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Legionella pneumophila induces human beta Defensin-3 in pulmonary cells

BACKGROUND: Legionella pneumophila is an important causative agent of severe pneumonia in humans. Human alveolar epithelium and macrophages are effective barriers for inhaled microorganisms and actively participate in the initiation of innate host defense. The beta defensin-3 (hBD-3), an antimicrobi...

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Autores principales: Scharf, Stefanie, Vardarova, Kremena, Lang, Friederike, Schmeck, Bernd, Opitz, Bastian, Flieger, Antje, Heuner, Klaus, Hippenstiel, Stefan, Suttorp, Norbert, N'Guessan, Philippe D
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2910005/
https://www.ncbi.nlm.nih.gov/pubmed/20615218
http://dx.doi.org/10.1186/1465-9921-11-93
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author Scharf, Stefanie
Vardarova, Kremena
Lang, Friederike
Schmeck, Bernd
Opitz, Bastian
Flieger, Antje
Heuner, Klaus
Hippenstiel, Stefan
Suttorp, Norbert
N'Guessan, Philippe D
author_facet Scharf, Stefanie
Vardarova, Kremena
Lang, Friederike
Schmeck, Bernd
Opitz, Bastian
Flieger, Antje
Heuner, Klaus
Hippenstiel, Stefan
Suttorp, Norbert
N'Guessan, Philippe D
author_sort Scharf, Stefanie
collection PubMed
description BACKGROUND: Legionella pneumophila is an important causative agent of severe pneumonia in humans. Human alveolar epithelium and macrophages are effective barriers for inhaled microorganisms and actively participate in the initiation of innate host defense. The beta defensin-3 (hBD-3), an antimicrobial peptide is an important component of the innate immune response of the human lung. Therefore we hypothesize that hBD-3 might be important for immune defense towards L. pneumophila. METHODS: We investigated the effects of L. pneumophila and different TLR agonists on pulmonary cells in regard to hBD-3 expression by ELISA. Furthermore, siRNA-mediated inhibition of TLRs as well as chemical inhibition of potential downstream signaling molecules was used for functional analysis. RESULTS: L. pneumophila induced release of hBD-3 in pulmonary epithelium and alveolar macrophages. A similar response was observed when epithelial cells were treated with different TLR agonists. Inhibition of TLR2, TLR5, and TLR9 expression led to a decreased hBD-3 expression. Furthermore expression of hBD-3 was mediated through a JNK dependent activation of AP-1 (c-Jun) but appeared to be independent of NF-κB. Additionally, we demonstrate that hBD-3 elicited a strong antimicrobial effect on L. pneumophila replication. CONCLUSIONS: Taken together, human pulmonary cells produce hBD-3 upon L. pneumophila infection via a TLR-JNK-AP-1-dependent pathway which may contribute to an efficient innate immune defense.
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spelling pubmed-29100052010-07-27 Legionella pneumophila induces human beta Defensin-3 in pulmonary cells Scharf, Stefanie Vardarova, Kremena Lang, Friederike Schmeck, Bernd Opitz, Bastian Flieger, Antje Heuner, Klaus Hippenstiel, Stefan Suttorp, Norbert N'Guessan, Philippe D Respir Res Research BACKGROUND: Legionella pneumophila is an important causative agent of severe pneumonia in humans. Human alveolar epithelium and macrophages are effective barriers for inhaled microorganisms and actively participate in the initiation of innate host defense. The beta defensin-3 (hBD-3), an antimicrobial peptide is an important component of the innate immune response of the human lung. Therefore we hypothesize that hBD-3 might be important for immune defense towards L. pneumophila. METHODS: We investigated the effects of L. pneumophila and different TLR agonists on pulmonary cells in regard to hBD-3 expression by ELISA. Furthermore, siRNA-mediated inhibition of TLRs as well as chemical inhibition of potential downstream signaling molecules was used for functional analysis. RESULTS: L. pneumophila induced release of hBD-3 in pulmonary epithelium and alveolar macrophages. A similar response was observed when epithelial cells were treated with different TLR agonists. Inhibition of TLR2, TLR5, and TLR9 expression led to a decreased hBD-3 expression. Furthermore expression of hBD-3 was mediated through a JNK dependent activation of AP-1 (c-Jun) but appeared to be independent of NF-κB. Additionally, we demonstrate that hBD-3 elicited a strong antimicrobial effect on L. pneumophila replication. CONCLUSIONS: Taken together, human pulmonary cells produce hBD-3 upon L. pneumophila infection via a TLR-JNK-AP-1-dependent pathway which may contribute to an efficient innate immune defense. BioMed Central 2010 2010-07-08 /pmc/articles/PMC2910005/ /pubmed/20615218 http://dx.doi.org/10.1186/1465-9921-11-93 Text en Copyright ©2010 Scharf et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Scharf, Stefanie
Vardarova, Kremena
Lang, Friederike
Schmeck, Bernd
Opitz, Bastian
Flieger, Antje
Heuner, Klaus
Hippenstiel, Stefan
Suttorp, Norbert
N'Guessan, Philippe D
Legionella pneumophila induces human beta Defensin-3 in pulmonary cells
title Legionella pneumophila induces human beta Defensin-3 in pulmonary cells
title_full Legionella pneumophila induces human beta Defensin-3 in pulmonary cells
title_fullStr Legionella pneumophila induces human beta Defensin-3 in pulmonary cells
title_full_unstemmed Legionella pneumophila induces human beta Defensin-3 in pulmonary cells
title_short Legionella pneumophila induces human beta Defensin-3 in pulmonary cells
title_sort legionella pneumophila induces human beta defensin-3 in pulmonary cells
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2910005/
https://www.ncbi.nlm.nih.gov/pubmed/20615218
http://dx.doi.org/10.1186/1465-9921-11-93
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