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Updated: Mar 9, 2026

Phosphopeptide Enrichment Coupled with Label-free Quantitative Mass Spectrometry to Investigate the Phosphoproteome in Prostate Cancer
Published on: August 2, 2018
High-throughput proteome analysis reveals targeted TRPM8 degradation in prostate cancer
Swapna Asuthkar1, Lusine Demirkhanyan1, Samuel Robert Mueting1
1University of Illinois College of Medicine, Department of Cancer Biology and Pharmacology, Peoria, IL 61605, USA.
Abstract:
The Ca2+-permeable ion channel TRPM8 is a hallmark of the prostate epithelium. We recently discovered that TRPM8 is an ionotropic testosterone receptor. This finding suggested that testosterone-induced TRPM8 activity regulates Ca2+ homeostasis in the prostate epithelium. Since androgens are significantly implicated in prostate cancer development, the role of the novel testosterone receptor TRPM8 in cancer was assessed in our study. Although TRPM8 mRNA levels increase at the early prostate cancer stages, we found that it is not proportionally translated into TRPM8 protein levels. High-throughput proteome analysis revealed that TRPM8 degradation is enhanced in human prostate cancer cells. This degradation is executed via a dual degradation mechanism with the involvement of both lysosomal and proteasomal proteolytic pathways. The evaluation of the TRPM8 expression pattern in prostate cancer patients further confirmed the incidence of TRPM8 removal from the plasma membrane and its internalization pattern coincided with the severity of the tumor. Together, our results indicate that enhanced TRPM8 hydrolysis in prostate cancer could present an adaptation mechanism, sustained via bypassing testosterone-induced rapid Ca2+ uptake through TRPM8, thus, diminishing the rates of apoptosis. In this light, recovery of TRPM8 may pose a novel therapeutic strategy for an anti-tumor defense mechanism.
Insights
The transient receptor potential melastatin 8 (TRPM8) channel, a testosterone receptor, is degraded in prostate cancer cells. This degradation may promote cancer progression by altering calcium homeostasis, suggesting TRPM8 recovery as a therapeutic strategy.
Area of Science:
- Molecular Biology
- Oncology
- Ion Channel Physiology
Background:
- The Ca2+-permeable ion channel TRPM8 is crucial in prostate epithelium.
- TRPM8 functions as an ionotropic testosterone receptor, regulating Ca2+ homeostasis.
- Androgens are implicated in prostate cancer development, highlighting TRPM8's potential role.
Purpose of the Study:
- To investigate the role of the novel testosterone receptor TRPM8 in prostate cancer.
- To assess TRPM8 expression, translation, and degradation in prostate cancer cells and patients.
Main Methods:
- Analysis of TRPM8 mRNA and protein levels in early prostate cancer stages.
- High-throughput proteome analysis to identify TRPM8 degradation mechanisms.
- Evaluation of TRPM8 expression patterns in prostate cancer patient samples.
Main Results:
- TRPM8 mRNA levels increase in early prostate cancer, but protein levels do not proportionally increase.
- Enhanced TRPM8 degradation occurs in human prostate cancer cells via lysosomal and proteasomal pathways.
- TRPM8 removal from the plasma membrane and internalization correlate with tumor severity.
Conclusions:
- Enhanced TRPM8 degradation in prostate cancer may be an adaptation to bypass testosterone-induced Ca2+ uptake, reducing apoptosis.
- TRPM8 downregulation facilitates prostate cancer progression.
- Restoring TRPM8 function could represent a novel therapeutic strategy against prostate tumors.

