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Regulation of energy rheostasis by the melanocortin-3 receptor

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posted on 2025-07-31, 21:51 authored by M Ghamari-Langroudi, I Cakir, RN Lippert, P Sweeney, MJ Litt, KLJ Ellacott, RD Cone
Like most homeostatic systems, adiposity in mammals is defended between upper and lower boundary conditions. While leptin and melanocortin-4 receptor (MC4R) signaling are required for defending energy set point, mechanisms controlling upper and lower homeostatic boundaries are less well understood. In contrast to the MC4R, deletion of the MC3R does not produce measurable hyperphagia or hypometabolism under normal conditions. However, we demonstrate that MC3R is required bidirectionally for controlling responses to external homeostatic challenges, such as caloric restriction or calorie-rich diet. MC3R is also required for regulated excursion from set point, or rheostasis, during pregnancy. Further, we demonstrate a molecular mechanism: MC3R provides regulatory inputs to melanocortin signaling, acting presynaptically on agouti-related protein neurons to regulate γ-aminobutyric acid release onto anorexigenic MC4R neurons, exerting boundary control on the activity of MC4R neurons. Thus, the MC3R is a critical regulator of boundary controls on melanocortin signaling, providing rheostatic control on energy storage.

Funding

We would like to thank Savannah Y. Williams and Heidi Adams for excellent technical assistance with these experiments, and Taneisha Gillyard and Stephanie King for their excellent contributions to the creation of figures and illustrations. This was supported by NIH grant DK070332 (RDC & MG-L).

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Copyright © 2018 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution NonCommercial License 4.0 (CC BY-NC).

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This is the final version. Also available from AAAS via the DOI in this record.

Journal

Science Advances

Publisher

American Association for the Advancement of Science: Science Advances

Language

en

Citation

Vol 4 (8), article number: eaat0866

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