Mafa-dependent GABAergic activity promotes mouse neonatal apneas

Apneas are associated with many pathological conditions. Here, the authors show in a mouse model that stabilization of the transcription factor Mafa in brainstem GABAergic neurons may contribute to apnea, by decreasing motor drive to muscles controlling the airways.

Bibliographic Details
Main Authors: Laure Lecoin, Bowen Dempsey, Alexandra Garancher, Steeve Bourane, Pierre-Louis Ruffault, Marie-Pierre Morin-Surun, Nathalie Rocques, Martyn Goulding, Alain Eychène, Celio Pouponnot, Gilles Fortin, Jean Champagnat
Format: Article
Language:English
Published: Nature Portfolio 2022-06-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-022-30825-3
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author Laure Lecoin
Bowen Dempsey
Alexandra Garancher
Steeve Bourane
Pierre-Louis Ruffault
Marie-Pierre Morin-Surun
Nathalie Rocques
Martyn Goulding
Alain Eychène
Celio Pouponnot
Gilles Fortin
Jean Champagnat
author_facet Laure Lecoin
Bowen Dempsey
Alexandra Garancher
Steeve Bourane
Pierre-Louis Ruffault
Marie-Pierre Morin-Surun
Nathalie Rocques
Martyn Goulding
Alain Eychène
Celio Pouponnot
Gilles Fortin
Jean Champagnat
author_sort Laure Lecoin
collection DOAJ
description Apneas are associated with many pathological conditions. Here, the authors show in a mouse model that stabilization of the transcription factor Mafa in brainstem GABAergic neurons may contribute to apnea, by decreasing motor drive to muscles controlling the airways.
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spelling doaj.art-4e5a7c519af7455ca59539ab8c61aa592022-12-22T02:29:27ZengNature PortfolioNature Communications2041-17232022-06-0113111510.1038/s41467-022-30825-3Mafa-dependent GABAergic activity promotes mouse neonatal apneasLaure Lecoin0Bowen Dempsey1Alexandra Garancher2Steeve Bourane3Pierre-Louis Ruffault4Marie-Pierre Morin-Surun5Nathalie Rocques6Martyn Goulding7Alain Eychène8Celio Pouponnot9Gilles Fortin10Jean Champagnat11Institut Curie CNRS UMR 3347, Inserm U1021, UPSaclay, bat 110 Centre UniversitaireUMR 9194 CNRS Neuro-PSI, Institut de Neurobiologie Alfred Fessard, 1 avenue de la terrasseInstitut Curie CNRS UMR 3347, Inserm U1021, UPSaclay, bat 110 Centre UniversitaireMolecular Neurobiology Laboratory, The Salk Institute for Biological StudiesDevelopmental Biology and Signal Transduction Group, Max Delbrück Center for Molecular MedicineUMR 9194 CNRS Neuro-PSI, Institut de Neurobiologie Alfred Fessard, 1 avenue de la terrasseInstitut Curie CNRS UMR 3347, Inserm U1021, UPSaclay, bat 110 Centre UniversitaireMolecular Neurobiology Laboratory, The Salk Institute for Biological StudiesInstitut Curie CNRS UMR 3347, Inserm U1021, UPSaclay, bat 110 Centre UniversitaireInstitut Curie CNRS UMR 3347, Inserm U1021, UPSaclay, bat 110 Centre UniversitaireUMR 9194 CNRS Neuro-PSI, Institut de Neurobiologie Alfred Fessard, 1 avenue de la terrasseUMR 9194 CNRS Neuro-PSI, Institut de Neurobiologie Alfred Fessard, 1 avenue de la terrasseApneas are associated with many pathological conditions. Here, the authors show in a mouse model that stabilization of the transcription factor Mafa in brainstem GABAergic neurons may contribute to apnea, by decreasing motor drive to muscles controlling the airways.https://doi.org/10.1038/s41467-022-30825-3
spellingShingle Laure Lecoin
Bowen Dempsey
Alexandra Garancher
Steeve Bourane
Pierre-Louis Ruffault
Marie-Pierre Morin-Surun
Nathalie Rocques
Martyn Goulding
Alain Eychène
Celio Pouponnot
Gilles Fortin
Jean Champagnat
Mafa-dependent GABAergic activity promotes mouse neonatal apneas
Nature Communications
title Mafa-dependent GABAergic activity promotes mouse neonatal apneas
title_full Mafa-dependent GABAergic activity promotes mouse neonatal apneas
title_fullStr Mafa-dependent GABAergic activity promotes mouse neonatal apneas
title_full_unstemmed Mafa-dependent GABAergic activity promotes mouse neonatal apneas
title_short Mafa-dependent GABAergic activity promotes mouse neonatal apneas
title_sort mafa dependent gabaergic activity promotes mouse neonatal apneas
url https://doi.org/10.1038/s41467-022-30825-3
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