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EphrinB1 modulates glutamatergic inputs into POMC-expressing progenitors and controls glucose homeostasis

Proopiomelanocortin (POMC) neurons are major regulators of energy balance and glucose homeostasis. In addition to being regulated by hormones and nutrients, POMC neurons are controlled by glutamatergic input originating from multiple brain regions. However, the factors involved in the formation of g...

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Autores principales: Gervais, Manon, Labouèbe, Gwenaël, Picard, Alexandre, Thorens, Bernard, Croizier, Sophie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7728393/
https://www.ncbi.nlm.nih.gov/pubmed/33253166
http://dx.doi.org/10.1371/journal.pbio.3000680
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author Gervais, Manon
Labouèbe, Gwenaël
Picard, Alexandre
Thorens, Bernard
Croizier, Sophie
author_facet Gervais, Manon
Labouèbe, Gwenaël
Picard, Alexandre
Thorens, Bernard
Croizier, Sophie
author_sort Gervais, Manon
collection PubMed
description Proopiomelanocortin (POMC) neurons are major regulators of energy balance and glucose homeostasis. In addition to being regulated by hormones and nutrients, POMC neurons are controlled by glutamatergic input originating from multiple brain regions. However, the factors involved in the formation of glutamatergic inputs and how they contribute to bodily functions remain largely unknown. Here, we show that during the development of glutamatergic inputs, POMC neurons exhibit enriched expression of the Efnb1 (EphrinB1) and Efnb2 (EphrinB2) genes, which are known to control excitatory synapse formation. In vivo loss of Efnb1 in POMC-expressing progenitors decreases the amount of glutamatergic inputs, associated with a reduced number of α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) and N-methyl-D-aspartate (NMDA) receptor subunits and excitability of these cells. We found that mice lacking Efnb1 in POMC-expressing progenitors display impaired glucose tolerance due to blunted vagus nerve activity and decreased insulin secretion. However, despite reduced excitatory inputs, mice lacking Efnb2 in POMC-expressing progenitors showed no deregulation of insulin secretion and only mild alterations in feeding behavior and gluconeogenesis. Collectively, our data demonstrate the role of ephrins in controlling excitatory input amount into POMC-expressing progenitors and show an isotype-specific role of ephrins on the regulation of glucose homeostasis and feeding.
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spelling pubmed-77283932020-12-17 EphrinB1 modulates glutamatergic inputs into POMC-expressing progenitors and controls glucose homeostasis Gervais, Manon Labouèbe, Gwenaël Picard, Alexandre Thorens, Bernard Croizier, Sophie PLoS Biol Research Article Proopiomelanocortin (POMC) neurons are major regulators of energy balance and glucose homeostasis. In addition to being regulated by hormones and nutrients, POMC neurons are controlled by glutamatergic input originating from multiple brain regions. However, the factors involved in the formation of glutamatergic inputs and how they contribute to bodily functions remain largely unknown. Here, we show that during the development of glutamatergic inputs, POMC neurons exhibit enriched expression of the Efnb1 (EphrinB1) and Efnb2 (EphrinB2) genes, which are known to control excitatory synapse formation. In vivo loss of Efnb1 in POMC-expressing progenitors decreases the amount of glutamatergic inputs, associated with a reduced number of α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) and N-methyl-D-aspartate (NMDA) receptor subunits and excitability of these cells. We found that mice lacking Efnb1 in POMC-expressing progenitors display impaired glucose tolerance due to blunted vagus nerve activity and decreased insulin secretion. However, despite reduced excitatory inputs, mice lacking Efnb2 in POMC-expressing progenitors showed no deregulation of insulin secretion and only mild alterations in feeding behavior and gluconeogenesis. Collectively, our data demonstrate the role of ephrins in controlling excitatory input amount into POMC-expressing progenitors and show an isotype-specific role of ephrins on the regulation of glucose homeostasis and feeding. Public Library of Science 2020-11-30 /pmc/articles/PMC7728393/ /pubmed/33253166 http://dx.doi.org/10.1371/journal.pbio.3000680 Text en © 2020 Gervais et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Gervais, Manon
Labouèbe, Gwenaël
Picard, Alexandre
Thorens, Bernard
Croizier, Sophie
EphrinB1 modulates glutamatergic inputs into POMC-expressing progenitors and controls glucose homeostasis
title EphrinB1 modulates glutamatergic inputs into POMC-expressing progenitors and controls glucose homeostasis
title_full EphrinB1 modulates glutamatergic inputs into POMC-expressing progenitors and controls glucose homeostasis
title_fullStr EphrinB1 modulates glutamatergic inputs into POMC-expressing progenitors and controls glucose homeostasis
title_full_unstemmed EphrinB1 modulates glutamatergic inputs into POMC-expressing progenitors and controls glucose homeostasis
title_short EphrinB1 modulates glutamatergic inputs into POMC-expressing progenitors and controls glucose homeostasis
title_sort ephrinb1 modulates glutamatergic inputs into pomc-expressing progenitors and controls glucose homeostasis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7728393/
https://www.ncbi.nlm.nih.gov/pubmed/33253166
http://dx.doi.org/10.1371/journal.pbio.3000680
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