Immunohistochemical description of the endogenous cannabinoid system in the rat cerebellum and functionally related nuclei
- 2 June 2008
- journal article
- research article
- Published by Wiley in Journal of Comparative Neurology
- Vol. 509 (4) , 400-421
- https://doi.org/10.1002/cne.21774
Abstract
We report a detailed analysis of the distribution of relevant proteins of the endogenous cannabinoid system in the rat cerebellum (cerebellar cortex and deep cerebellar nuclei) and the two functionally related nuclei, the vestibular nuclei and the inferior olive. These proteins include the two main cannabinoid receptors (CB1and CB2), the enzymes involved in cannabinoid biosynthesis (DAGLα, DAGLβ, and NAPE‐PLD), and the endocannabinoid‐degradating enzymes (FAAH and MAGL). With regard to the cerebellar cortex, these data confirm several published reports on the distribution of cannabinoid CB1receptors, DAGLα, MAGL, and FAAH, which suggests a role of endocannabinoids as retrograde messengers in the synapses of the Purkinje cells by either parallel fibers of granule cells or climbing fibers from the inferior olive or GABAergic interneuron. Additionally, we describe the presence of CB2receptors in fibers related to Purkinje somata (Pinceau formations) and dendrites (parallel fibers), suggesting a potential role of this receptor in the retrograde cannabinoid signaling. A remarkable finding of the present study is the description of the different elements of the endogenous cannabinoid system in both the main afferent nuclei to the cerebellar cortex (the inferior olive) and the efferent cerebellar pathway (the deep cerebellar nuclei). The presence of the endogenous cannabinoid system at this level establishes the basis for endocannabinoid‐mediated synaptic plasticity as a control mechanism in motor learning, opening new research lines for the study of the contribution of this system in gait disorders affecting the cerebellum. J. Comp. Neurol. 509:400–421, 2008.Keywords
This publication has 79 references indexed in Scilit:
- A Comprehensive Profile of Brain Enzymes that Hydrolyze the Endocannabinoid 2-ArachidonoylglycerolChemistry & Biology, 2007
- Cannabis Use Disrupts Eyeblink Conditioning: Evidence for Cannabinoid Modulation of Cerebellar-Dependent LearningNeuropsychopharmacology, 2007
- Regulation of brain anandamide by acute administration of ethanolBiochemical Journal, 2007
- Endogenous Cannabinoid Signaling through the CB1Receptor Is Essential for Cerebellum-Dependent Discrete Motor LearningJournal of Neuroscience, 2006
- Experimental autoimmune encephalomyelitis disrupts endocannabinoid-mediated neuroprotectionProceedings of the National Academy of Sciences, 2006
- Inactivation of N-Acyl Phosphatidylethanolamine Phospholipase D Reveals Multiple Mechanisms for the Biosynthesis of EndocannabinoidsBiochemistry, 2006
- Identification and Functional Characterization of Brainstem Cannabinoid CB2ReceptorsScience, 2005
- Associative Short-Term Synaptic Plasticity Mediated by EndocannabinoidsNeuron, 2005
- Role of the endocannabinoid system in Alzheimer's disease: New perspectivesLife Sciences, 2004
- Fibroblast Growth Factor Receptor Function Is Required for the Orderly Projection of Ganglion Cell Axons in the Developing Mammalian RetinaMolecular and Cellular Neuroscience, 1996