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PMID: 9864268 Published · ppublish English Comparative Study Journal Article

Dual activation and inhibition of adenylyl cyclase by cannabinoid receptor agonists: evidence for agonist-specific trafficking of intracellular responses.

The Journal of pharmacology and experimental therapeutics ·Vol. 287 ·No. 3 ·1998-12-00 ·Pages 884-8

Bonhaus DW, Chang LK, Kwan J, Martin GR

Abstract

Cannabinoid receptors couple to both Gs and Gi proteins and can consequently stimulate or inhibit the formation of cAMP. To test whether there is specificity among cannabinoid receptor agonists in activating Gs- or Gi-coupled pathways, the potency and intrinsic activity of various cannabinoid receptor ligands in stimulating or inhibiting cAMP accumulation were quantified. The rank order of potencies of cannabinoid receptor agonists in increasing or inhibiting forskolin-stimulated cAMP accumulation, in CHO cells expressing hCB1 receptors, was identical (HU-210 > CP-55,940 > THC > WIN-55212-2 > anandamide). However, the activities of these agonists were different in the two assays with anandamide and CP-55,940 being markedly less efficacious in stimulating the accumulation of cAMP than in inhibiting its formation. Studies examining the effects of forskolin on cannabinoid receptor mediated stimulation of adenyly cyclase also revealed differences among agonists in as much as forskolin enhanced the potency of HU-210 and CP-55,940 by approximately 100-fold but, by contrast, had no effect on the potency of WIN-55212-2 or anandamide. Taken together these findings demonstrate marked differences among cannabinoid receptor agonists in their activation of intracellular transduction pathways. This provides support for the emerging concept of agonist-specific trafficking of cellular responses and further suggests strategies for developing receptor agonists with increased therapeutic utility.

MeSH Terms
Adenylyl Cyclase Inhibitors Adenylyl Cyclases/metabolism Animals Arachidonic Acids/pharmacology Benzoxazines CHO Cells Colforsin Cricetinae Cyclic AMP/analysis Cyclohexanols/pharmacology Dronabinol/analogs & derivatives,pharmacology Endocannabinoids Enzyme Activation Humans Morpholines/pharmacology Naphthalenes/pharmacology Polyunsaturated Alkamides Receptors, Cannabinoid Receptors, Drug/agonists,genetics Signal Transduction Transfection
Chemicals
Adenylyl Cyclase Inhibitors Arachidonic Acids Benzoxazines Cyclohexanols Endocannabinoids Morpholines Naphthalenes Polyunsaturated Alkamides Receptors, Cannabinoid Receptors, Drug Colforsin (3R)-((2,3-dihydro-5-methyl-3-((4-morpholinyl)methyl)pyrrolo-(1,2,3-de)-1,4-benzoxazin-6-yl)(1-naphthalenyl))methanone Dronabinol 3-(2-hydroxy-4-(1,1-dimethylheptyl)phenyl)-4-(3-hydroxypropyl)cyclohexanol Cyclic AMP Adenylyl Cyclases HU 211 anandamide
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Bonhaus D W
Department of Molecular Pharmacology, Center for Biological Research, Neurobiology Unit, Roche Bioscience, Palo Alto, California, USA.Doug.Bonhaus@roche.com
Chang L K
Kwan J
Martin G R
Article Info
Journal
The Journal of pharmacology and experimental therapeutics
Abbr.
J Pharmacol Exp Ther
ISSN
0022-3565
Published
1998-12-00
Pages
884-8
Language
English
Region
United States
NLM ID
0376362
Subset
IM
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