NTS Prlh overcomes orexigenic stimuli and ameliorates dietary and genetic forms of obesity.

Cheng, Wenwen; Ndoka, Ermelinda; Maung, Jessica N; Pan, Warren; Rupp, Alan C; Rhodes, Christopher J; Olson, David P; Myers, Martin G · Nat Commun · 2021

basic_science · Level V

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Abstract

Calcitonin receptor (Calcr)-expressing neurons of the nucleus tractus solitarius (NTS; Calcr<sup>NTS</sup> cells) contribute to the long-term control of food intake and body weight. Here, we show that Prlh-expressing NTS (Prlh<sup>NTS</sup>) neurons represent a subset of Calcr<sup>NTS</sup> cells and that Prlh expression in these cells restrains body weight gain in the face of high fat diet challenge in mice. To understand the relationship of Prlh<sup>NTS</sup> cells to hypothalamic feeding circuits, we determined the ability of Prlh<sup>NTS</sup>-mediated signals to overcome enforced activation of AgRP neurons. We found that Prlh<sup>NTS</sup> neuron activation and Prlh overexpression in Prlh<sup>NTS</sup> cells abrogates AgRP neuron-driven hyperphagia and ameliorates the obesity of mice deficient in melanocortin signaling or leptin. Thus, enhancing Prlh-mediated neurotransmission from the NTS dampens hypothalamically-driven hyperphagia and obesity, demonstrating that NTS-mediated signals can override the effects of orexigenic hypothalamic signals on long-term energy balance.

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