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RESEARCH PRODUCT
DNA methylation in childhood asthma
Mariona BustamanteForastiere FrancescoHenriette A. SmitPetter MowinckelMarjan KerkhofTari HaahtelaMartijn C. NawijnRaul Aguirre-gamboaDan MasonMihai G. NeteaCisca WijmengaRaf AzadVegard HovlandJohn WrightJosep M. AntóCilla SöderhällPieter Van Der VliesWilliam O.c.m. CooksonBianca Van RijkomLovisa E. ReiniusSoesma A JankipersadsingLeda ChatziLeda ChatziLeda ChatziNour BaïzErik MelénErik MelénErik MelénDaniela PortaOlena GruzievaJuha KereJuha KereIsabella Annesi-maesanoMaties TorrentCharles AuffrayCleo C. Van DiemenManolis KogevinasDavide GoriJohann PelletJose Ramon BilbaoHarri AleniusHarri AleniusGöran PershagenSabrina LlopMiriam F. MoffattNathanaël LemonnierNathanaël LemonnierAshok KumarAshok KumarAshok KumarSimon Kebede MeridNanna FyhrquistNanna FyhrquistStephane BallereauStephane BallereauTiina LaatikainenTiina LaatikainenCheng-jian XuJohan C. De JongsteMarc Jan BonderJudith Garcia-aymerichKarin C. Lødrup CarlsenKarin C. Lødrup CarlsenJ SunyerMikel BasterrecheaDario GrecoYang LiJean BousquetJean BousquetUlrike GehringCatherine LapriseMaria Pia FantiniRosemary R. C. MceachanBert BrunekreefStefano GuerraGerard H. KoppelmanCornelis J. VermeulenAndréanne MorinCarmen IñiguezKai-håkon CarlsenKai-håkon Carlsensubject
Male0301 basic medicineAllergyCytotoxicT-Lymphocytes[SDV]Life Sciences [q-bio]Respiratory Systemlnfectious Diseases and Global Health Radboud Institute for Molecular Life Sciences [Radboudumc 4]CHILDRENImmunoglobulin EEpigenesis GeneticChildPOPULATIONeducation.field_of_studybiologyMethylation3. Good healthCpG siteChild PreschoolDNA methylationFemaleBIOS ConsortiumLife Sciences & BiomedicinePulmonary and Respiratory MedicinePopulationPHENOTYPESIMMUNITY03 medical and health sciencesCritical Care MedicineGeneticGeneral & Internal MedicinemedicineHumansCOHORTEpigeneticsIGEEXPOSUREPreschooleducationAsthmaScience & Technologybusiness.industryRHINITISDNADNA Methylationmedicine.diseaseAsthmaEosinophils030104 developmental biology3121 General medicine internal medicine and other clinical medicineImmunologybiology.proteinGENOMEWIDE ASSOCIATIONCpG IslandsbusinessCOLLECTIONT-Lymphocytes CytotoxicEpigenesisGenome-Wide Association Studydescription
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<1·14 × 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). We are grateful to all children and families that participated in this study. We especially thank Professsor Dirkje Postma for helpful comments and support during the course of this study. The Mechanisms of the Development of ALLergy (MeDALL) EU project was supported by the seventh Framework programme (grant agreement number 261357). The Biobank-Based Integrative Omics Studies (BIOS) Consortium is funded by BBMRI-NL, a research infrastructure financed by the Dutch government (NWO 184.021.007).
year | journal | country | edition | language |
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2018-05-01 | The Lancet. Respiratory Medicine |