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A gut-derived hormone suppresses sugar appetite and regulates food choice in Drosophila

Biology

A gut-derived hormone suppresses sugar appetite and regulates food choice in Drosophila

A. Malita, O. Kubrak, et al.

Discover how gut-derived neuropeptide F (NPF) shapes dietary choices in female Drosophila! This research, conducted by Alina Malita and colleagues at the University of Copenhagen, unveils the crucial role of NPF in regulating sugar satiety and enhancing protein-rich food consumption, specifically in mated females. Unravel the secrets of appetite modulation and nutrient homeostasis!... show more
Abstract
Animals must adapt their dietary choices to meet their nutritional needs. How these needs are detected and translated into nutrient-specific appetites that drive food-choice behaviours is poorly understood. Here we show that enteroendocrine cells of the adult female Drosophila midgut sense nutrients and in response release neuropeptide F (NPF), which is an ortholog of mammalian neuropeptide Y-family gut-brain hormones. Gut-derived NPF acts on glucagon-like adipokinetic hormone (AKH) signalling to induce sugar satiety and increase consumption of protein-rich food, and on adipose tissue to promote storage of ingested nutrients. Suppression of NPF-mediated gut signalling leads to overconsumption of dietary sugar while simultaneously decreasing intake of protein-rich yeast. Furthermore, gut-derived NPF has a female-specific function in promoting consumption of protein-containing food in mated females. Together, our findings suggest that gut NPF-to-AKH signalling modulates specific appetites and regulates food choice to ensure homeostatic consumption of nutrients, providing insight into the hormonal mechanisms that underlie nutrient-specific hungers.
Publisher
Nature Metabolism
Published On
Nov 07, 2022
Authors
Alina Malita, Olga Kubrak, Takashi Koyama, Nadja Ahrentløv, Michael J. Texada, Stanislav Nagy, Kenneth V. Halberg, Kim Rewitz
Tags
neuropeptide F
Drosophila
dietary choices
aipidokinetic hormone
sugar satiety
protein consumption
gut signaling
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