Cargando…
Secretoglobin 1A1 and 1A1A Differentially Regulate Neutrophil Reactive Oxygen Species Production, Phagocytosis and Extracellular Trap Formation
Secretoglobin family 1A member 1 (SCGB 1A1) is a small protein mainly secreted by mucosal epithelial cells of the lungs and uterus. SCGB 1A1, also known as club (Clara) cell secretory protein, represents a major constituent of airway surface fluid. The protein has anti-inflammatory properties, and i...
Autores principales: | , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2014
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4002474/ https://www.ncbi.nlm.nih.gov/pubmed/24777050 http://dx.doi.org/10.1371/journal.pone.0096217 |
_version_ | 1782313805183713280 |
---|---|
author | Côté, Olivier Clark, Mary Ellen Viel, Laurent Labbé, Geneviève Seah, Stephen Y. K. Khan, Meraj A. Douda, David N. Palaniyar, Nades Bienzle, Dorothee |
author_facet | Côté, Olivier Clark, Mary Ellen Viel, Laurent Labbé, Geneviève Seah, Stephen Y. K. Khan, Meraj A. Douda, David N. Palaniyar, Nades Bienzle, Dorothee |
author_sort | Côté, Olivier |
collection | PubMed |
description | Secretoglobin family 1A member 1 (SCGB 1A1) is a small protein mainly secreted by mucosal epithelial cells of the lungs and uterus. SCGB 1A1, also known as club (Clara) cell secretory protein, represents a major constituent of airway surface fluid. The protein has anti-inflammatory properties, and its concentration is reduced in equine recurrent airway obstruction (RAO) and human asthma. RAO is characterized by reversible airway obstruction, bronchoconstriction and neutrophilic inflammation. Direct effects of SCGB 1A1 on neutrophil functions are unknown. We have recently identified that the SCGB1A1 gene is triplicated in equids and gives rise to two distinct proteins. In this study we produced the endogenously expressed forms of SCGBs (SCGB 1A1 and 1A1A) as recombinant proteins, and analyzed their effects on reactive oxygen species production, phagocytosis, chemotaxis and neutrophil extracellular trap (NET) formation ex vivo. We further evaluated whether NETs are present in vivo in control and inflamed lungs. Our data show that SCGB 1A1A but not SCGB 1A1 increase neutrophil oxidative burst and phagocytosis; and that both proteins markedly reduce neutrophil chemotaxis. SCGB 1A1A reduced chemotaxis significantly more than SCGB 1A1. NET formation was significantly reduced in a time- and concentration-dependent manner by SCGB 1A1 and 1A1A. SCGB mRNA in bronchial biopsies, and protein concentration in bronchoalveolar lavage fluid, was lower in horses with RAO. NETs were present in bronchoalveolar lavage fluid from horses with exacerbated RAO, but not in fluid from horses with RAO in remission or in challenged healthy horses. These findings indicate that SCGB 1A1 and 1A1A have overlapping and diverging functions. Considering disparities in the relative abundance of SCGB 1A1 and 1A1A in airway secretions of animals with RAO suggests that these functional differences may contribute to the pathogenesis of RAO and other neutrophilic inflammatory lung diseases. |
format | Online Article Text |
id | pubmed-4002474 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-40024742014-05-02 Secretoglobin 1A1 and 1A1A Differentially Regulate Neutrophil Reactive Oxygen Species Production, Phagocytosis and Extracellular Trap Formation Côté, Olivier Clark, Mary Ellen Viel, Laurent Labbé, Geneviève Seah, Stephen Y. K. Khan, Meraj A. Douda, David N. Palaniyar, Nades Bienzle, Dorothee PLoS One Research Article Secretoglobin family 1A member 1 (SCGB 1A1) is a small protein mainly secreted by mucosal epithelial cells of the lungs and uterus. SCGB 1A1, also known as club (Clara) cell secretory protein, represents a major constituent of airway surface fluid. The protein has anti-inflammatory properties, and its concentration is reduced in equine recurrent airway obstruction (RAO) and human asthma. RAO is characterized by reversible airway obstruction, bronchoconstriction and neutrophilic inflammation. Direct effects of SCGB 1A1 on neutrophil functions are unknown. We have recently identified that the SCGB1A1 gene is triplicated in equids and gives rise to two distinct proteins. In this study we produced the endogenously expressed forms of SCGBs (SCGB 1A1 and 1A1A) as recombinant proteins, and analyzed their effects on reactive oxygen species production, phagocytosis, chemotaxis and neutrophil extracellular trap (NET) formation ex vivo. We further evaluated whether NETs are present in vivo in control and inflamed lungs. Our data show that SCGB 1A1A but not SCGB 1A1 increase neutrophil oxidative burst and phagocytosis; and that both proteins markedly reduce neutrophil chemotaxis. SCGB 1A1A reduced chemotaxis significantly more than SCGB 1A1. NET formation was significantly reduced in a time- and concentration-dependent manner by SCGB 1A1 and 1A1A. SCGB mRNA in bronchial biopsies, and protein concentration in bronchoalveolar lavage fluid, was lower in horses with RAO. NETs were present in bronchoalveolar lavage fluid from horses with exacerbated RAO, but not in fluid from horses with RAO in remission or in challenged healthy horses. These findings indicate that SCGB 1A1 and 1A1A have overlapping and diverging functions. Considering disparities in the relative abundance of SCGB 1A1 and 1A1A in airway secretions of animals with RAO suggests that these functional differences may contribute to the pathogenesis of RAO and other neutrophilic inflammatory lung diseases. Public Library of Science 2014-04-28 /pmc/articles/PMC4002474/ /pubmed/24777050 http://dx.doi.org/10.1371/journal.pone.0096217 Text en © 2014 Côté et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited. |
spellingShingle | Research Article Côté, Olivier Clark, Mary Ellen Viel, Laurent Labbé, Geneviève Seah, Stephen Y. K. Khan, Meraj A. Douda, David N. Palaniyar, Nades Bienzle, Dorothee Secretoglobin 1A1 and 1A1A Differentially Regulate Neutrophil Reactive Oxygen Species Production, Phagocytosis and Extracellular Trap Formation |
title | Secretoglobin 1A1 and 1A1A Differentially Regulate Neutrophil Reactive Oxygen Species Production, Phagocytosis and Extracellular Trap Formation |
title_full | Secretoglobin 1A1 and 1A1A Differentially Regulate Neutrophil Reactive Oxygen Species Production, Phagocytosis and Extracellular Trap Formation |
title_fullStr | Secretoglobin 1A1 and 1A1A Differentially Regulate Neutrophil Reactive Oxygen Species Production, Phagocytosis and Extracellular Trap Formation |
title_full_unstemmed | Secretoglobin 1A1 and 1A1A Differentially Regulate Neutrophil Reactive Oxygen Species Production, Phagocytosis and Extracellular Trap Formation |
title_short | Secretoglobin 1A1 and 1A1A Differentially Regulate Neutrophil Reactive Oxygen Species Production, Phagocytosis and Extracellular Trap Formation |
title_sort | secretoglobin 1a1 and 1a1a differentially regulate neutrophil reactive oxygen species production, phagocytosis and extracellular trap formation |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4002474/ https://www.ncbi.nlm.nih.gov/pubmed/24777050 http://dx.doi.org/10.1371/journal.pone.0096217 |
work_keys_str_mv | AT coteolivier secretoglobin1a1and1a1adifferentiallyregulateneutrophilreactiveoxygenspeciesproductionphagocytosisandextracellulartrapformation AT clarkmaryellen secretoglobin1a1and1a1adifferentiallyregulateneutrophilreactiveoxygenspeciesproductionphagocytosisandextracellulartrapformation AT viellaurent secretoglobin1a1and1a1adifferentiallyregulateneutrophilreactiveoxygenspeciesproductionphagocytosisandextracellulartrapformation AT labbegenevieve secretoglobin1a1and1a1adifferentiallyregulateneutrophilreactiveoxygenspeciesproductionphagocytosisandextracellulartrapformation AT seahstephenyk secretoglobin1a1and1a1adifferentiallyregulateneutrophilreactiveoxygenspeciesproductionphagocytosisandextracellulartrapformation AT khanmeraja secretoglobin1a1and1a1adifferentiallyregulateneutrophilreactiveoxygenspeciesproductionphagocytosisandextracellulartrapformation AT doudadavidn secretoglobin1a1and1a1adifferentiallyregulateneutrophilreactiveoxygenspeciesproductionphagocytosisandextracellulartrapformation AT palaniyarnades secretoglobin1a1and1a1adifferentiallyregulateneutrophilreactiveoxygenspeciesproductionphagocytosisandextracellulartrapformation AT bienzledorothee secretoglobin1a1and1a1adifferentiallyregulateneutrophilreactiveoxygenspeciesproductionphagocytosisandextracellulartrapformation |