Supramammillary glutamate neurons are a key node of the arousal system.

Pedersen, Nigel P; Ferrari, Loris; Venner, Anne; Wang, Joshua L; Abbott, Stephen B G; Vujovic, Nina; Arrigoni, Elda; Saper, Clifford B et al. · Nat Commun · 2017

basic_science · Level V

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Abstract

Basic and clinical observations suggest that the caudal hypothalamus comprises a key node of the ascending arousal system, but the cell types underlying this are not fully understood. Here we report that glutamate-releasing neurons of the supramammillary region (SuM<sup>vglut2</sup>) produce sustained behavioral and EEG arousal when chemogenetically activated. This effect is nearly abolished following selective genetic disruption of glutamate release from SuM<sup>vglut2</sup> neurons. Inhibition of SuM<sup>vglut2</sup> neurons decreases and fragments wake, also suppressing theta and gamma frequency EEG activity. SuM<sup>vglut2</sup> neurons include a subpopulation containing both glutamate and GABA (SuM<sup>vgat/vglut2</sup>) and another also expressing nitric oxide synthase (SuM<sup>Nos1/Vglut2</sup>). Activation of SuM<sup>vgat/vglut2</sup> neurons produces minimal wake and optogenetic stimulation of SuM<sup>vgat/vglut2</sup> terminals elicits monosynaptic release of both glutamate and GABA onto dentate granule cells. Activation of SuM<sup>Nos1/Vglut2</sup> neurons potently drives wakefulness, whereas inhibition reduces REM sleep theta activity. These results identify SuM<sup>vglut2</sup> neurons as a key node of the wake-sleep regulatory system.

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