Hypothalamic PNOC/NPY neurons constitute mediators of leptin-controlled energy homeostasis.

Solheim, Marie H; Stroganov, Sima; Chen, Weiyi; Subagia, P Sicilia; Bauder, Corinna A; Wnuk-Lipinski, Daria; Del Río-Martín, Almudena; Sotelo-Hitschfeld, Tamara et al. · Cell · 2025

basic_science · Level V

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Abstract

Leptin acts in the brain to suppress appetite, yet the responsible neurocircuitries underlying leptin's anorectic effect are incompletely defined. Prepronociceptin (PNOC)-expressing neurons mediate diet-induced hyperphagia and weight gain in mice. Here, we show that leptin regulates appetite and body weight via PNOC neurons, and that loss of leptin receptor (Lepr) expression in PNOC-expressing neurons in the arcuate nucleus of the hypothalamus (ARC) causes hyperphagia and obesity. Restoring Lepr expression in PNOC neurons on a Lepr-null obese background substantially reduces body weight. Lepr inactivation in PNOC neurons increases neuropeptide Y (Npy) expression in a subset of hypothalamic PNOC neurons that do not express agouti-related peptide (Agrp). Selective chemogenetic activation of PNOC/NPY neurons promotes feeding to the same extent as activating all PNOC<sup>ARC</sup> neurons, and overexpression of Npy in PNOC<sup>ARC</sup> neurons promotes hyperphagia and obesity. Thus, we introduce PNOC/NPY<sup>ARC</sup> neurons as an additional critical mediator of leptin action and as a promising target for obesity therapeutics.

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