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Lung mitochondrial DNA copy number, inflammatory biomarkers, gene transcription and gene methylation in vapers and smokers

BACKGROUND: Mitochondrial DNA copy number (mtCN) maintains cellular function and homeostasis, and is linked to nuclear DNA methylation and gene expression. Increased mtCN in the blood is associated with smoking and respiratory disease, but has received little attention for target organ effects for s...

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Autores principales: Mori, Kellie M., McElroy, Joseph P., Weng, Daniel Y., Chung, Sangwoon, Fadda, Paolo, Reisinger, Sarah A., Ying, Kevin L., Brasky, Theodore M., Wewers, Mark D., Freudenheim, Jo L., Shields, Peter G., Song, Min-Ae
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9561685/
https://www.ncbi.nlm.nih.gov/pubmed/36215783
http://dx.doi.org/10.1016/j.ebiom.2022.104301
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author Mori, Kellie M.
McElroy, Joseph P.
Weng, Daniel Y.
Chung, Sangwoon
Fadda, Paolo
Reisinger, Sarah A.
Ying, Kevin L.
Brasky, Theodore M.
Wewers, Mark D.
Freudenheim, Jo L.
Shields, Peter G.
Song, Min-Ae
author_facet Mori, Kellie M.
McElroy, Joseph P.
Weng, Daniel Y.
Chung, Sangwoon
Fadda, Paolo
Reisinger, Sarah A.
Ying, Kevin L.
Brasky, Theodore M.
Wewers, Mark D.
Freudenheim, Jo L.
Shields, Peter G.
Song, Min-Ae
author_sort Mori, Kellie M.
collection PubMed
description BACKGROUND: Mitochondrial DNA copy number (mtCN) maintains cellular function and homeostasis, and is linked to nuclear DNA methylation and gene expression. Increased mtCN in the blood is associated with smoking and respiratory disease, but has received little attention for target organ effects for smoking or electronic cigarette (EC) use. METHODS: Bronchoscopy biospecimens from healthy EC users, smokers (SM), and never-smokers (NS) were assessed for associations of mtCN with mtDNA point mutations, immune responses, nuclear DNA methylation and gene expression using linear regression. Ingenuity pathway analysis was used for enriched pathways. GEO and TCGA respiratory disease datasets were used to explore the involvement of mtCN-associated signatures. FINDINGS: mtCN was higher in SM than NS, but EC was not statistically different from either. Overall there was a negative association of mtCN with a point mutation in the D-loop but no difference within groups. Positive associations of mtCN with IL-2 and IL-4 were found in EC only. mtCN was significantly associated with 71,487 CpGs and 321 transcripts. 263 CpGs were correlated with nearby transcripts for genes enriched in the immune system. EC-specific mtCN-associated-CpGs and genes were differentially expressed in respiratory diseases compared to controls, including genes involved in cellular movement, inflammation, metabolism, and airway hyperresponsiveness. INTERPRETATION: Smoking may elicit a lung toxic effect through mtCN. While the impact of EC is less clear, EC-specific associations of mtCN with nuclear biomarkers suggest exposure may not be harmless. Further research is needed to understand the role of smoking and EC-related mtCN on lung disease risks. FUNDING: The National Cancer Institute, the National Heart, Lung, and Blood Institute, the Food and Drug Administration Center for Tobacco Products, the National Center For Advancing Translational Sciences, and Pelotonia Intramural Research Funds.
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spelling pubmed-95616852022-10-15 Lung mitochondrial DNA copy number, inflammatory biomarkers, gene transcription and gene methylation in vapers and smokers Mori, Kellie M. McElroy, Joseph P. Weng, Daniel Y. Chung, Sangwoon Fadda, Paolo Reisinger, Sarah A. Ying, Kevin L. Brasky, Theodore M. Wewers, Mark D. Freudenheim, Jo L. Shields, Peter G. Song, Min-Ae eBioMedicine Articles BACKGROUND: Mitochondrial DNA copy number (mtCN) maintains cellular function and homeostasis, and is linked to nuclear DNA methylation and gene expression. Increased mtCN in the blood is associated with smoking and respiratory disease, but has received little attention for target organ effects for smoking or electronic cigarette (EC) use. METHODS: Bronchoscopy biospecimens from healthy EC users, smokers (SM), and never-smokers (NS) were assessed for associations of mtCN with mtDNA point mutations, immune responses, nuclear DNA methylation and gene expression using linear regression. Ingenuity pathway analysis was used for enriched pathways. GEO and TCGA respiratory disease datasets were used to explore the involvement of mtCN-associated signatures. FINDINGS: mtCN was higher in SM than NS, but EC was not statistically different from either. Overall there was a negative association of mtCN with a point mutation in the D-loop but no difference within groups. Positive associations of mtCN with IL-2 and IL-4 were found in EC only. mtCN was significantly associated with 71,487 CpGs and 321 transcripts. 263 CpGs were correlated with nearby transcripts for genes enriched in the immune system. EC-specific mtCN-associated-CpGs and genes were differentially expressed in respiratory diseases compared to controls, including genes involved in cellular movement, inflammation, metabolism, and airway hyperresponsiveness. INTERPRETATION: Smoking may elicit a lung toxic effect through mtCN. While the impact of EC is less clear, EC-specific associations of mtCN with nuclear biomarkers suggest exposure may not be harmless. Further research is needed to understand the role of smoking and EC-related mtCN on lung disease risks. FUNDING: The National Cancer Institute, the National Heart, Lung, and Blood Institute, the Food and Drug Administration Center for Tobacco Products, the National Center For Advancing Translational Sciences, and Pelotonia Intramural Research Funds. Elsevier 2022-10-07 /pmc/articles/PMC9561685/ /pubmed/36215783 http://dx.doi.org/10.1016/j.ebiom.2022.104301 Text en © 2022 The Author(s) https://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 Articles
Mori, Kellie M.
McElroy, Joseph P.
Weng, Daniel Y.
Chung, Sangwoon
Fadda, Paolo
Reisinger, Sarah A.
Ying, Kevin L.
Brasky, Theodore M.
Wewers, Mark D.
Freudenheim, Jo L.
Shields, Peter G.
Song, Min-Ae
Lung mitochondrial DNA copy number, inflammatory biomarkers, gene transcription and gene methylation in vapers and smokers
title Lung mitochondrial DNA copy number, inflammatory biomarkers, gene transcription and gene methylation in vapers and smokers
title_full Lung mitochondrial DNA copy number, inflammatory biomarkers, gene transcription and gene methylation in vapers and smokers
title_fullStr Lung mitochondrial DNA copy number, inflammatory biomarkers, gene transcription and gene methylation in vapers and smokers
title_full_unstemmed Lung mitochondrial DNA copy number, inflammatory biomarkers, gene transcription and gene methylation in vapers and smokers
title_short Lung mitochondrial DNA copy number, inflammatory biomarkers, gene transcription and gene methylation in vapers and smokers
title_sort lung mitochondrial dna copy number, inflammatory biomarkers, gene transcription and gene methylation in vapers and smokers
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9561685/
https://www.ncbi.nlm.nih.gov/pubmed/36215783
http://dx.doi.org/10.1016/j.ebiom.2022.104301
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