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PMID: 15375192 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Inhibitory modulation of distal C-terminal on protein kinase C-dependent phospho-regulation of rat TRPV1 receptors.

The Journal of physiology ·Vol. 560 ·No. Pt 3 ·2004-11-01 ·Pages 627-38

Liu B, Ma W, Ryu S, Qin F

Abstract

The vanilloid receptor TRPV1, previously known as VR1, has been implicated in pain sensation under both physiological and pathological conditions. The channel is highly expressed in sensory ganglion neurones and is activated by a range of noxious stimuli including irritant chemicals, acids and heat. In order to understand the structural basis underlying this polymodal activation and the regulation by intracellular signalling pathways, we have investigated the functional roles of the cytoplasmic C-terminal of rat TRPV1. A mutant with the maximal truncation of the distal C-terminal encompassing the last 88 residues was constructed. Of interest, this mutant exhibited a Ca(2+)-dependent functional loss; it was irresponsive to capsaicin in the presence of extracellular Ca(2+), but fully functional otherwise. Further studies of this construct revealed that extracellular Ca(2+) alone could activate the channel, and that the activation required protein kinase C (PKC) phosphorylation at S502, an event that was up-regulated by external Ca(2+) entry. We compared the truncation mutant with wild-type TRPV1 and demonstrated that it had a significantly increased sensitivity to PKC phosphorylation. These results suggest the distal C-terminal of TRPV1 can inhibit phosphorylation-induced potentiation of the wild-type channel. They also call into question some established functions of the distal C-terminal of TRPV1, including its roles in agonist binding and functional desensitization. We suggest that the functional loss of the truncation mutant, in the presence of extracellular Ca(2+), was not due to disruption of agonist binding or gating, but rather to desensitization promoted by unstimulated extracellular Ca(2+) entry.

MeSH Terms
Animals Capsaicin/pharmacology Dose-Response Relationship, Drug Female Humans Ion Channels/genetics,metabolism Membrane Potentials/drug effects,physiology Mutation/drug effects,physiology Peptide Fragments/genetics,metabolism Phosphorylation/drug effects Protein Kinase C/metabolism Rats TRPV Cation Channels Xenopus laevis
Chemicals
Ion Channels Peptide Fragments TRPV Cation Channels Trpv1 protein, rat Protein Kinase C Capsaicin
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Liu Beiying
Department of Physiology and Biophysical Sciences, State University of New York at Buffalo, NY 14214, USA.
Ma Weijun
Ryu Sujung
Qin Feng
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Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
2004-11-01
Epub
2004-00-16
Pages
627-38
Language
English
Region
England
NLM ID
0266262
PMCID
PMC1665281
Subset
IM
Grants
NIGMS NIH HHS · R01 GM065994 · United States
NCRR NIH HHS · R01 RR011114 · United States
NIGMS NIH HHS · R01-GM65994 · United States
NCRR NIH HHS · R01-RR11114 · United States
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