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Type 1 Cannabinoid Receptor Ligands Display Functional Selectivity in a Cell Culture Model of Striatal Medium Spiny Projection Neurons
- Source :
- Journal of Biological Chemistry. 289:24845-24862
- Publication Year :
- 2014
- Publisher :
- Elsevier BV, 2014.
-
Abstract
- Modulation of type 1 cannabinoid receptor (CB1) activity has been touted as a potential means of treating addiction, anxiety, depression, and neurodegeneration. Different agonists of CB1 are known to evoke varied responses in vivo. Functional selectivity is the ligand-specific activation of certain signal transduction pathways at a receptor that can signal through multiple pathways. To understand cannabinoid-specific functional selectivity, different groups have examined the effect of individual cannabinoids on various signaling pathways in heterologous expression systems. In the current study, we compared the functional selectivity of six cannabinoids, including two endocannabinoids (2-arachidonyl glycerol (2-AG) and anandamide (AEA)), two synthetic cannabinoids (WIN55,212-2 and CP55,940), and two phytocannabinoids (cannabidiol (CBD) and Δ(9)-tetrahydrocannabinol (THC)) on arrestin2-, Gα(i/o)-, Gβγ-, Gα(s)-, and Gα(q)-mediated intracellular signaling in the mouse STHdh(Q7/Q7) cell culture model of striatal medium spiny projection neurons that endogenously express CB1. In this system, 2-AG, THC, and CP55,940 were more potent mediators of arrestin2 recruitment than other cannabinoids tested. 2-AG, AEA, and WIN55,212-2, enhanced Gα(i/o) and Gβγ signaling, with 2-AG and AEA treatment leading to increased total CB1 levels. 2-AG, AEA, THC, and WIN55,212-2 also activated Gα(q)-dependent pathways. CP55,940 and CBD both signaled through Gα(s). CP55,940, but not CBD, activated downstream Gα(s) pathways via CB1 targets. THC and CP55,940 promoted CB1 internalization and decreased CB1 protein levels over an 18-h period. These data demonstrate that individual cannabinoids display functional selectivity at CB1 leading to activation of distinct signaling pathways. To effectively match cannabinoids with therapeutic goals, these compounds must be screened for their signaling bias.
- Subjects :
- Cell signaling
Cannabinoid receptor
Polyunsaturated Alkamides
Dendritic Spines
Morpholines
medicine.medical_treatment
Blotting, Western
Arachidonic Acids
Naphthalenes
Pharmacology
Ligands
Models, Biological
Biochemistry
Glycerides
Mice
Neurobiology
Receptor, Cannabinoid, CB1
GTP-Binding Proteins
mental disorders
Synthetic cannabinoids
Fluorescence Resonance Energy Transfer
medicine
Functional selectivity
Animals
Dronabinol
Molecular Biology
Cells, Cultured
Cannabinoid Receptor Agonists
Neurons
Arrestin
Cannabinoids
Chemistry
digestive, oral, and skin physiology
Cell Biology
Cyclohexanols
Endocannabinoid system
Corpus Striatum
Benzoxazines
Luminescent Proteins
nervous system
lipids (amino acids, peptides, and proteins)
Cannabinoid
Cannabidiol
Endocannabinoids
Signal Transduction
medicine.drug
Subjects
Details
- ISSN :
- 00219258
- Volume :
- 289
- Database :
- OpenAIRE
- Journal :
- Journal of Biological Chemistry
- Accession number :
- edsair.doi.dedup.....9d2346491f58909b48d20dfb04415899
- Full Text :
- https://doi.org/10.1074/jbc.m114.557025