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Published on: December 31, 2013
Cloning and pharmacological characterization of mouse TRPV1
Craig C Correll1, P Tara Phelps, John C Anthes
1Department of Neurobiology, Schering-Plough Research Institute, 2015 Galloping Hill Road, K15-1-1600 Kenilworth, NJ 07033, USA. craig.correll@spcorp.com
Abstract:
The Transient Receptor Potential cation channel V1 (TRPV1) is expressed in peripheral nociceptive neurons and is subject to polymodal activation via various agents including capsaicin, noxious heat, low extracellular pH, and direct phosphorylation by protein kinase C (PKC). We have cloned and heterologously expressed mouse TRPV1 (mTRPV1) and characterized its function utilizing FLIPR-based calcium imaging to measure functional responses to various small molecule agonists, low pH and direct phosphorylation via PKC. The various TRPV1 agonists activated mTRPV1 with a rank order of agonist potency of (resiniferatoxin (RTX) = arvanil > capsaicin = olvanil > OLDA > PPAHV) (EC50 values of 0.15+/-0.04 nM, 0.27+/-0.07 nM, 9.1+/-1.2 nM, 3.7+/-0.3 nM, 258+/-105 nM, and 667+/-151 nM, respectively). Additionally, mTRPV1 was activated by either low pH or with addition of the PKC activator phorbol 12-myristate 13-acetate (PMA). The TRPV1 antagonists iodinated-resiniferatoxin (I-RTX) or BCTC were both able to block capsaicin, pH and PKC-induced responses of mTRPV1 (IC50 (I-RTX) = 0.35+/-0.12 nM, 1.9+/-0.7 nM, and 0.80+/-0.68 nM, IC50 (BCTC) = 1.3+/-0.36 nM, 0.59+/-0.16 nM, and 0.37+/-0.15 nM, respectively). However, the antagonist capsazepine was only able to inhibit a capsaicin-evoked response of mTRPV1 with an IC50 of 1426+/-316 nM. Comparable results were achieved with rat TRPV1, while capsazepine blocked all modes of human TRPV1 activation. Thus, the mTRPV1 cation channel has a molecular pharmacological profile more akin to rat TRPV1 than either human or guinea pig TRPV1 and the molecular pharmacology suggests that capsazepine may be an ineffective TRPV1 antagonist for in vivo models of inflammatory pain in the mouse.
Insights
Mouse TRPV1 (Transient Receptor Potential cation channel V1) channels are activated by capsaicin, low pH, and PKC. Capsazepine is an ineffective antagonist for mouse TRPV1, unlike in humans, suggesting it may not work for mouse pain models.
Area of Science:
- Neuroscience
- Molecular Biology
- Pharmacology
Background:
- Transient Receptor Potential cation channel V1 (TRPV1) is crucial in peripheral nociceptive neurons.
- TRPV1 is activated by diverse stimuli including capsaicin, heat, low pH, and protein kinase C (PKC) phosphorylation.
- Understanding TRPV1 pharmacology is key for pain management research.
Purpose of the Study:
- To clone and functionally characterize mouse TRPV1 (mTRPV1).
- To determine the agonist potency and antagonist activity at mTRPV1.
- To compare the pharmacological profile of mTRPV1 with other species.
Main Methods:
- Heterologous expression of mTRPV1.
- FLIPR-based calcium imaging to measure functional responses.
- Testing various TRPV1 agonists, low pH, and PKC activators (PMA).
- Assessing antagonist activity of iodinated-resiniferatoxin (I-RTX), BCTC, and capsazepine.
Main Results:
- Agonist potency rank order for mTRPV1: RTX = arvanil > capsaicin = olvanil > OLDA > PPAHV.
- mTRPV1 activation observed with low pH and PMA (PKC activator).
- I-RTX and BCTC effectively blocked capsaicin, pH, and PKC-induced responses.
- Capsazepine showed weak inhibition of capsaicin-evoked mTRPV1 response (IC50 = 1426 nM).
- Mouse TRPV1 pharmacology resembles rat TRPV1, differing significantly from human TRPV1.
Conclusions:
- Mouse TRPV1 exhibits a distinct pharmacological profile compared to human TRPV1.
- Capsazepine is likely an ineffective TRPV1 antagonist in mouse models of inflammatory pain.
- These findings highlight species-specific differences in TRPV1 channel function and drug response.

