DNA methylation in childhood asthma: an epigenome-wide meta-analysis

Archive ouverte

Gori, Davide | Porta, Daniela | Iñiguez, Carmen | Bilbao, Jose Ramon | Kogevinas, Manolis | Wright, John | Brunekreef, Bert | Kere, Juha | Nawijn, Martijn C. | Annesi-Maesano, Isabella | Sunyer, Jordi | Melén, Erik | Koppelman, Gerard H. | Xu, Cheng-Jian | Söderhäll, Cilla | Bustamante, Mariona | Baïz, Nour | Gruzieva, Olena | Gehring, Ulrike | Mason, Dan | Chatzi, Leda | Basterrechea, Mikel | Llop, Sabrina | Torrent, Maties | Forastiere, Francesco | Fantini, Maria Pia | Carlsen, Karin C. Lødrup | Haahtela, Tari | Morin, Andréanne | Kerkhof, Marjan | Merid, Simon Kebede | Rijkom, Bianca, Van | Jankipersadsing, Soesma A. | Bonder, Marc Jan | Ballereau, Stephane | Vermeulen, Cornelis J. | Aguirre-Gamboa, Raul | Jongste, Johan C., De | Smit, Henriette A. | Kumar, Ashish | Pershagen, Göran | Guerra, Stefano | Garcia-Aymerich, Judith | Greco, Dario | Reinius, Lovisa | Mceachan, Rosemary R. C. | Azad, Raf | Hovland, Vegard | Mowinckel, Petter | Alenius, Harri | Fyhrquist, Nanna | Lemonnier, Nathanaël | Pellet, Johann | Auffray, Charles | Consortium, Bios | Vlies, Pieter, van Der | Diemen, Cleo C., Van | Li, Yang | Wijmenga, Cisca | Netea, Mihai G. | Moffatt, Miriam F. | Cookson, William O. C. M. | Anto, Josep M. | Bousquet, Jean | Laatikainen, Tiina | Laprise, Catherine | Carlsen, Kai-H\r Akon

Edité par CCSD ; Elsevier -

International audience. BACKGROUND: DNA methylation profiles associated with childhood asthma might provide novel insights into disease pathogenesis. We did an epigenome-wide association study to assess methylation profiles associated with childhood asthma. METHODS: We did a large-scale epigenome-wide association study (EWAS) within the Mechanisms of the Development of ALLergy (MeDALL) project. We examined epigenome-wide methylation using Illumina Infinium Human Methylation450 BeadChips (450K) in whole blood in 207 children with asthma and 610 controls at age 4-5 years, and 185 children with asthma and 546 controls at age 8 years using a cross-sectional case-control design. After identification of differentially methylated CpG sites in the discovery analysis, we did a validation study in children (4-16 years; 247 cases and 2949 controls) from six additional European cohorts and meta-analysed the results. We next investigated whether replicated CpG sites in cord blood predict later asthma in 1316 children. We subsequently investigated cell-type-specific methylation of the identified CpG sites in eosinophils and respiratory epithelial cells and their related gene-expression signatures. We studied cell-type specificity of the asthma association of the replicated CpG sites in 455 respiratory epithelial cell samples, collected by nasal brushing of 16-year-old children as well as in DNA isolated from blood eosinophils (16 with asthma, eight controls [age 2-56 years]) and compared this with whole-blood DNA samples of 74 individuals with asthma and 93 controls (age 1-79 years). Whole-blood transcriptional profiles associated with replicated CpG sites were annotated using RNA-seq data of subsets of peripheral blood mononuclear cells sorted by fluorescence-activated cell sorting. FINDINGS: 27 methylated CpG sites were identified in the discovery analysis. 14 of these CpG sites were replicated and passed genome-wide significance (p\textless1\textperiodcentered14 \texttimes 10-7) after meta-analysis. Consistently lower methylation levels were observed at all associated loci across childhood from age 4 to 16 years in participants with asthma, but not in cord blood at birth. All 14 CpG sites were significantly associated with asthma in the second replication study using whole-blood DNA, and were strongly associated with asthma in purified eosinophils. Whole-blood transcriptional signatures associated with these CpG sites indicated increased activation of eosinophils, effector and memory CD8 T cells and natural killer cells, and reduced number of naive T cells. Five of the 14 CpG sites were associated with asthma in respiratory epithelial cells, indicating cross-tissue epigenetic effects. INTERPRETATION: Reduced whole-blood DNA methylation at 14 CpG sites acquired after birth was strongly associated with childhood asthma. These CpG sites and their associated transcriptional profiles indicate activation of eosinophils and cytotoxic T cells in childhood asthma. Our findings merit further investigations of the role of epigenetics in a clinical context. FUNDING: EU and the Seventh Framework Programme (the MeDALL project).

Consulter en ligne

Suggestions

Du même auteur

Shared DNA methylation signatures in childhood allergy: The MeDALL study

Archive ouverte | Xu, Cheng-Jian | CCSD

International audience. Background: Differential DNA methylation associated with allergy might provide novel insights into the shared or unique etiology of asthma, rhinitis, and eczema.Objective: We sought to identi...

DNA Methylation in Newborns and Maternal Smoking in Pregnancy: Genome-wide Consortium Meta-analysis

Archive ouverte | Joubert, Bonnie R. | CCSD

International audience. Epigenetic modifications, including DNA methylation, represent a potential mechanism for environmental impacts on human disease. Maternal smoking in pregnancy remains an important public heal...

Mechanisms of the Development of Allergy (MeDALL): Introducing novel concepts in allergy phenotypes

Archive ouverte | Antó, Josep | CCSD

International audience. Asthma, rhinitis, and eczema are complex diseases with multiple genetic and environmental factors interlinked through IgE-associated and non-IgE-associated mechanisms. Mechanisms of the Devel...

Chargement des enrichissements...