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Updated: Apr 12, 2026

MicroRNA Detection in Prostate Tumors by Quantitative Real-time PCR qPCR
Published on: May 16, 2012
TRPM8 channel as a novel molecular target in androgen-regulated prostate cancer cells
Swapna Asuthkar1, Kiran Kumar Velpula1, Pia A Elustondo2
1University of Illinois College of Medicine, Department of Cancer Biology and Pharmacology, Peoria, IL, USA.
Abstract:
The cold and menthol receptor TRPM8 is highly expressed in prostate and prostate cancer (PC). Recently, we identified that TRPM8 is as an ionotropic testosterone receptor. The TRPM8 mRNA is expressed in early prostate tumors with high androgen levels, while anti-androgen therapy greatly reduces its expression. Here, from the chromatin-immunoprecipitation (ChIP) analysis, we found that an androgen response element (ARE) mediates androgen regulation of trpm8. Furthermore, using immunofluorescence, calcium-imaging and planar lipid bilayers, we identified that TRPM8 channel is functionally regulated by androgens in the prostate. Although TRPM8 mRNA is expressed at high levels, we found that the TRPM8 protein undergoes ubiquitination and degradation in PC cells. The mass-spectrometry analysis of TRPM8, immunoprecipitated from LNCaP cells identified ubiquitin-like modifier-activating enzyme 1 (UBA1). PYR-41, a potent inhibitor of initial enzyme in the ubiquitination cascade, UBA1, increased TRPM8 activity on the plasma membrane (PM) of LNCaP cells. Furthermore, PYR-41-mediated PMTRPM8 activity was accompanied by enhanced activation of p53 and Caspase-9. Interestingly, we found that the trpm8 promoter possesses putative binding sites for p53 and that the overexpression of p53 increased the TRPM8 mRNA levels. In addition to the genomic regulation of TRPM8 by AR and p53, our findings indicate that the testosterone-induced PMTRPM8 activity elicits Ca2+ uptake, subsequently causing apoptotic cell death. These findings support the strategy of rescuing PMTRPM8 expression as a new therapeutic application through the regulation of PC cell growth and proliferation.
Insights
Testosterone regulates the TRPM8 channel in prostate cancer. Inhibiting its degradation increases TRPM8 activity, activating cell death pathways for potential new therapies.
Area of Science:
- Molecular biology
- Cell biology
- Oncology
Background:
- The TRPM8 channel is highly expressed in prostate and prostate cancer (PC).
- TRPM8 functions as an ionotropic testosterone receptor, with its mRNA levels correlating with androgen levels in tumors.
- Androgen deprivation therapy significantly reduces TRPM8 expression.
Purpose of the Study:
- To investigate the androgen regulation of TRPM8 in prostate cancer.
- To explore the mechanisms of TRPM8 protein degradation in PC cells.
- To evaluate the therapeutic potential of modulating TRPM8 activity.
Main Methods:
- Chromatin-immunoprecipitation (ChIP) to identify androgen response elements (AREs) in the TRPM8 gene.
- Immunofluorescence, calcium imaging, and planar lipid bilayer assays to study TRPM8 channel function.
- Mass spectrometry to identify proteins interacting with TRPM8.
- Inhibition of the ubiquitination cascade using PYR-41.
Main Results:
- Androgen regulation of TRPM8 is mediated by an ARE.
- TRPM8 protein undergoes ubiquitination and degradation in PC cells, with UBA1 identified as a key enzyme.
- Inhibition of UBA1 by PYR-41 enhances TRPM8 activity on the plasma membrane, activating p53 and Caspase-9.
- p53 binds to the TRPM8 promoter, and its overexpression increases TRPM8 mRNA levels.
- Testosterone-induced TRPM8 activity leads to Ca2+ uptake and apoptotic cell death.
Conclusions:
- TRPM8 is regulated by both androgens and p53 at the genomic level.
- Testosterone-induced TRPM8 channel activity promotes apoptosis in prostate cancer cells.
- Rescuing plasma membrane TRPM8 expression is a potential therapeutic strategy for managing prostate cancer growth and proliferation.
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