Tobacco smoking-associated genome-wide DNA methylation changes in the EPIC study

S Ambatipudi, C Cuenin, H Hernandez-Vargas… - …, 2016 - Future Medicine
Epigenomics, 2016Future Medicine
Aim: Epigenetic changes may occur in response to environmental stressors, and an altered
epigenome pattern may represent a stable signature of environmental exposure. Materials &
methods: Here, we examined the potential of DNA methylation changes in 910
prediagnostic peripheral blood samples as a marker of exposure to tobacco smoke in a
large multinational cohort. Results: We identified 748 CpG sites that were differentially
methylated between smokers and nonsmokers, among which we identified novel regionally …
Aim: Epigenetic changes may occur in response to environmental stressors, and an altered epigenome pattern may represent a stable signature of environmental exposure. Materials & methods: Here, we examined the potential of DNA methylation changes in 910 prediagnostic peripheral blood samples as a marker of exposure to tobacco smoke in a large multinational cohort. Results: We identified 748 CpG sites that were differentially methylated between smokers and nonsmokers, among which we identified novel regionally clustered CpGs associated with active smoking. Importantly, we found a marked reversibility of methylation changes after smoking cessation, although specific genes remained differentially methylated up to 22 years after cessation. Conclusion: Our study has comprehensively cataloged the smoking-associated DNA methylation alterations and showed that these alterations are reversible after smoking cessation.
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