Identification of a Brainstem Circuit Controlling Feeding.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 28753423.
- Also identified by DOI 10.1016/j.cell.2017.06.045.
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Abstract
Hunger, driven by negative energy balance, elicits the search for and consumption of food. While this response is in part mediated by neurons in the hypothalamus, the role of specific cell types in other brain regions is less well defined. Here, we show that neurons in the dorsal raphe nucleus, expressing vesicular transporters for GABA or glutamate (hereafter, DRN<sup>Vgat</sup> and DRN<sup>VGLUT3</sup> neurons), are reciprocally activated by changes in energy balance and that modulating their activity has opposite effects on feeding-DRN<sup>Vgat</sup> neurons increase, whereas DRN<sup>VGLUT3</sup> neurons suppress, food intake. Furthermore, modulation of these neurons in obese (ob/ob) mice suppresses food intake and body weight and normalizes locomotor activity. Finally, using molecular profiling, we identify druggable targets in these neurons and show that local infusion of agonists for specific receptors on these neurons has potent effects on feeding. These data establish the DRN as an important node controlling energy balance. PAPERCLIP.
Medical subject headings
- Appetite Regulation
- Dorsal Raphe Nucleus
- Neurons