4.7 Article

Medial Habenula Output Circuit Mediated by α5 Nicotinic Receptor-Expressing GABAergic Neurons in the Interpeduncular Nucleus

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JOURNAL OF NEUROSCIENCE
卷 33, 期 46, 页码 18022-18035

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SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.2927-13.2013

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  1. National Institutes of Health (NIH) [R21 MH090478, R01 MH093667]
  2. National Institute of Mental Health under NIH [F32MH098498]

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The Chrna5 gene encodes the alpha 5 nicotinic acetylcholine receptor subunit, an accessory subunit of pentameric nicotinic receptors, that has been shown to play a role in nicotine-related behaviors in rodents and is genetically linked to smoking behavior in humans. Here we have used a BAC transgenic mouse line, alpha 5(GFP), to examine the cellular phenotype, connectivity, and function of alpha 5-expressing neurons. Although the medial habenula (MHb) has been proposed as a site of alpha 5 function, alpha 5(GFP) is not detectable in the MHb, and alpha 5 mRNA is expressed there only at very low levels. However, alpha 5(GFP) is strongly expressed in a subset of neurons in the interpeduncular nucleus (IP), median raphe/paramedian raphe (MnR/PMnR), and dorsal tegmental area (DTg). Double-label fluorescence in situ hybridization reveals that these neurons are exclusively GABAergic. Transgenic and conventional tract tracing show that alpha 5(GFP) neurons in the IP project principally to the MnR/PMnR and DTg/interfascicular dorsal raphe, both areas rich in serotonergic neurons. The alpha 5(GFP) neurons in the IP are located in a region that receives cholinergic fiber inputs from the ventral MHb, and optogenetically assisted circuit mapping demonstrates a monosynaptic connection between these cholinergic neurons and alpha 5(GFP) IP neurons. Selective inhibitors of both alpha 4 beta 2- and alpha 3 beta 4-containing nicotinic receptors were able to reduce nicotine-evoked inward currents in alpha 5(GFP) neurons in the IP, suggesting a mixed nicotinic receptor profile in these cells. Together, these findings show that the alpha 5-GABAergic interneurons form a link from the MHb to serotonergic brain centers, which is likely to mediate some of the behavioral effects of nicotine.

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