4.7 Article

Cocaine-Dependent Acquisition of Locomotor Sensitization and Conditioned Place Preference Requires D1 Dopaminergic Signaling through a Cyclic AMP, NCS-Rapgef2, ERK, and Egr-1/Zif268 Pathway

Journal

JOURNAL OF NEUROSCIENCE
Volume 41, Issue 4, Pages 711-725

Publisher

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.1497-20.2020

Keywords

cAMP; cocaine reward; D1 dopaminergic signaling; Egr-1; MAPK; NCS-Rapgef2

Categories

Funding

  1. National Institute of Mental Health Intramural Research Program [1ZIAMH002386, 1ZIAMH002497]

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The study reveals the crucial role of NCS-Rapgef2 signaling to ERK in dopamine D1 receptor-expressing neurons of the NAc in cocaine-induced locomotor sensitization and conditioned place preference, while showing no impact in corticolimbic areas. Ablation of cocaine-dependent ERK activation by eliminating NCS-Rapgef2 suggests a new cAMP-dependent signaling pathway for cocaine-induced behavioral adaptations independent of PKA/CREB signaling.
Elucidation of the mechanism of dopamine signaling to ERK that underlies plasticity in dopamine D1 receptor-expressing neurons leading to acquired cocaine preference is incomplete. NCS-Rapgef2 is a novel cAMP effector, expressed in neuronal and endocrine cells in adult mammals, that is required for D1 dopamine receptor-dependent ERK phosphorylation in mouse brain. In this report, we studied the effects of abrogating NCS-Rapgef2 expression on cAMP-dependent ERKfiEgr-1/Zif268 signaling in cultured neuroendocrine cells; in D1 medium spiny neurons of NAc slices; and in either male or female mouse brain in a region-specific manner. NCS-Rapgef2 gene deletion in the NAc in adult mice, using adeno-associated virus-mediated expression of cre recombinase, eliminated cocaine-induced ERK phosphorylation and Egr-1/Zif268 upregulation in D1-medium spiny neurons and cocaine-induced behaviors, including locomotor sensitization and conditioned place preference. Abrogation of NCS-Rapgef2 gene expression in mPFC and BLA, by crossing mice bearing a floxed Rapgef2 allele with a cre mouse line driven by calcium/calmodulin-dependent kinase IIa promoter also eliminated cocaine-induced phospho-ERK activation and Egr-1/Zif268 induction, but without effect on the cocaine-induced behaviors. Our results indicate that NCS-Rapgef2 signaling to ERK in dopamine D1 receptor-expressing neurons in the NAc, but not in corticolimbic areas, contributes to cocaine-induced locomotor sensitization and conditioned place preference. Ablation of cocaine-dependent ERK activation by elimination of NCS-Rapgef2 occurred with no effect on phosphorylation of CREB in D1 dopaminoceptive neurons of NAc. This study reveals a new cAMP-dependent signaling pathway for cocaine-induced behavioral adaptations, mediated through NCS-Rapgef2/phospho-ERK activation, independently of PKA/CREB signaling.

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