Rationale: Methylation integrates factors present at birth and modifiable across the lifespan that can influence pulmonary function. Studies are limited in scope and replication. Objectives: To conduct large-scale epigenome-wide meta-analyses of blood DNA methylation and pulmonary function. Methods: Twelve cohorts analyzed associations of methylation at cytosine-phosphate-guanine probes (CpGs), using Illumina 450K or EPIC/850K arrays, with FEV1, FVC, and FEV1/FVC. We performed multiancestry epigenome-wide meta-analyses (total of 17,503 individuals; 14,761 European, 2,549 African, and 193 Hispanic/Latino ancestries) and interpreted results using integrative epigenomics. Measurements and Main Results: We identified 1,267 CpGs (1,042 genes) di...
The genetic regulation of the human epigenome is not fully appreciated. Here we describe the effects...
RATIONALE: Airway macrophages (AMs) are key regulators of the lung environment and are implicated in...
Background Genetic and environmental factors play a role in the development of COPD. The epigenome, ...
Rationale: Methylation integrates factors present at birth and modifiable across the lifespan that c...
RATIONALE: Methylation integrates factors present at birth and modifiable across life that can influ...
Rationale: Methylation integrates factors present at birth and modifiable across the lifespan that c...
Rationale: Methylation integrates factors present at birth and modifiable across the lifespan that c...
RATIONALE: Methylation integrates factors present at birth and modifiable across life that can influ...
Previous reports link differential DNA methylation (DNAme) to environmental exposures which are asso...
Background Previous studies have determined the epigenetic association between DNA methylation and p...
Background: Genetic and environmental factors play a role in the development of COPD. The epigenome,...
Epigenetic variations in peripheral blood have potential as biomarkers for disease. This systematic ...
BACKGROUND: DNA methylation is a key epigenetic modification that can directly affect gene regulatio...
DNA methylation is an epigenetic regulator of gene transcription, which has been found to be both me...
DNA methylation is an epigenetic regulator of gene transcription, which has been found to be both me...
The genetic regulation of the human epigenome is not fully appreciated. Here we describe the effects...
RATIONALE: Airway macrophages (AMs) are key regulators of the lung environment and are implicated in...
Background Genetic and environmental factors play a role in the development of COPD. The epigenome, ...
Rationale: Methylation integrates factors present at birth and modifiable across the lifespan that c...
RATIONALE: Methylation integrates factors present at birth and modifiable across life that can influ...
Rationale: Methylation integrates factors present at birth and modifiable across the lifespan that c...
Rationale: Methylation integrates factors present at birth and modifiable across the lifespan that c...
RATIONALE: Methylation integrates factors present at birth and modifiable across life that can influ...
Previous reports link differential DNA methylation (DNAme) to environmental exposures which are asso...
Background Previous studies have determined the epigenetic association between DNA methylation and p...
Background: Genetic and environmental factors play a role in the development of COPD. The epigenome,...
Epigenetic variations in peripheral blood have potential as biomarkers for disease. This systematic ...
BACKGROUND: DNA methylation is a key epigenetic modification that can directly affect gene regulatio...
DNA methylation is an epigenetic regulator of gene transcription, which has been found to be both me...
DNA methylation is an epigenetic regulator of gene transcription, which has been found to be both me...
The genetic regulation of the human epigenome is not fully appreciated. Here we describe the effects...
RATIONALE: Airway macrophages (AMs) are key regulators of the lung environment and are implicated in...
Background Genetic and environmental factors play a role in the development of COPD. The epigenome, ...