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PMID: 19226289 Published · ppublish English Journal Article

Inhibition of human recombinant T-type calcium channels by the endocannabinoid N-arachidonoyl dopamine.

British journal of pharmacology ·Vol. 156 ·No. 5 ·2009-03-00 ·Pages 740-50

Ross HR, Gilmore AJ, Connor M

Abstract

N-arachidonoyl dopamine (NADA) has complex effects on nociception mediated via cannabinoid CB(1) receptors and the transient receptor potential vanilloid receptor 1 (TRPV1). Anandamide, the prototypic CB(1)/TRPV1 agonist, also inhibits T-type voltage-gated calcium channel currents (I(Ca)). These channels are expressed by many excitable cells, including neurons involved in pain detection and processing. We sought to determine whether NADA and the prototypic arachidonoyl amino acid, N-arachidonoyl glycine (NAGly) modulate T-type I(Ca) Human recombinant T-type I(Ca) (Ca(V)3 channels) expressed in HEK 293 cells and native mouse T-type I(Ca) were examined using standard whole-cell voltage clamp electrophysiology techniques. N-arachidonoyl dopamine completely inhibited Ca(V)3 channels with a rank order of potency (pEC(50)) of Ca(V)3.3 (6.45) > or = Ca(V)3.1 (6.29) > Ca(V)3.2 (5.95). NAGly (10 micromol.L(-1)) inhibited Ca(V)3 I(Ca) by approximately 50% or less. The effects of NADA and NAGly were voltage- but not use-dependent, and both compounds produced significant hyperpolarizing shifts in Ca(V)3 channel steady-state inactivation relationships. By contrast with anandamide, NADA and NAGly had modest effects on Ca(V)3 channel kinetics. Both NAGly and NADA inhibited native T-type I(Ca) in mouse sensory neurons. N-arachidonoyl dopamine and NAGly increase the steady-state inactivation of Ca(V)3 channels, reducing the number of channels available to open during depolarization. These effects occur at NADA concentrations at or below to those affecting CB(1) and TRPV1 receptors. Together with anandamide, the arachidonoyl neurotransmitter amides, NADA and NAGly, represent a new family of endogenous T-type I(Ca) modulators.

MeSH Terms
Analgesics/pharmacology Animals Arachidonic Acids/pharmacology Calcium Channel Blockers/pharmacology Calcium Channels, T-Type/physiology Cannabinoid Receptor Modulators/pharmacology Cells, Cultured Dopamine/analogs & derivatives,pharmacology Endocannabinoids Glycine/analogs & derivatives,pharmacology Humans Kinetics Male Membrane Potentials Mice Mice, Inbred C57BL Patch-Clamp Techniques Recombinant Proteins/antagonists & inhibitors Sensory Receptor Cells/drug effects,physiology Trigeminal Ganglion/cytology
Chemicals
Analgesics Arachidonic Acids Calcium Channel Blockers Calcium Channels, T-Type Cannabinoid Receptor Modulators Endocannabinoids N-arachidonylglycine Recombinant Proteins arachidonyl dopamine Glycine Dopamine
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Ross Hamish R
Pain Management Research Institute, Kolling Institute, University of Sydney at Royal North Hospital, St Leonards, NSW, Australia, and.
Gilmore Andrew J
Connor Mark
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Article Info
Journal
British journal of pharmacology
Abbr.
Br J Pharmacol
ISSN
1476-5381
Published
2009-03-00
Epub
2009-00-16
Pages
740-50
Language
English
Region
England
NLM ID
7502536
PMCID
PMC2697747
Subset
IM
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