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MicroRNA miR-24-3p reduces DNA damage responses, apoptosis, and susceptibility to chronic obstructive pulmonary disease

The pathogenesis of chronic obstructive pulmonary disease (COPD) involves aberrant responses to cellular stress caused by chronic cigarette smoke (CS) exposure. However, not all smokers develop COPD and the critical mechanisms that regulate cellular stress responses to increase COPD susceptibility a...

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Autores principales: Nouws, Jessica, Wan, Feng, Finnemore, Eric, Roque, Willy, Kim, So-Jin, Bazan, Isabel, Li, Chuan-xing, Skold, C. Magnus, Dai, Qile, Yan, Xiting, Chioccioli, Maurizio, Neumeister, Veronique, Britto, Clemente J., Sweasy, Joann, Bindra, Ranjit, Wheelock, Åsa M., Gomez, Jose L., Kaminski, Naftali, Lee, Patty J., Sauler, Maor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7934877/
https://www.ncbi.nlm.nih.gov/pubmed/33290275
http://dx.doi.org/10.1172/jci.insight.134218
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author Nouws, Jessica
Wan, Feng
Finnemore, Eric
Roque, Willy
Kim, So-Jin
Bazan, Isabel
Li, Chuan-xing
Skold, C. Magnus
Dai, Qile
Yan, Xiting
Chioccioli, Maurizio
Neumeister, Veronique
Britto, Clemente J.
Sweasy, Joann
Bindra, Ranjit
Wheelock, Åsa M.
Gomez, Jose L.
Kaminski, Naftali
Lee, Patty J.
Sauler, Maor
author_facet Nouws, Jessica
Wan, Feng
Finnemore, Eric
Roque, Willy
Kim, So-Jin
Bazan, Isabel
Li, Chuan-xing
Skold, C. Magnus
Dai, Qile
Yan, Xiting
Chioccioli, Maurizio
Neumeister, Veronique
Britto, Clemente J.
Sweasy, Joann
Bindra, Ranjit
Wheelock, Åsa M.
Gomez, Jose L.
Kaminski, Naftali
Lee, Patty J.
Sauler, Maor
author_sort Nouws, Jessica
collection PubMed
description The pathogenesis of chronic obstructive pulmonary disease (COPD) involves aberrant responses to cellular stress caused by chronic cigarette smoke (CS) exposure. However, not all smokers develop COPD and the critical mechanisms that regulate cellular stress responses to increase COPD susceptibility are not understood. Because microRNAs are well-known regulators of cellular stress responses, we evaluated microRNA expression arrays performed on distal parenchymal lung tissue samples from 172 subjects with and without COPD. We identified miR-24-3p as the microRNA that best correlated with radiographic emphysema and validated this finding in multiple cohorts. In a CS exposure mouse model, inhibition of miR-24-3p increased susceptibility to apoptosis, including alveolar type II epithelial cell apoptosis, and emphysema severity. In lung epithelial cells, miR-24-3p suppressed apoptosis through the BH3-only protein BIM and suppressed homology-directed DNA repair and the DNA repair protein BRCA1. Finally, we found BIM and BRCA1 were increased in COPD lung tissue, and BIM and BRCA1 expression inversely correlated with miR-24-3p. We concluded that miR-24-3p, a regulator of the cellular response to DNA damage, is decreased in COPD, and decreased miR-24-3p increases susceptibility to emphysema through increased BIM and apoptosis.
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spelling pubmed-79348772021-03-09 MicroRNA miR-24-3p reduces DNA damage responses, apoptosis, and susceptibility to chronic obstructive pulmonary disease Nouws, Jessica Wan, Feng Finnemore, Eric Roque, Willy Kim, So-Jin Bazan, Isabel Li, Chuan-xing Skold, C. Magnus Dai, Qile Yan, Xiting Chioccioli, Maurizio Neumeister, Veronique Britto, Clemente J. Sweasy, Joann Bindra, Ranjit Wheelock, Åsa M. Gomez, Jose L. Kaminski, Naftali Lee, Patty J. Sauler, Maor JCI Insight Research Article The pathogenesis of chronic obstructive pulmonary disease (COPD) involves aberrant responses to cellular stress caused by chronic cigarette smoke (CS) exposure. However, not all smokers develop COPD and the critical mechanisms that regulate cellular stress responses to increase COPD susceptibility are not understood. Because microRNAs are well-known regulators of cellular stress responses, we evaluated microRNA expression arrays performed on distal parenchymal lung tissue samples from 172 subjects with and without COPD. We identified miR-24-3p as the microRNA that best correlated with radiographic emphysema and validated this finding in multiple cohorts. In a CS exposure mouse model, inhibition of miR-24-3p increased susceptibility to apoptosis, including alveolar type II epithelial cell apoptosis, and emphysema severity. In lung epithelial cells, miR-24-3p suppressed apoptosis through the BH3-only protein BIM and suppressed homology-directed DNA repair and the DNA repair protein BRCA1. Finally, we found BIM and BRCA1 were increased in COPD lung tissue, and BIM and BRCA1 expression inversely correlated with miR-24-3p. We concluded that miR-24-3p, a regulator of the cellular response to DNA damage, is decreased in COPD, and decreased miR-24-3p increases susceptibility to emphysema through increased BIM and apoptosis. American Society for Clinical Investigation 2021-01-25 /pmc/articles/PMC7934877/ /pubmed/33290275 http://dx.doi.org/10.1172/jci.insight.134218 Text en © 2021 Nouws et al. http://creativecommons.org/licenses/by/4.0/ This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Research Article
Nouws, Jessica
Wan, Feng
Finnemore, Eric
Roque, Willy
Kim, So-Jin
Bazan, Isabel
Li, Chuan-xing
Skold, C. Magnus
Dai, Qile
Yan, Xiting
Chioccioli, Maurizio
Neumeister, Veronique
Britto, Clemente J.
Sweasy, Joann
Bindra, Ranjit
Wheelock, Åsa M.
Gomez, Jose L.
Kaminski, Naftali
Lee, Patty J.
Sauler, Maor
MicroRNA miR-24-3p reduces DNA damage responses, apoptosis, and susceptibility to chronic obstructive pulmonary disease
title MicroRNA miR-24-3p reduces DNA damage responses, apoptosis, and susceptibility to chronic obstructive pulmonary disease
title_full MicroRNA miR-24-3p reduces DNA damage responses, apoptosis, and susceptibility to chronic obstructive pulmonary disease
title_fullStr MicroRNA miR-24-3p reduces DNA damage responses, apoptosis, and susceptibility to chronic obstructive pulmonary disease
title_full_unstemmed MicroRNA miR-24-3p reduces DNA damage responses, apoptosis, and susceptibility to chronic obstructive pulmonary disease
title_short MicroRNA miR-24-3p reduces DNA damage responses, apoptosis, and susceptibility to chronic obstructive pulmonary disease
title_sort microrna mir-24-3p reduces dna damage responses, apoptosis, and susceptibility to chronic obstructive pulmonary disease
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7934877/
https://www.ncbi.nlm.nih.gov/pubmed/33290275
http://dx.doi.org/10.1172/jci.insight.134218
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