Effect of P2X7 receptor knockout on AQP-5 expression of type I alveolar epithelial cells.

P2X7 receptors, ATP-gated cation channels, are specifically expressed in alveolar epithelial cells. The pathophysiological function of this lung cell type, except a recently reported putative involvement in surfactant secretion, is unknown. In addition, P2X7 receptor-deficient mice show reduced infl...

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Main Authors: Georg Ebeling, Robert Bläsche, Falk Hofmann, Antje Augstein, Michael Kasper, Kathrin Barth
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4062497?pdf=render
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spelling doaj-526073007ed2416cb2841120a70a06e22020-11-24T21:50:27ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0196e10028210.1371/journal.pone.0100282Effect of P2X7 receptor knockout on AQP-5 expression of type I alveolar epithelial cells.Georg EbelingRobert BläscheFalk HofmannAntje AugsteinMichael KasperKathrin BarthP2X7 receptors, ATP-gated cation channels, are specifically expressed in alveolar epithelial cells. The pathophysiological function of this lung cell type, except a recently reported putative involvement in surfactant secretion, is unknown. In addition, P2X7 receptor-deficient mice show reduced inflammation and lung fibrosis after exposure with bleomycin. To elucidate the role of the P2X7 receptor in alveolar epithelial type I cells we characterized the pulmonary phenotype of P2X7 receptor knockout mice by using immunohistochemistry, western blot analysis and real-time RT PCR. No pathomorphological signs of fibrosis were found. Results revealed, however, a remarkable loss of aquaporin-5 protein and mRNA in young knockout animals. Additional in vitro experiments with bleomycin treated precision cut lung slices showed a greater sensitivity of the P2X7 receptor knockout mice in terms of aquaporin-5 reduction as wild type animals. Finally, P2X7 receptor function was examined by using the alveolar epithelial cell lines E10 and MLE-12 for stimulation experiments with bleomycin. The in vitro activation of P2X7 receptor was connected with an increase of aquaporin-5, whereas the inhibition of the receptor with oxidized ATP resulted in down regulation of aquaporin-5. The early loss of aquaporin-5 which can be found in different pulmonary fibrosis models does not implicate a specific pathogenetic role during fibrogenesis.http://europepmc.org/articles/PMC4062497?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Georg Ebeling
Robert Bläsche
Falk Hofmann
Antje Augstein
Michael Kasper
Kathrin Barth
spellingShingle Georg Ebeling
Robert Bläsche
Falk Hofmann
Antje Augstein
Michael Kasper
Kathrin Barth
Effect of P2X7 receptor knockout on AQP-5 expression of type I alveolar epithelial cells.
PLoS ONE
author_facet Georg Ebeling
Robert Bläsche
Falk Hofmann
Antje Augstein
Michael Kasper
Kathrin Barth
author_sort Georg Ebeling
title Effect of P2X7 receptor knockout on AQP-5 expression of type I alveolar epithelial cells.
title_short Effect of P2X7 receptor knockout on AQP-5 expression of type I alveolar epithelial cells.
title_full Effect of P2X7 receptor knockout on AQP-5 expression of type I alveolar epithelial cells.
title_fullStr Effect of P2X7 receptor knockout on AQP-5 expression of type I alveolar epithelial cells.
title_full_unstemmed Effect of P2X7 receptor knockout on AQP-5 expression of type I alveolar epithelial cells.
title_sort effect of p2x7 receptor knockout on aqp-5 expression of type i alveolar epithelial cells.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description P2X7 receptors, ATP-gated cation channels, are specifically expressed in alveolar epithelial cells. The pathophysiological function of this lung cell type, except a recently reported putative involvement in surfactant secretion, is unknown. In addition, P2X7 receptor-deficient mice show reduced inflammation and lung fibrosis after exposure with bleomycin. To elucidate the role of the P2X7 receptor in alveolar epithelial type I cells we characterized the pulmonary phenotype of P2X7 receptor knockout mice by using immunohistochemistry, western blot analysis and real-time RT PCR. No pathomorphological signs of fibrosis were found. Results revealed, however, a remarkable loss of aquaporin-5 protein and mRNA in young knockout animals. Additional in vitro experiments with bleomycin treated precision cut lung slices showed a greater sensitivity of the P2X7 receptor knockout mice in terms of aquaporin-5 reduction as wild type animals. Finally, P2X7 receptor function was examined by using the alveolar epithelial cell lines E10 and MLE-12 for stimulation experiments with bleomycin. The in vitro activation of P2X7 receptor was connected with an increase of aquaporin-5, whereas the inhibition of the receptor with oxidized ATP resulted in down regulation of aquaporin-5. The early loss of aquaporin-5 which can be found in different pulmonary fibrosis models does not implicate a specific pathogenetic role during fibrogenesis.
url http://europepmc.org/articles/PMC4062497?pdf=render
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