Identification of BPIFA1/SPLUNC1 as an epithelium-derived smooth muscle relaxing factor

Asthma is characterized by abnormal airway hyperresponsiveness. Here the authors identify BPIFA1 as a factor secreted by airway epithelial cells, and show that it regulates contractility of airway smooth muscle cells by binding to and regulating the Orai1 Ca2+channel.

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Autores principales: Tongde Wu, Julianne Huang, Patrick J. Moore, Michael S. Little, William G. Walton, Robert C. Fellner, Neil E. Alexis, Y. Peter Di, Matthew R. Redinbo, Stephen L. Tilley, Robert Tarran
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/c13d74cd6193402c97012e807c2d9c19
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spelling oai:doaj.org-article:c13d74cd6193402c97012e807c2d9c192021-12-02T14:42:09ZIdentification of BPIFA1/SPLUNC1 as an epithelium-derived smooth muscle relaxing factor10.1038/ncomms141182041-1723https://doaj.org/article/c13d74cd6193402c97012e807c2d9c192017-02-01T00:00:00Zhttps://doi.org/10.1038/ncomms14118https://doaj.org/toc/2041-1723Asthma is characterized by abnormal airway hyperresponsiveness. Here the authors identify BPIFA1 as a factor secreted by airway epithelial cells, and show that it regulates contractility of airway smooth muscle cells by binding to and regulating the Orai1 Ca2+channel.Tongde WuJulianne HuangPatrick J. MooreMichael S. LittleWilliam G. WaltonRobert C. FellnerNeil E. AlexisY. Peter DiMatthew R. RedinboStephen L. TilleyRobert TarranNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-10 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Tongde Wu
Julianne Huang
Patrick J. Moore
Michael S. Little
William G. Walton
Robert C. Fellner
Neil E. Alexis
Y. Peter Di
Matthew R. Redinbo
Stephen L. Tilley
Robert Tarran
Identification of BPIFA1/SPLUNC1 as an epithelium-derived smooth muscle relaxing factor
description Asthma is characterized by abnormal airway hyperresponsiveness. Here the authors identify BPIFA1 as a factor secreted by airway epithelial cells, and show that it regulates contractility of airway smooth muscle cells by binding to and regulating the Orai1 Ca2+channel.
format article
author Tongde Wu
Julianne Huang
Patrick J. Moore
Michael S. Little
William G. Walton
Robert C. Fellner
Neil E. Alexis
Y. Peter Di
Matthew R. Redinbo
Stephen L. Tilley
Robert Tarran
author_facet Tongde Wu
Julianne Huang
Patrick J. Moore
Michael S. Little
William G. Walton
Robert C. Fellner
Neil E. Alexis
Y. Peter Di
Matthew R. Redinbo
Stephen L. Tilley
Robert Tarran
author_sort Tongde Wu
title Identification of BPIFA1/SPLUNC1 as an epithelium-derived smooth muscle relaxing factor
title_short Identification of BPIFA1/SPLUNC1 as an epithelium-derived smooth muscle relaxing factor
title_full Identification of BPIFA1/SPLUNC1 as an epithelium-derived smooth muscle relaxing factor
title_fullStr Identification of BPIFA1/SPLUNC1 as an epithelium-derived smooth muscle relaxing factor
title_full_unstemmed Identification of BPIFA1/SPLUNC1 as an epithelium-derived smooth muscle relaxing factor
title_sort identification of bpifa1/splunc1 as an epithelium-derived smooth muscle relaxing factor
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/c13d74cd6193402c97012e807c2d9c19
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