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Cocaine Exposure Enhances the Activity of Ventral Tegmental Area Dopamine Neurons via Calcium-Impermeable NMDARs.

作者信息

Creed Meaghan, Kaufling Jennifer, Fois Giulia R, Jalabert Marion, Yuan Tifei, Lüscher Christian, Georges Francois, Bellone Camilla

机构信息

Department of Basic Neuroscience, University of Geneva, 1205 Geneva, Switzerland.

Centre National de la Recherche Scientifique, Interdisciplinary Institute for Neuroscience, UMR 5297, F-33076 Bordeaux, France.

出版信息

J Neurosci. 2016 Oct 19;36(42):10759-10768. doi: 10.1523/JNEUROSCI.1703-16.2016.


DOI:10.1523/JNEUROSCI.1703-16.2016
PMID:27798131
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6601891/
Abstract

UNLABELLED: Potentiation of excitatory inputs onto dopamine neurons of the ventral tegmental area (VTA) induced by cocaine exposure allows remodeling of the mesocorticolimbic circuitry, which ultimately drives drug-adaptive behavior. This potentiation is mediated by changes in NMDAR and AMPAR subunit composition. It remains unknown how this synaptic plasticity affects the activity of dopamine neurons. Here, using rodents, we demonstrate that a single cocaine injection increases the firing rate and bursting activity of VTA dopamine neurons, and that these increases persist for 7 d. This enhanced activity depends on the insertion of low-conductance, Ca-impermeable NMDARs that contain GluN3A. Since such receptors are not capable of activating small-conductance potassium channels, the intrinsic excitability of VTA dopamine neurons increases. Activation of group I mGluRs rescues synaptic plasticity and restores small-conductance calcium-dependent potassium channel function, normalizing the firing activity of dopamine neurons. Our study characterizes a mechanism linking drug-evoked synaptic plasticity to neural activity, revealing novel targets for therapeutic interventions. SIGNIFICANCE STATEMENT: We show that cocaine-evoked synaptic changes onto ventral tegmental area (VTA) dopamine (DA) neurons leads to long-lasting increases in their burst firing. This increase is due to impaired function of Ca-activated small-conductance calcium-dependent potassium (SK) channels; SK channels regulate firing of VTA DA neurons, but this regulation was absent after cocaine. Cocaine exposure drives the insertion of GluN3A-containing NMDARs onto VTA DA neurons. These receptors are Ca-impermeable, and thus SK channels are not efficiently activated by synaptic activity. In GluN3A knock-out mice, cocaine did not alter SK channel function or VTA DA neuron firing. This study directly links synaptic changes to increased intrinsic excitability of VTA DA neurons after cocaine, and explains how acute cocaine induces long-lasting remodeling of the mesolimbic DA system.

摘要

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本文引用的文献

[1]
Cocaine Decreases Metabotropic Glutamate Receptor mGluR1 Currents in Dopamine Neurons by Activating mGluR5.

Neuropsychopharmacology. 2015-9

[2]
Addiction therapy. Refining deep brain stimulation to emulate optogenetic treatment of synaptic pathology.

Science. 2015-2-6

[3]
Chaos analysis of EEG during isoflurane-induced loss of righting in rats.

Front Syst Neurosci. 2014-10-16

[4]
Contrasting forms of cocaine-evoked plasticity control components of relapse.

Nature. 2014-5-22

[5]
Expression of cocaine-evoked synaptic plasticity by GluN3A-containing NMDA receptors.

Neuron. 2013-10-31

[6]
NMDA receptor subunit diversity: impact on receptor properties, synaptic plasticity and disease.

Nat Rev Neurosci. 2013-6

[7]
Are you or aren't you? Challenges associated with physiologically identifying dopamine neurons.

Trends Neurosci. 2012-3-28

[8]
Inhibitory inputs from rostromedial tegmental neurons regulate spontaneous activity of midbrain dopamine cells and their responses to drugs of abuse.

Neuropsychopharmacology. 2011-12-14

[9]
Reversal of cocaine-evoked synaptic potentiation resets drug-induced adaptive behaviour.

Nature. 2011-12-7

[10]
Neuronal circuits underlying acute morphine action on dopamine neurons.

Proc Natl Acad Sci U S A. 2011-9-19

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