Chae Kim1, Congcong Chen1, Eric C Bolton1
1Department of Molecular and Integrative Physiology, University of Illinois at Urbana-Champaign, Urbana, Illinois, United States of America.
Abstract:
The androgen receptor (AR) mediates the developmental, physiologic, and pathologic effects of androgens including 5α-dihydrotestosterone (DHT). However, the mechanisms whereby AR regulates growth suppression and differentiation of luminal epithelial cells in the prostate gland and proliferation of malignant versions of these cells are not well understood, though they are central to prostate development, homeostasis, and neoplasia. Here, we identify androgen-responsive genes that restrain cell cycle progression and proliferation of human prostate epithelial cell lines (HPr-1AR and PC3-Lenti-AR), and we investigate the mechanisms through which AR regulates their expression. DHT inhibited proliferation of HPr-1AR and PC3-Lenti-AR, and cell cycle analysis revealed a prolonged G1 interval. In the cell cycle, the G1/S-phase transition is initiated by the activity of cyclin D and cyclin-dependent kinase (CDK) complexes, which relieve growth suppression. In HPr-1AR, cyclin D1/2 and CDK4/6 mRNAs were androgen-repressed, whereas CDK inhibitor, CDKN1A, mRNA was androgen-induced. The regulation of these transcripts was AR-dependent, and involved multiple mechanisms. Similar AR-mediated down-regulation of CDK4/6 mRNAs and up-regulation of CDKN1A mRNA occurred in PC3-Lenti-AR. Further, CDK4/6 overexpression suppressed DHT-inhibited cell cycle progression and proliferation of HPr-1AR and PC3-Lenti-AR, whereas CDKN1A overexpression induced cell cycle arrest. We therefore propose that AR-mediated growth suppression of HPr-1AR involves cyclin D1 mRNA decay, transcriptional repression of cyclin D2 and CDK4/6, and transcriptional activation of CDKN1A, which serve to decrease CDK4/6 activity. AR-mediated inhibition of PC3-Lenti-AR proliferation occurs through a similar mechanism, albeit without down-regulation of cyclin D. Our findings provide insight into AR-mediated regulation of prostate epithelial cell proliferation.
Insights
The androgen receptor (AR) controls prostate cell growth by regulating genes involved in the cell cycle. DHT inhibits proliferation by decreasing cell cycle promoters like cyclin D and increasing inhibitors like CDKN1A.
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- The androgen receptor (AR) is crucial for prostate gland development, homeostasis, and cancer.
- Understanding how AR regulates prostate epithelial cell proliferation is vital for prostate cancer research.
Purpose of the Study:
- To identify androgen-responsive genes that control cell cycle progression in prostate epithelial cells.
- To investigate the molecular mechanisms by which AR regulates these genes.
Main Methods:
- Utilized human prostate epithelial cell lines (HPr-1AR and PC3-Lenti-AR).
- Analyzed gene expression (mRNA levels) of cell cycle regulators (cyclins, CDKs, CDK inhibitors).
- Assessed the impact of gene manipulation (overexpression) on cell proliferation and cell cycle progression.
Main Results:
- DHT inhibited proliferation and prolonged the G1 phase of the cell cycle in both cell lines.
- AR-mediated DHT effects involved repression of cyclin D1/2 and CDK4/6 mRNAs and induction of CDKN1A mRNA.
- Overexpression of CDK4/6 counteracted DHT's inhibitory effects, while CDKN1A overexpression induced cell cycle arrest.
Conclusions:
- AR-mediated growth suppression in prostate cells involves regulating the expression of key cell cycle genes.
- Proposed mechanisms include cyclin D1 mRNA decay, transcriptional repression of cyclin D2/CDK4/6, and transcriptional activation of CDKN1A.
- These findings offer insights into AR's role in prostate epithelial cell proliferation and neoplasia.
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