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Neuronal SKN-1B Modulates Nutritional Signalling Pathways and Mitochondrial Networks to Control Satiety

Authors :
Maximilian A Thompson
Alexander Howard
Ian H. Brown
Jennifer M. A. Tullet
T. Keith Blackwell
Isabel Gonçalves Silva
Timo Kuerten
Nikolaos Tataridas-Pallas
Marina Ezcurra
Ziyun Wu
Publication Year :
2020
Publisher :
Cold Spring Harbor Laboratory, 2020.

Abstract

The feeling of hunger or satiety results from integration of the sensory nervous system with other physiological and metabolic cues. This regulates food intake, maintains homeostasis and prevents disease. InC. elegans, chemosensory neurons sense food and relay information to the rest of the animal via hormones to control food-related behaviour and physiology. Here we identify a new component of this system, SKN-1B which acts as a central food-responsive node, ultimately controlling satiety and metabolic homeostasis. SKN-1B, an ortholog of mammalian NF-E2 related transcription factors (Nrfs), has previously been implicated with metabolism and respiration, because can mediate the increased lifespan incurred by dietary restriction. We show that actually SKN-1B is not essential for dietary restriction longevity and instead, controls a variety of food-related behaviours. It acts in two hypothalamus-like ASI neurons to sense food, communicate nutritional status to the organism, and control satiety and exploratory behaviours. This is achieved by SKN-1B modulating endocrine signalling pathways (IIS and TGF-β), and by promoting a robust mitochondrial network. Our data suggest a food-sensing and satiety role for mammalian Nrf proteins.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........e6cf92f3d263f6a10558cc9100035030