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PMID: 26861414 已发表 · epublish 英语

Maternal plasma folate impacts differential DNA methylation in an epigenome-wide meta-analysis of newborns.

Nature communications ·第 7 卷 ·2016-06-27

Joubert Bonnie R, den Dekker Herman T, Felix Janine F, Bohlin Jon, Ligthart Symen, Beckett Emma, Tiemeier Henning, van Meurs Joyce B, Uitterlinden Andre G, Hofman Albert, Håberg Siri E, Reese Sarah E, Peters Marjolein J, Andreassen Bettina Kulle, Steegers Eric A P, Nilsen Roy M, Vollset Stein E, Midttun Øivind, Ueland Per M, Franco Oscar H, Dehghan Abbas, de Jongste Johan C, Wu Michael C, Wang Tianyuan, Peddada Shyamal D, Jaddoe Vincent W V, Nystad Wenche, Duijts Liesbeth, London Stephanie J

摘要

Folate is vital for fetal development. Periconceptional folic acid supplementation and food fortification are recommended to prevent neural tube defects. Mechanisms whereby periconceptional folate influences normal development and disease are poorly understood: epigenetics may be involved. We examine the association between maternal plasma folate during pregnancy and epigenome-wide DNA methylation using Illumina's HumanMethyl450 Beadchip in 1,988 newborns from two European cohorts. Here we report the combined covariate-adjusted results using meta-analysis and employ pathway and gene expression analyses. Four-hundred forty-three CpGs (320 genes) are significantly associated with maternal plasma folate levels during pregnancy (false discovery rate 5%); 48 are significant after Bonferroni correction. Most genes are not known for folate biology, including APC2, GRM8, SLC16A12, OPCML, PRPH, LHX1, KLK4 and PRSS21. Some relate to birth defects other than neural tube defects, neurological functions or varied aspects of embryonic development. These findings may inform how maternal folate impacts the developing epigenome and health outcomes in offspring.

文献信息
期刊
Nature communications
期刊简称
Nat Commun
发表日期
2016-06-27
收录日期
2016-02-10
更新日期
2016-12-03
语言
英语
国家/地区
England
NLM ID
101528555
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