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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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 |
work_keys_str_mv |
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