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Effects of airborne pollutants on mitochondrial DNA Methylation
Hyang‐Min Byun, Tommaso Panni, Valeria Motta, Lifang Hou, Francesco Nordio, Pietro Apostoli, Pier Alberto Bertazzi, Andrea Baccarelli
Particle and Fibre Toxicology · 2013 · ▲ 200 citations
Abstract
BACKGROUND: Mitochondria have small mitochondrial DNA (mtDNA) molecules independent from the nuclear DNA, a separate epigenetic machinery that generates mtDNA methylation, and are primary sources of oxidative-stress generation in response to exogenous environments. However, no study has yet investigated whether mitochondrial DNA methylation is sensitive to pro-oxidant environmental exposures. METHODS: We sampled 40 male participants (20 high-, 20 low-exposure) from each of three studies on airborne pollutants, including investigations of steel workers exposed to metal-rich particulate matter (measured as PM1) in Brescia, Italy (Study 1); gas-station attendants exposed to air benzene in Milan, Italy (Study 2); and truck drivers exposed to traffic-derived Elemental Carbon (EC) in Beijing, China (Study 3). We have measured DNA methylation from buffy coats of the participants. We measured methylation by bisulfite-Pyrosequencing in three mtDNA regions, i.e., the transfer RNA phenylalanine (MT-TF), 12S ribosomal RNA (MT-RNR1) gene and "D-loop" control region. All analyses were adjusted for age and smoking. RESULTS: In Study 1, participants with high metal-rich PM1 exposure showed higher MT-TF and MT-RNR1 methylation than low-exposed controls (difference = 1.41, P = 0.002); MT-TF and MT-RNR1 methylation was significantly associated with PM1 exposure (beta = 1.35, P = 0.025); and MT-RNR1 methylation was positively correlated with mtDNA copy number (r = 0.36; P = 0.02). D-loop methylation was not associated with PM1 exposure. We found no effects on mtDNA methylation from air benzene (Study 2) and traffic-derived EC exposure (Study 3). CONCLUSIONS: Mitochondrial MT-TF and MT-RNR1 DNA methylation was associated with metal-rich PM1 exposure and mtDNA copy number. Our results suggest that locus-specific mtDNA methylation is correlated to selected exposures and mtDNA damage. Larger studies are needed to validate our observations.
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- DOI
- 10.1186/1743-8977-10-18
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- 2026-07-30 MST
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APA
Byun, H., Panni, T., Motta, V., Hou, L., Nordio, F., Apostoli, P., Bertazzi, P.A., & Baccarelli, A. (2013). Effects of airborne pollutants on mitochondrial DNA Methylation. <em>Particle and Fibre Toxicology</em>. https://doi.org/10.1186/1743-8977-10-18
Vancouver
Byun H, Panni T, Motta V, Hou L, Nordio F, Apostoli P, et al. Effects of airborne pollutants on mitochondrial DNA Methylation. Particle and Fibre Toxicology. 2013. doi:10.1186/1743-8977-10-18.
BibTeX
@article{hyangmin2013Effect,
title = {Effects of airborne pollutants on mitochondrial DNA Methylation},
author = {Hyang‐Min Byun and Tommaso Panni and Valeria Motta and Lifang Hou and Francesco Nordio and Pietro Apostoli and Pier Alberto Bertazzi and Andrea Baccarelli},
journal = {Particle and Fibre Toxicology},
year = {2013},
doi = {10.1186/1743-8977-10-18},
}
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