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Glutaredoxin deficiency promotes activation of the transforming growth factor beta pathway in airway epithelial cells, in association with fibrotic airway remodeling

S-glutathionylation of reactive protein cysteines is a post-translational event that plays a critical role in transducing signals from oxidants into biological responses. S-glutathionylation can be reversed by the deglutathionylating enzyme glutaredoxin (GLRX). We have previously demonstrated that a...

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Autores principales: Chia, Shi B., Nolin, James D., Aboushousha, Reem, Erikson, Cuixia, Irvin, Charles G., Poynter, Matthew E., van der Velden, Jos, Taatjes, Douglas J., van der Vliet, Albert, Anathy, Vikas, Janssen-Heininger, Yvonne M.W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7509797/
https://www.ncbi.nlm.nih.gov/pubmed/32971362
http://dx.doi.org/10.1016/j.redox.2020.101720
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author Chia, Shi B.
Nolin, James D.
Aboushousha, Reem
Erikson, Cuixia
Irvin, Charles G.
Poynter, Matthew E.
van der Velden, Jos
Taatjes, Douglas J.
van der Vliet, Albert
Anathy, Vikas
Janssen-Heininger, Yvonne M.W.
author_facet Chia, Shi B.
Nolin, James D.
Aboushousha, Reem
Erikson, Cuixia
Irvin, Charles G.
Poynter, Matthew E.
van der Velden, Jos
Taatjes, Douglas J.
van der Vliet, Albert
Anathy, Vikas
Janssen-Heininger, Yvonne M.W.
author_sort Chia, Shi B.
collection PubMed
description S-glutathionylation of reactive protein cysteines is a post-translational event that plays a critical role in transducing signals from oxidants into biological responses. S-glutathionylation can be reversed by the deglutathionylating enzyme glutaredoxin (GLRX). We have previously demonstrated that ablation of Glrx sensitizes mice to the development of parenchymal lung fibrosis(1). It remains unclear whether GLRX also controls airway fibrosis, a clinical feature relevant to asthma and chronic obstructive pulmonary disease, and whether GLRX controls the biology of airway epithelial cells, which have been implicated in the pathophysiology of these diseases. In the present study we utilized a house dust mite (HDM) model of allergic airway disease in wild type (WT) and Glrx(-/-) mice on a C57BL/6 background prone to develop airway fibrosis, and tracheal basal stem cells derived from WT mice, global Glrx(-/-) mice, or bi-transgenic mice allowing conditional ablation of the Glrx gene. Herein we show that absence of Glrx led to enhanced HDM-induced collagen deposition, elevated levels of transforming growth factor beta 1 (TGFB1) in the bronchoalveolar lavage, and resulted in increases in airway hyperresponsiveness. Airway epithelial cells isolated from Glrx(-/-) mice or following conditional ablation of Glrx showed spontaneous increases in secretion of TGFB1. Glrx(-/-) basal cells also showed spontaneous TGFB pathway activation, in association with increased expression of mesenchymal genes, including collagen 1a1 and fibronectin. Overall, these findings suggest that GLRX regulates airway fibrosis via a mechanism(s) that involve the plasticity of basal cells, the stem cells of the airways.
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spelling pubmed-75097972020-09-30 Glutaredoxin deficiency promotes activation of the transforming growth factor beta pathway in airway epithelial cells, in association with fibrotic airway remodeling Chia, Shi B. Nolin, James D. Aboushousha, Reem Erikson, Cuixia Irvin, Charles G. Poynter, Matthew E. van der Velden, Jos Taatjes, Douglas J. van der Vliet, Albert Anathy, Vikas Janssen-Heininger, Yvonne M.W. Redox Biol Research Paper S-glutathionylation of reactive protein cysteines is a post-translational event that plays a critical role in transducing signals from oxidants into biological responses. S-glutathionylation can be reversed by the deglutathionylating enzyme glutaredoxin (GLRX). We have previously demonstrated that ablation of Glrx sensitizes mice to the development of parenchymal lung fibrosis(1). It remains unclear whether GLRX also controls airway fibrosis, a clinical feature relevant to asthma and chronic obstructive pulmonary disease, and whether GLRX controls the biology of airway epithelial cells, which have been implicated in the pathophysiology of these diseases. In the present study we utilized a house dust mite (HDM) model of allergic airway disease in wild type (WT) and Glrx(-/-) mice on a C57BL/6 background prone to develop airway fibrosis, and tracheal basal stem cells derived from WT mice, global Glrx(-/-) mice, or bi-transgenic mice allowing conditional ablation of the Glrx gene. Herein we show that absence of Glrx led to enhanced HDM-induced collagen deposition, elevated levels of transforming growth factor beta 1 (TGFB1) in the bronchoalveolar lavage, and resulted in increases in airway hyperresponsiveness. Airway epithelial cells isolated from Glrx(-/-) mice or following conditional ablation of Glrx showed spontaneous increases in secretion of TGFB1. Glrx(-/-) basal cells also showed spontaneous TGFB pathway activation, in association with increased expression of mesenchymal genes, including collagen 1a1 and fibronectin. Overall, these findings suggest that GLRX regulates airway fibrosis via a mechanism(s) that involve the plasticity of basal cells, the stem cells of the airways. Elsevier 2020-09-14 /pmc/articles/PMC7509797/ /pubmed/32971362 http://dx.doi.org/10.1016/j.redox.2020.101720 Text en http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Chia, Shi B.
Nolin, James D.
Aboushousha, Reem
Erikson, Cuixia
Irvin, Charles G.
Poynter, Matthew E.
van der Velden, Jos
Taatjes, Douglas J.
van der Vliet, Albert
Anathy, Vikas
Janssen-Heininger, Yvonne M.W.
Glutaredoxin deficiency promotes activation of the transforming growth factor beta pathway in airway epithelial cells, in association with fibrotic airway remodeling
title Glutaredoxin deficiency promotes activation of the transforming growth factor beta pathway in airway epithelial cells, in association with fibrotic airway remodeling
title_full Glutaredoxin deficiency promotes activation of the transforming growth factor beta pathway in airway epithelial cells, in association with fibrotic airway remodeling
title_fullStr Glutaredoxin deficiency promotes activation of the transforming growth factor beta pathway in airway epithelial cells, in association with fibrotic airway remodeling
title_full_unstemmed Glutaredoxin deficiency promotes activation of the transforming growth factor beta pathway in airway epithelial cells, in association with fibrotic airway remodeling
title_short Glutaredoxin deficiency promotes activation of the transforming growth factor beta pathway in airway epithelial cells, in association with fibrotic airway remodeling
title_sort glutaredoxin deficiency promotes activation of the transforming growth factor beta pathway in airway epithelial cells, in association with fibrotic airway remodeling
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7509797/
https://www.ncbi.nlm.nih.gov/pubmed/32971362
http://dx.doi.org/10.1016/j.redox.2020.101720
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