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      Opposing Patterns of Signaling Activation in Dopamine D 1 and D 2 Receptor-Expressing Striatal Neurons in Response to Cocaine and Haloperidol

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          Abstract

          Psychostimulants and other drugs of abuse activate extracellular signal-regulated kinase (ERK) in the striatum, through combined stimulation of dopamine D 1 receptors (D1Rs) and glutamate NMDA receptors. Antipsychotic drugs activate similar signaling proteins in the striatum by blocking dopamine D 2 receptors (D2Rs). However, the neurons in which these pathways are activated by psychotropic drugs are not precisely identified. We used transgenic mice, in which enhanced green fluorescent protein (EGFP) expression was driven by D1R promoter ( drd1a-EGFP) or D2R promoter ( drd2-EGFP). We confirmed the expression of drd1a-EGFP in striatonigral and drd2-EGFP in striatopallidal neurons. Drd2-EGFP was also expressed in cholinergic interneurons, whereas no expression of either promoter was detected in GABAergic interneurons. Acute cocaine treatment increased phosphorylation of ERK and its direct or indirect nuclear targets, mitogen- and stress-activated kinase-1 (MSK1) and histone H3, exclusively in D1R-expressing output neurons in the dorsal striatum and nucleus accumbens. Cocaine-induced expression of c-Fos and Zif268 predominated in D1R-expressing neurons but was also observed in D2R-expressing neurons. One week after repeated cocaine administration, cocaine-induced signaling responses were decreased, with the exception of enhanced ERK phosphorylation in dorsal striatum. The responses remained confined to D1R neurons. In contrast, acute haloperidol injection activated phosphorylation of ERK, MSK1, and H3 only in D2R neurons and induced c-fos and zif268 predominantly in these neurons. Our results demonstrate that cocaine and haloperidol specifically activate signaling pathways in two completely segregated populations of striatal output neurons, providing direct evidence for the selective mechanisms by which these drugs exert their long-term effects.

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          Author and article information

          Journal
          J Neurosci
          J. Neurosci
          jneuro
          jneurosci
          J. Neurosci
          The Journal of Neuroscience
          Society for Neuroscience
          0270-6474
          1529-2401
          28 May 2008
          : 28
          : 22
          : 5671-5685
          Affiliations
          [1] 1Inserm UMR-S 839,
          [2] 2Université Pierre et Marie Curie, and
          [3] 3Institut du Fer à Moulin, 75005 Paris, France
          Author notes
          Correspondence should be addressed to Dr. Jean-Antoine Girault, Inserm UMR-S 839, Institut du Fer à Moulin, 17 rue du Fer à Moulin, 75005 Paris, France. girault@ 123456fer-a-moulin.inserm.fr

          *E.V. and J.-A.G. contributed equally to this work.

          Article
          PMC6670792 PMC6670792 6670792 3356751
          10.1523/JNEUROSCI.1039-08.2008
          6670792
          18509028
          2be48b51-54a4-43a2-9b90-28014fc9428a
          Copyright © 2008 Society for Neuroscience 0270-6474/08/285671-15$15.00/0
          History
          : 17 November 2007
          : 18 April 2008
          : 21 April 2008
          Categories
          Articles
          Behavioral/Systems/Cognitive
          Custom metadata
          true

          ERK,histone H3,MAP kinase,MSK1,c-Fos,Zif268
          ERK, histone H3, MAP kinase, MSK1, c-Fos, Zif268

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