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Updated: Jan 5, 2026

A Simple and Inexpensive Method for Determining Cold Sensitivity and Adaptation in Mice
Published on: March 17, 2015
Pharmacological inhibition of TRPM8-induced gene transcription
Gerald Thiel1, Tobias M Backes1, Jennifer Welck1
1Department of Medical Biochemistry and Molecular Biology, D-66421 Homburg, Germany.
Abstract:
Transient receptor potential melastatin-8 (TRPM8) channels are activated by cold temperature, menthol and icilin, leading to cold sensation. TRPM8 activation is connected with various diseases, indicating that a specific pharmacological antagonist, allowing nongenetic channel suppression, would be a valuable tool for therapy and basic research. Here, we assessed the biological activity and specificity of various TRPM8 inhibitors following stimulation of TRPM8 channels with either icilin or menthol. Recently, we showed that icilin strikingly upregulates the transcriptional activity of AP-1. By measuring AP-1 activity, we assessed which compound interrupted the TRPM8-induced intracellular signaling cascade from the plasma membrane to the nucleus. We tested the specificity of various TRPM8 inhibitors by analyzing AP-1 activation following stimulation of TRPM3 and TRPV1 channels, L-type voltage-gated Ca2+ channels, and Gαq-coupled receptors, either in the presence or absence of a particular TRPM8 inhibitor. The results show that the TRPM8 inhibitors BCTC, RQ-00203078, TC-1 2014, 2-APB, and clotrimazole blocked TRPM8-mediated activation of AP-1. However, only the compound RQ-00203078 showed TRPM8-specificity, while the other compounds function as broad-spectrum Ca2+ channel inhibitors. In addition, we show that progesterone interfered with TRPM8-induced activation of AP-1, as previously shown for TRPM3 and TRPC6 channels. TRPM8-induced transcriptional activation of AP-1 was additionally blocked by the compound PD98059, indicating that extracellular signal-regulated protein kinase-1/2 is essential to couple TRPM8 stimulation with transcriptional activation of AP-1. Moreover, an influx of Ca2+-ions is essential to induce the intracellular signaling cascade leading to the activation of AP-1.
Insights
Researchers identified specific TRPM8 inhibitors for blocking cold sensation pathways. Only RQ-00203078 demonstrated TRPM8 specificity, unlike other broad-spectrum calcium channel inhibitors, offering a precise tool for research and therapy.
Area of Science:
- Pharmacology
- Molecular Biology
- Neuroscience
Background:
- Transient receptor potential melastatin-8 (TRPM8) channels are key mediators of cold sensation and are implicated in various diseases.
- Targeting TRPM8 with specific antagonists is crucial for therapeutic development and basic research into channel function.
Purpose of the Study:
- To evaluate the biological activity and specificity of novel TRPM8 inhibitors.
- To identify compounds that selectively suppress TRPM8-mediated signaling pathways.
Main Methods:
- Assessed AP-1 transcriptional activity as a readout for TRPM8 channel activation by icilin or menthol.
- Tested inhibitor specificity against TRPM3, TRPV1 channels, L-type voltage-gated Ca2+ channels, and Gαq-coupled receptors.
- Investigated the role of extracellular signal-regulated protein kinase-1/2 (ERK1/2) and calcium influx in TRPM8 signaling.
Main Results:
- Five TRPM8 inhibitors (BCTC, RQ-00203078, TC-1 2014, 2-APB, clotrimazole) blocked TRPM8-mediated AP-1 activation.
- Only RQ-00203078 exhibited TRPM8 specificity; others acted as broad-spectrum Ca2+ channel inhibitors.
- Progesterone also interfered with TRPM8-induced AP-1 activation.
- PD98059 blocked TRPM8-induced AP-1 activation, highlighting ERK1/2's essential role.
- Calcium ion influx is critical for TRPM8-induced AP-1 activation.
Conclusions:
- RQ-00203078 is a highly specific TRPM8 inhibitor, valuable for research and potential therapeutic applications.
- Other tested inhibitors lack TRPM8 specificity, acting broadly on calcium channels.
- TRPM8 signaling to AP-1 activation involves calcium influx and the ERK1/2 pathway.
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