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Nutrient-sensing AgRP neurons relay control of liver autophagy during energy deprivation

Autophagy represents a key regulator of aging and metabolism in sensing energy deprivation. We find that fasting in mice activates autophagy in the liver paralleled by activation of hypothalamic AgRP neurons. Optogenetic and chemogenetic activation of AgRP neurons induces autophagy, alters phosphory...

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Autores principales: Chen, Weiyi, Mehlkop, Oliver, Scharn, Alexandra, Nolte, Hendrik, Klemm, Paul, Henschke, Sinika, Steuernagel, Lukas, Sotelo-Hitschfeld, Tamara, Kaya, Ecem, Wunderlich, Claudia Maria, Langer, Thomas, Kononenko, Natalia L., Giavalisco, Patrick, Brüning, Jens Claus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10173804/
https://www.ncbi.nlm.nih.gov/pubmed/37075752
http://dx.doi.org/10.1016/j.cmet.2023.03.019
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author Chen, Weiyi
Mehlkop, Oliver
Scharn, Alexandra
Nolte, Hendrik
Klemm, Paul
Henschke, Sinika
Steuernagel, Lukas
Sotelo-Hitschfeld, Tamara
Kaya, Ecem
Wunderlich, Claudia Maria
Langer, Thomas
Kononenko, Natalia L.
Giavalisco, Patrick
Brüning, Jens Claus
author_facet Chen, Weiyi
Mehlkop, Oliver
Scharn, Alexandra
Nolte, Hendrik
Klemm, Paul
Henschke, Sinika
Steuernagel, Lukas
Sotelo-Hitschfeld, Tamara
Kaya, Ecem
Wunderlich, Claudia Maria
Langer, Thomas
Kononenko, Natalia L.
Giavalisco, Patrick
Brüning, Jens Claus
author_sort Chen, Weiyi
collection PubMed
description Autophagy represents a key regulator of aging and metabolism in sensing energy deprivation. We find that fasting in mice activates autophagy in the liver paralleled by activation of hypothalamic AgRP neurons. Optogenetic and chemogenetic activation of AgRP neurons induces autophagy, alters phosphorylation of autophagy regulators, and promotes ketogenesis. AgRP neuron-dependent induction of liver autophagy relies on NPY release in the paraventricular nucleus of the hypothalamus (PVH) via presynaptic inhibition of NPY1R-expressing neurons to activate PVH(CRH) neurons. Conversely, inhibiting AgRP neurons during energy deprivation abrogates induction of hepatic autophagy and rewiring of metabolism. AgRP neuron activation increases circulating corticosterone concentrations, and reduction of hepatic glucocorticoid receptor expression attenuates AgRP neuron-dependent activation of hepatic autophagy. Collectively, our study reveals a fundamental regulatory principle of liver autophagy in control of metabolic adaptation during nutrient deprivation.
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spelling pubmed-101738042023-05-12 Nutrient-sensing AgRP neurons relay control of liver autophagy during energy deprivation Chen, Weiyi Mehlkop, Oliver Scharn, Alexandra Nolte, Hendrik Klemm, Paul Henschke, Sinika Steuernagel, Lukas Sotelo-Hitschfeld, Tamara Kaya, Ecem Wunderlich, Claudia Maria Langer, Thomas Kononenko, Natalia L. Giavalisco, Patrick Brüning, Jens Claus Cell Metab Article Autophagy represents a key regulator of aging and metabolism in sensing energy deprivation. We find that fasting in mice activates autophagy in the liver paralleled by activation of hypothalamic AgRP neurons. Optogenetic and chemogenetic activation of AgRP neurons induces autophagy, alters phosphorylation of autophagy regulators, and promotes ketogenesis. AgRP neuron-dependent induction of liver autophagy relies on NPY release in the paraventricular nucleus of the hypothalamus (PVH) via presynaptic inhibition of NPY1R-expressing neurons to activate PVH(CRH) neurons. Conversely, inhibiting AgRP neurons during energy deprivation abrogates induction of hepatic autophagy and rewiring of metabolism. AgRP neuron activation increases circulating corticosterone concentrations, and reduction of hepatic glucocorticoid receptor expression attenuates AgRP neuron-dependent activation of hepatic autophagy. Collectively, our study reveals a fundamental regulatory principle of liver autophagy in control of metabolic adaptation during nutrient deprivation. Cell Press 2023-05-02 /pmc/articles/PMC10173804/ /pubmed/37075752 http://dx.doi.org/10.1016/j.cmet.2023.03.019 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Chen, Weiyi
Mehlkop, Oliver
Scharn, Alexandra
Nolte, Hendrik
Klemm, Paul
Henschke, Sinika
Steuernagel, Lukas
Sotelo-Hitschfeld, Tamara
Kaya, Ecem
Wunderlich, Claudia Maria
Langer, Thomas
Kononenko, Natalia L.
Giavalisco, Patrick
Brüning, Jens Claus
Nutrient-sensing AgRP neurons relay control of liver autophagy during energy deprivation
title Nutrient-sensing AgRP neurons relay control of liver autophagy during energy deprivation
title_full Nutrient-sensing AgRP neurons relay control of liver autophagy during energy deprivation
title_fullStr Nutrient-sensing AgRP neurons relay control of liver autophagy during energy deprivation
title_full_unstemmed Nutrient-sensing AgRP neurons relay control of liver autophagy during energy deprivation
title_short Nutrient-sensing AgRP neurons relay control of liver autophagy during energy deprivation
title_sort nutrient-sensing agrp neurons relay control of liver autophagy during energy deprivation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10173804/
https://www.ncbi.nlm.nih.gov/pubmed/37075752
http://dx.doi.org/10.1016/j.cmet.2023.03.019
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