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Degree of methylation of ZAC1 (PLAGL1) is associated with prenatal and post-natal growth in healthy infants of the EDEN mother child cohort

机译:ZAC1(PLAGL1)的甲基化程度与EDEN母亲儿童队列中健康婴儿的产前和产后生长有关

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摘要

The ZAC1 gene, mapped to the 6q24 region, is part of a network of co-regulated imprinted genes involved in the control of embryonic growth. Loss of methylation at the ZAC1 differentially methylated region (DMR) is associated with transient neonatal diabetes mellitus, a developmental disorder involving growth retardation and diabetes in the first weeks of post-natal life. We assessed whether the degree of methylation of the ZAC1 DMR in leukocytes DNA extracted from cord blood is associated with fetal, birth and post-natal anthropometric measures or with C-peptide concentrations in cord serum. We also searched for an influence of dietary intake and maternal parameters on ZAC1 DMR methylation. We found positive correlations between the ZAC1 DMR methylation index (MI) and estimated fetal weight (EFW) at 32 weeks of gestation, weight at birth and weight at one year of age (respectively, r = 0.15, 0.09, 0.14; P values = 0.01, 0.15, 0.03). However, there were no significant correlations between the ZAC1 DMR MI and cord blood C-peptide levels. Maternal intakes of alcohol and of vitamins B2 were positively correlated with ZAC1 DMR methylation (respectively, r = 0.2 and 0.14; P = 0.004 and 0.04). The influence of ZAC1 seems to start in the second half of pregnancy and continue at least until the first year of life. The maternal environment also appears to contribute to the regulation of DNA methylation.
机译:映射到6q24区域的ZAC1基因是参与胚胎生长控制的共同调控的印迹基因网络的一部分。 ZAC1甲基化差异区(DMR)的甲基化丧失与短暂性新生儿糖尿病有关,这是一种在出生后最初几周内涉及发育迟缓和糖尿病的发育障碍。我们评估了从脐带血中提取的白细胞DNA中ZAC1 DMR的甲基化程度是否与胎儿,出生和出生后的人体测量学指标或脐带血清中C肽浓度相关。我们还搜索了饮食摄入量和母体参数对ZAC1 DMR甲基化的影响。我们发现ZAC1 DMR甲基化指数(MI)与妊娠32周时的估计胎儿体重(EFW),出生时的体重和一岁时的体重之间呈正相关(r = 0.15、0.09、0.14; P值= 0.01、0.15、0.03)。但是,ZAC1 DMR MI与脐带血C肽水平之间无显着相关性。孕妇摄入的酒精和维生素B2与ZAC1 DMR甲基化呈正相关(分别为r = 0.2和0.14; P = 0.004和0.04)。 ZAC1的影响似乎始于怀孕的下半年,并且至少持续到生命的第一年。产妇环境似乎也有助于调节DNA甲基化。

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