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αCaMKII controls the establishment of cocaine's reinforcing effects in mice and humans

Although addiction develops in a considerable number of regular cocaine users, molecular risk factors for cocaine dependence are still unknown. It was proposed that establishing drug use and memory formation might share molecular and anatomical pathways. Alpha-Ca(2+)/calmodulin-dependent protein kin...

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Autores principales: Easton, A C, Lourdusamy, A, Havranek, M, Mizuno, K, Solati, J, Golub, Y, Clarke, T-K, Vallada, H, Laranjeira, R, Desrivières, S, Moll, G H, Mössner, R, Kornhuber, J, Schumann, G, Giese, K P, Fernandes, C, Quednow, B B, Müller, C P
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4350526/
https://www.ncbi.nlm.nih.gov/pubmed/25290264
http://dx.doi.org/10.1038/tp.2014.97
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author Easton, A C
Lourdusamy, A
Havranek, M
Mizuno, K
Solati, J
Golub, Y
Clarke, T-K
Vallada, H
Laranjeira, R
Desrivières, S
Moll, G H
Mössner, R
Kornhuber, J
Schumann, G
Giese, K P
Fernandes, C
Quednow, B B
Müller, C P
author_facet Easton, A C
Lourdusamy, A
Havranek, M
Mizuno, K
Solati, J
Golub, Y
Clarke, T-K
Vallada, H
Laranjeira, R
Desrivières, S
Moll, G H
Mössner, R
Kornhuber, J
Schumann, G
Giese, K P
Fernandes, C
Quednow, B B
Müller, C P
author_sort Easton, A C
collection PubMed
description Although addiction develops in a considerable number of regular cocaine users, molecular risk factors for cocaine dependence are still unknown. It was proposed that establishing drug use and memory formation might share molecular and anatomical pathways. Alpha-Ca(2+)/calmodulin-dependent protein kinase-II (αCaMKII) is a key mediator of learning and memory also involved in drug-related plasticity. The autophosphorylation of αCaMKII was shown to accelerate learning. Thus, we investigated the role of αCaMKII autophosphorylation in the time course of establishing cocaine use-related behavior in mice. We found that αCaMKII autophosphorylation-deficient αCaMKII(T286A) mice show delayed establishment of conditioned place preference, but no changes in acute behavioral activation, sensitization or conditioned hyperlocomotion to cocaine (20 mg kg(−1), intraperitoneal). In vivo microdialysis revealed that αCaMKII(T286A) mice have blunted dopamine (DA) and blocked serotonin (5-HT) responses in the nucleus accumbens (NAcc) and prefrontal cortex after acute cocaine administration (20 mg kg(−1), intraperitoneal), whereas noradrenaline responses were preserved. Under cocaine, the attenuated DA and 5-HT activation in αCaMKII(T286A) mice was followed by impaired c-Fos activation in the NAcc. To translate the rodent findings to human conditions, several CAMK2A gene polymorphisms were tested regarding their risk for a fast establishment of cocaine dependence in two independent samples of regular cocaine users from Brazil (n=688) and Switzerland (n=141). A meta-analysis across both samples confirmed that CAMK2A rs3776823 TT-allele carriers display a faster transition to severe cocaine use than C-allele carriers. Together, these data suggest that αCaMKII controls the speed for the establishment of cocaine's reinforcing effects.
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spelling pubmed-43505262015-04-06 αCaMKII controls the establishment of cocaine's reinforcing effects in mice and humans Easton, A C Lourdusamy, A Havranek, M Mizuno, K Solati, J Golub, Y Clarke, T-K Vallada, H Laranjeira, R Desrivières, S Moll, G H Mössner, R Kornhuber, J Schumann, G Giese, K P Fernandes, C Quednow, B B Müller, C P Transl Psychiatry Original Article Although addiction develops in a considerable number of regular cocaine users, molecular risk factors for cocaine dependence are still unknown. It was proposed that establishing drug use and memory formation might share molecular and anatomical pathways. Alpha-Ca(2+)/calmodulin-dependent protein kinase-II (αCaMKII) is a key mediator of learning and memory also involved in drug-related plasticity. The autophosphorylation of αCaMKII was shown to accelerate learning. Thus, we investigated the role of αCaMKII autophosphorylation in the time course of establishing cocaine use-related behavior in mice. We found that αCaMKII autophosphorylation-deficient αCaMKII(T286A) mice show delayed establishment of conditioned place preference, but no changes in acute behavioral activation, sensitization or conditioned hyperlocomotion to cocaine (20 mg kg(−1), intraperitoneal). In vivo microdialysis revealed that αCaMKII(T286A) mice have blunted dopamine (DA) and blocked serotonin (5-HT) responses in the nucleus accumbens (NAcc) and prefrontal cortex after acute cocaine administration (20 mg kg(−1), intraperitoneal), whereas noradrenaline responses were preserved. Under cocaine, the attenuated DA and 5-HT activation in αCaMKII(T286A) mice was followed by impaired c-Fos activation in the NAcc. To translate the rodent findings to human conditions, several CAMK2A gene polymorphisms were tested regarding their risk for a fast establishment of cocaine dependence in two independent samples of regular cocaine users from Brazil (n=688) and Switzerland (n=141). A meta-analysis across both samples confirmed that CAMK2A rs3776823 TT-allele carriers display a faster transition to severe cocaine use than C-allele carriers. Together, these data suggest that αCaMKII controls the speed for the establishment of cocaine's reinforcing effects. Nature Publishing Group 2014-10 2014-10-07 /pmc/articles/PMC4350526/ /pubmed/25290264 http://dx.doi.org/10.1038/tp.2014.97 Text en Copyright © 2014 Macmillan Publishers Limited http://creativecommons.org/licenses/by-nc-sa/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 3.0 Unported License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/3.0/
spellingShingle Original Article
Easton, A C
Lourdusamy, A
Havranek, M
Mizuno, K
Solati, J
Golub, Y
Clarke, T-K
Vallada, H
Laranjeira, R
Desrivières, S
Moll, G H
Mössner, R
Kornhuber, J
Schumann, G
Giese, K P
Fernandes, C
Quednow, B B
Müller, C P
αCaMKII controls the establishment of cocaine's reinforcing effects in mice and humans
title αCaMKII controls the establishment of cocaine's reinforcing effects in mice and humans
title_full αCaMKII controls the establishment of cocaine's reinforcing effects in mice and humans
title_fullStr αCaMKII controls the establishment of cocaine's reinforcing effects in mice and humans
title_full_unstemmed αCaMKII controls the establishment of cocaine's reinforcing effects in mice and humans
title_short αCaMKII controls the establishment of cocaine's reinforcing effects in mice and humans
title_sort αcamkii controls the establishment of cocaine's reinforcing effects in mice and humans
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4350526/
https://www.ncbi.nlm.nih.gov/pubmed/25290264
http://dx.doi.org/10.1038/tp.2014.97
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