| Literature DB >> 30343628 |
Juan Jose Carmona1,2,3, Richard T Barfield4, Tommaso Panni5, Jamaji C Nwanaji-Enwerem1,6, Allan C Just7, John N Hutchinson8, Elena Colicino9, Stefan Karrasch5,10,11, Simone Wahl12, Sonja Kunze5,12, Nadereh Jafari13, Yinan Zheng14, Lifang Hou14, Dawn L DeMeo15, Augusto A Litonjua15, Pantel S Vokonas16, Annette Peters3,5, Xihong Lin8,17, Joel Schwartz3, Holger Schulz5,11, Andrea A Baccarelli3,18.
Abstract
DNA methylation is an epigenetic regulator of gene transcription, which has been found to be both metastable and variable within human cohort studies. Currently, few studies have been done to identify metastable DNA methylation biomarkers associated with longitudinal lung function decline in humans. The identification of such biomarkers is important for screening vulnerable populations. We hypothesized that quantifiable blood-based DNA methylation alterations would serve as metastable biomarkers of lung function decline and aging, which may help to discover new pathways and/or mechanisms related to pulmonary pathogenesis. Using linear mixed models, we performed an Epigenome Wide Association Study (EWAS) between DNA methylation at CpG dinucleotides and longitudinal lung function (FVC, FEV1, FEF25-75%) decline and aging with initial discovery in the Normative Aging Study, and replication in the Cooperative Health Research in the Region of Augsburg cohort. We identified two metastable epigenetic loci associated with either poor lung function and aging, cg05575921 (AHRR gene), or lung function independently of aging, cg06126421 (IER3 gene). These loci may inform basic mechanisms associated with pulmonary function, pathogenesis, and aging. Human epigenomic variation, may help explain features of lung function decline and related pathophysiology not attributable to DNA sequence alone, such as accelerated pulmonary decline in smokers, former smokers, and perhaps non-smokers. Our EWAS across two cohorts, therefore, will likely have implications for the human population, not just the elderly.Entities:
Keywords: Biomarker; DNA methylation; lung function decline; pulmonary function
Mesh:
Year: 2018 PMID: 30343628 PMCID: PMC6342072 DOI: 10.1080/15592294.2018.1529849
Source DB: PubMed Journal: Epigenetics ISSN: 1559-2294 Impact factor: 4.528