Astrocyte deletion of α2-Na/K ATPase triggers episodic motor paralysis in mice via a metabolic pathway

Mutations of α2-Na/K ATPase can cause familial hemiplegic migraine via unclear mechanisms. Here, the authors show that deletion of α2-Na/K ATPase in astrocytes results in gene expression and metabolic changes leading to cortical spreading depression and episodic transient motor paralysis in mice.

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Autores principales: Sarah E. Smith, Xiaoying Chen, Lindsey M. Brier, Jonathan R. Bumstead, Nicholas R. Rensing, Alison E. Ringel, Haewon Shin, Anna Oldenborg, Jan R. Crowley, Annie R. Bice, Krikor Dikranian, Joseph E. Ippolito, Marcia C. Haigis, Thomas Papouin, Guoyan Zhao, Michael Wong, Joseph P. Culver, Azad Bonni
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/74f61a96ce2a40c79d4e03f28f0e919d
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spelling oai:doaj.org-article:74f61a96ce2a40c79d4e03f28f0e919d2021-12-02T17:31:25ZAstrocyte deletion of α2-Na/K ATPase triggers episodic motor paralysis in mice via a metabolic pathway10.1038/s41467-020-19915-22041-1723https://doaj.org/article/74f61a96ce2a40c79d4e03f28f0e919d2020-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-19915-2https://doaj.org/toc/2041-1723Mutations of α2-Na/K ATPase can cause familial hemiplegic migraine via unclear mechanisms. Here, the authors show that deletion of α2-Na/K ATPase in astrocytes results in gene expression and metabolic changes leading to cortical spreading depression and episodic transient motor paralysis in mice.Sarah E. SmithXiaoying ChenLindsey M. BrierJonathan R. BumsteadNicholas R. RensingAlison E. RingelHaewon ShinAnna OldenborgJan R. CrowleyAnnie R. BiceKrikor DikranianJoseph E. IppolitoMarcia C. HaigisThomas PapouinGuoyan ZhaoMichael WongJoseph P. CulverAzad BonniNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-15 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Sarah E. Smith
Xiaoying Chen
Lindsey M. Brier
Jonathan R. Bumstead
Nicholas R. Rensing
Alison E. Ringel
Haewon Shin
Anna Oldenborg
Jan R. Crowley
Annie R. Bice
Krikor Dikranian
Joseph E. Ippolito
Marcia C. Haigis
Thomas Papouin
Guoyan Zhao
Michael Wong
Joseph P. Culver
Azad Bonni
Astrocyte deletion of α2-Na/K ATPase triggers episodic motor paralysis in mice via a metabolic pathway
description Mutations of α2-Na/K ATPase can cause familial hemiplegic migraine via unclear mechanisms. Here, the authors show that deletion of α2-Na/K ATPase in astrocytes results in gene expression and metabolic changes leading to cortical spreading depression and episodic transient motor paralysis in mice.
format article
author Sarah E. Smith
Xiaoying Chen
Lindsey M. Brier
Jonathan R. Bumstead
Nicholas R. Rensing
Alison E. Ringel
Haewon Shin
Anna Oldenborg
Jan R. Crowley
Annie R. Bice
Krikor Dikranian
Joseph E. Ippolito
Marcia C. Haigis
Thomas Papouin
Guoyan Zhao
Michael Wong
Joseph P. Culver
Azad Bonni
author_facet Sarah E. Smith
Xiaoying Chen
Lindsey M. Brier
Jonathan R. Bumstead
Nicholas R. Rensing
Alison E. Ringel
Haewon Shin
Anna Oldenborg
Jan R. Crowley
Annie R. Bice
Krikor Dikranian
Joseph E. Ippolito
Marcia C. Haigis
Thomas Papouin
Guoyan Zhao
Michael Wong
Joseph P. Culver
Azad Bonni
author_sort Sarah E. Smith
title Astrocyte deletion of α2-Na/K ATPase triggers episodic motor paralysis in mice via a metabolic pathway
title_short Astrocyte deletion of α2-Na/K ATPase triggers episodic motor paralysis in mice via a metabolic pathway
title_full Astrocyte deletion of α2-Na/K ATPase triggers episodic motor paralysis in mice via a metabolic pathway
title_fullStr Astrocyte deletion of α2-Na/K ATPase triggers episodic motor paralysis in mice via a metabolic pathway
title_full_unstemmed Astrocyte deletion of α2-Na/K ATPase triggers episodic motor paralysis in mice via a metabolic pathway
title_sort astrocyte deletion of α2-na/k atpase triggers episodic motor paralysis in mice via a metabolic pathway
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/74f61a96ce2a40c79d4e03f28f0e919d
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