Inhibition of Calcium/Calmodulin-Dependent Protein Kinase II in Rat Hippocampus Attenuates Morphine Tolerance and Dependence
- 1 July 1999
- journal article
- Published by Elsevier in Molecular Pharmacology
- Vol. 56 (1) , 39-45
- https://doi.org/10.1124/mol.56.1.39
Abstract
Learning and memory have been suggested to be important in the development of opiate addiction. Based on the recent findings that calcium/calmodulin-dependent protein kinase II (CaMKII) is essential in learning and memory processes, and morphine treatment increases CaMKII activity in hippocampus, the present study was undertaken to examine whether inhibition of hippocampal CaMKII prevents morphine tolerance and dependence. Here, we report that inhibition of CaMKII by intrahippocampal dentate gyrus administration of the specific inhibitors KN-62 and KN-93 to rats significantly attenuated the tolerance to the analgesic effect of morphine and the abstinence syndrome precipitated by opiate antagonist naloxone. In contrast, both KN-04 and KN-92, the inactive structural analogs of KN-62 and KN-93, failed to attenuate morphine tolerance and dependence, indicating that the observed effects of KN-62 and KN-93 are mediated through inhibition of CaMKII. Furthermore, administration of CaMKII antisense oligonucleotide into rat hippocampal dentate gyrus, which decreased the expression of CaMKII specifically, also attenuated morphine tolerance and dependence, while the corresponding sense oligonucleotide of CaMKII did not exhibit such inhibitory effect. Moreover, the KN-62 treatment abolished the rewarding properties of morphine as measured by the conditioned place preference. These results suggest that hippocampal CaMKII is critically involved in the development of morphine tolerance and dependence, and inhibition of this kinase may have some therapeutic benefit in the treatment of opiate tolerance and dependence.Keywords
This publication has 31 references indexed in Scilit:
- Teaching the Brain to Take DrugsScience, 1998
- Site Mutation in the Rat μ‐Opioid Receptor Demonstrates the Involvement of Calcium/Calmodulin‐Dependent Protein Kinase II in Agonist‐Mediated DesensitizationJournal of Neurochemistry, 1997
- Calcium/Calmodulin-dependent Protein Kinase IIα Mediates Activation of Mitogen-activated Protein Kinase and Cytosolic Phospholipase A2 in Norepinephrine-induced Arachidonic Acid Release in Rabbit Aortic Smooth Muscle CellsJournal of Biological Chemistry, 1996
- Reduction of Morphine Abstinence in Mice with a Mutation in the Gene Encoding CREBScience, 1996
- N-Methyl-d-aspartate and nitric oxide regulate the expression of calcium/calmodulin-dependent kinase II in the hippocampal dentate gyrusMolecular Brain Research, 1995
- Differential activation of CREB by Ca2+/calmodulin-dependent protein kinases type II and type IV involves phosphorylation of a site that negatively regulates activity.Genes & Development, 1994
- Intrahippocampal or intraamygdala infusion of KN62, a specific inhibitor of calcium/calmodulin-dependent protein kinase II, causes retrograde amnesia in the ratBehavioral and Neural Biology, 1994
- Impaired Spatial Learning in α-Calcium-Calmodulin Kinase II Mutant MiceScience, 1992
- Inhibition of Morphine Tolerance and Dependence by the NMDA Receptor Antagonist MK-801Science, 1991
- Morphine Analgesic Tolerance: Its Situation Specificity Supports a Pavlovian Conditioning ModelScience, 1976