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PMID: 25482056 已发表 · ppublish 英语

Fetal lung and placental methylation is associated with in utero nicotine exposure.

Epigenetics ·第 9 卷 ·第 11 期 ·2015-08-03

Chhabra Divya, Sharma Sunita, Kho Alvin T, Gaedigk Roger, Vyhlidal Carrie A, Leeder J Steven, Morrow Jarrett, Carey Vincent J, Weiss Scott T, Tantisira Kelan G, DeMeo Dawn L

摘要

In utero smoke exposure has been shown to have detrimental effects on lung function and to be associated with persistent wheezing and asthma in children. One potential mechanism of IUS effects could be alterations in DNA methylation, which may have life-long implications. The goal of this study was to examine the association between DNA methylation and nicotine exposure in fetal lung and placental tissue in early development; nicotine exposure in this analysis represents a likely surrogate for in-utero smoke. We performed an epigenome-wide analysis of DNA methylation in fetal lung tissue (n = 85, 41 smoke exposed (48%), 44 controls) and the corresponding placental tissue samples (n = 80, 39 smoke exposed (49%), 41 controls) using the Illumina HumanMethylation450 BeadChip array. Differential methylation analyses were conducted to evaluate the variation associated with nicotine exposure. The most significant CpG sites in the fetal lung analysis mapped to the PKP3 (P = 2.94 × 10(-03)), ANKRD33B (P = 3.12 × 10(-03)), CNTD2 (P = 4.9 × 10(-03)) and DPP10 (P = 5.43 × 10(-03)) genes. In the placental methylome, the most significant CpG sites mapped to the GTF2H2C and GTF2H2D genes (P = 2.87 × 10(-06) - 3.48 × 10(-05)). One hundred and one unique CpG sites with P-values < 0.05 were concordant between lung and placental tissue analyses. Gene Set Enrichment Analysis demonstrated enrichment of specific disorders, such as asthma and immune disorders. Our findings demonstrate an association between in utero nicotine exposure and variable DNA methylation in fetal lung and placental tissues, suggesting a role for DNA methylation variation in the fetal origins of chronic diseases.

关键词
CHR chromosome GTF2H2C General transcription factor IIH polypeptide 2C GTF2H2D General transcription factor IIH polypeptide 2D IUS in utero smoke JAK2 Janus Kinase 2 KEGG Kyoto Encyclopedia of Genes and Genomes asthma developmental biology epigenomics nicotine and DNA methylation smoking
文献信息
期刊
Epigenetics
期刊简称
Epigenetics
发表日期
2015-08-03
收录日期
2014-12-19
更新日期
2016-10-19
语言
英语
国家/地区
United States
NLM ID
101265293
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