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DNA damage response at telomeres contributes to lung aging and chronic obstructive pulmonary disease

Cellular senescence has been associated with the structural and functional decline observed during physiological lung aging and in chronic obstructive pulmonary disease (COPD). Airway epithelial cells are the first line of defense in the lungs and are important to COPD pathogenesis. However, the mec...

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Autores principales: Birch, Jodie, Anderson, Rhys K., Correia-Melo, Clara, Jurk, Diana, Hewitt, Graeme, Marques, Francisco Madeira, Green, Nicola J., Moisey, Elizabeth, Birrell, Mark A., Belvisi, Maria G., Black, Fiona, Taylor, John J., Fisher, Andrew J., De Soyza, Anthony, Passos, João F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Physiological Society 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4652155/
https://www.ncbi.nlm.nih.gov/pubmed/26386121
http://dx.doi.org/10.1152/ajplung.00293.2015
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author Birch, Jodie
Anderson, Rhys K.
Correia-Melo, Clara
Jurk, Diana
Hewitt, Graeme
Marques, Francisco Madeira
Green, Nicola J.
Moisey, Elizabeth
Birrell, Mark A.
Belvisi, Maria G.
Black, Fiona
Taylor, John J.
Fisher, Andrew J.
De Soyza, Anthony
Passos, João F.
author_facet Birch, Jodie
Anderson, Rhys K.
Correia-Melo, Clara
Jurk, Diana
Hewitt, Graeme
Marques, Francisco Madeira
Green, Nicola J.
Moisey, Elizabeth
Birrell, Mark A.
Belvisi, Maria G.
Black, Fiona
Taylor, John J.
Fisher, Andrew J.
De Soyza, Anthony
Passos, João F.
author_sort Birch, Jodie
collection PubMed
description Cellular senescence has been associated with the structural and functional decline observed during physiological lung aging and in chronic obstructive pulmonary disease (COPD). Airway epithelial cells are the first line of defense in the lungs and are important to COPD pathogenesis. However, the mechanisms underlying airway epithelial cell senescence, and particularly the role of telomere dysfunction in this process, are poorly understood. We aimed to investigate telomere dysfunction in airway epithelial cells from patients with COPD, in the aging murine lung and following cigarette smoke exposure. We evaluated colocalization of γ-histone protein 2A.X and telomeres and telomere length in small airway epithelial cells from patients with COPD, during murine lung aging, and following cigarette smoke exposure in vivo and in vitro. We found that telomere-associated DNA damage foci increase in small airway epithelial cells from patients with COPD, without significant telomere shortening detected. With age, telomere-associated foci increase in small airway epithelial cells of the murine lung, which is accelerated by cigarette smoke exposure. Moreover, telomere-associated foci predict age-dependent emphysema, and late-generation Terc null mice, which harbor dysfunctional telomeres, show early-onset emphysema. We found that cigarette smoke accelerates telomere dysfunction via reactive oxygen species in vitro and may be associated with ataxia telangiectasia mutated-dependent secretion of inflammatory cytokines interleukin-6 and -8. We propose that telomeres are highly sensitive to cigarette smoke-induced damage, and telomere dysfunction may underlie decline of lung function observed during aging and in COPD.
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spelling pubmed-46521552015-12-29 DNA damage response at telomeres contributes to lung aging and chronic obstructive pulmonary disease Birch, Jodie Anderson, Rhys K. Correia-Melo, Clara Jurk, Diana Hewitt, Graeme Marques, Francisco Madeira Green, Nicola J. Moisey, Elizabeth Birrell, Mark A. Belvisi, Maria G. Black, Fiona Taylor, John J. Fisher, Andrew J. De Soyza, Anthony Passos, João F. Am J Physiol Lung Cell Mol Physiol Call for Papers Cellular senescence has been associated with the structural and functional decline observed during physiological lung aging and in chronic obstructive pulmonary disease (COPD). Airway epithelial cells are the first line of defense in the lungs and are important to COPD pathogenesis. However, the mechanisms underlying airway epithelial cell senescence, and particularly the role of telomere dysfunction in this process, are poorly understood. We aimed to investigate telomere dysfunction in airway epithelial cells from patients with COPD, in the aging murine lung and following cigarette smoke exposure. We evaluated colocalization of γ-histone protein 2A.X and telomeres and telomere length in small airway epithelial cells from patients with COPD, during murine lung aging, and following cigarette smoke exposure in vivo and in vitro. We found that telomere-associated DNA damage foci increase in small airway epithelial cells from patients with COPD, without significant telomere shortening detected. With age, telomere-associated foci increase in small airway epithelial cells of the murine lung, which is accelerated by cigarette smoke exposure. Moreover, telomere-associated foci predict age-dependent emphysema, and late-generation Terc null mice, which harbor dysfunctional telomeres, show early-onset emphysema. We found that cigarette smoke accelerates telomere dysfunction via reactive oxygen species in vitro and may be associated with ataxia telangiectasia mutated-dependent secretion of inflammatory cytokines interleukin-6 and -8. We propose that telomeres are highly sensitive to cigarette smoke-induced damage, and telomere dysfunction may underlie decline of lung function observed during aging and in COPD. American Physiological Society 2015-09-18 2015-11-15 /pmc/articles/PMC4652155/ /pubmed/26386121 http://dx.doi.org/10.1152/ajplung.00293.2015 Text en Copyright © 2015 the American Physiological Society http://creativecommons.org/licenses/by/3.0/deed.en_US Licensed under Creative Commons Attribution CC-BY 3.0 (http://creativecommons.org/licenses/by/3.0/deed.en_US) : © the American Physiological Society.
spellingShingle Call for Papers
Birch, Jodie
Anderson, Rhys K.
Correia-Melo, Clara
Jurk, Diana
Hewitt, Graeme
Marques, Francisco Madeira
Green, Nicola J.
Moisey, Elizabeth
Birrell, Mark A.
Belvisi, Maria G.
Black, Fiona
Taylor, John J.
Fisher, Andrew J.
De Soyza, Anthony
Passos, João F.
DNA damage response at telomeres contributes to lung aging and chronic obstructive pulmonary disease
title DNA damage response at telomeres contributes to lung aging and chronic obstructive pulmonary disease
title_full DNA damage response at telomeres contributes to lung aging and chronic obstructive pulmonary disease
title_fullStr DNA damage response at telomeres contributes to lung aging and chronic obstructive pulmonary disease
title_full_unstemmed DNA damage response at telomeres contributes to lung aging and chronic obstructive pulmonary disease
title_short DNA damage response at telomeres contributes to lung aging and chronic obstructive pulmonary disease
title_sort dna damage response at telomeres contributes to lung aging and chronic obstructive pulmonary disease
topic Call for Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4652155/
https://www.ncbi.nlm.nih.gov/pubmed/26386121
http://dx.doi.org/10.1152/ajplung.00293.2015
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