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Updated: Jun 27, 2026

A Rapid Filter Insert-based 3D Culture System for Primary Prostate Cell Differentiation
Published on: February 13, 2017
Cyclin D1 repressor domain mediates proliferation and survival in prostate cancer
M J Schiewer1, L M Morey, C J Burd
1Department of Cancer Biology, Thomas Jefferson University, Philadelphia, PA 19107, USA.
Abstract:
Regulation of the androgen receptor (AR) is critical to prostate cancer (PCa) development; therefore, AR is the first line therapeutic target for disseminated tumors. Cell cycle-dependent accumulation of cyclin D1 negatively modulates the transcriptional regulation of AR through discrete, CDK4-independent mechanisms. The transcriptional corepressor function of cyclin D1 resides within a defined motif termed repressor domain (RD), and it was hypothesized that this motif could be utilized as a platform to develop new strategies for blocking AR function. Here, we demonstrate that expression of the RD peptide is sufficient to disrupt AR transcriptional activation of multiple, prostate-specific AR target genes. Importantly, these actions are sufficient to specifically inhibit S-phase progression in AR-positive PCa cells, but not in AR-negative cells or tested AR-positive cells of other lineages. As expected, impaired cell cycle progression resulted in a suppression of cell doubling. Additionally, cell death was observed in AR-positive cells that maintain androgen dependence and in a subset of castrate-resistant PCa cells, dependent on Akt activation status. Lastly, the ability of RD to cooperate with existing hormone therapies was examined, which revealed that RD enhanced the cellular response to an AR antagonist. Together, these data demonstrate that RD is sufficient to disrupt AR-dependent transcriptional and proliferative responses in PCa, and can enhance efficacy of AR antagonists, thus establishing the impetus for development of RD-based mimetics.
Insights
A novel peptide derived from cyclin D1, the repressor domain (RD), effectively blocks androgen receptor (AR) activity in prostate cancer (PCa) cells. This disruption inhibits cancer cell proliferation and enhances the efficacy of AR-targeted therapies.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Androgen receptor (AR) signaling is crucial for prostate cancer (PCa) progression and is a primary therapeutic target.
- Cyclin D1 negatively regulates AR transcriptional activity through CDK4-independent mechanisms.
Purpose of the Study:
- To investigate the potential of the cyclin D1 repressor domain (RD) as a therapeutic strategy to inhibit AR function in PCa.
- To evaluate the effects of RD peptide expression on AR-dependent gene transcription, cell cycle progression, and cell viability in PCa cells.
Main Methods:
- Expression of the RD peptide in AR-positive and AR-negative PCa cell lines.
- Assessment of AR transcriptional activity on prostate-specific target genes.
- Analysis of cell cycle progression (S-phase) and cell doubling rates.
- Evaluation of cell death induction and synergy with AR antagonists.
Main Results:
- RD peptide expression successfully disrupted AR transcriptional activation of multiple PCa-specific genes.
- RD specifically inhibited S-phase progression and suppressed cell doubling in AR-positive PCa cells.
- RD induced cell death in androgen-dependent and a subset of castrate-resistant PCa cells.
- RD enhanced the cellular response to an AR antagonist, indicating therapeutic synergy.
Conclusions:
- The RD peptide is sufficient to disrupt AR-dependent transcription and proliferation in PCa.
- RD-based strategies hold promise for novel PCa therapeutics and can enhance existing hormone therapies.
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