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首页> 外文期刊>The FASEB Journal >Genome-wide DNA methylation profiling identifies a folate-sensitive region of differential methylation upstream of ZFP57-imprinting regulator in humans
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Genome-wide DNA methylation profiling identifies a folate-sensitive region of differential methylation upstream of ZFP57-imprinting regulator in humans

机译:全基因组 DNA 甲基化谱可鉴定人类 ZFP57 印迹调节因子上游的叶酸敏感差异甲基化区域

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摘要

Folate intake during pregnancy may affect the regulation of DNA methylation during fetal development. The genomic regions in the offspring that may be sensitive to folate exposure during in utero development have not been characterized. Using genome-scale profiling, we investigated DNA methylation in 2 immune cell types (CD4+and antigen-presenting cells) isolated from neonatal cord blood, selected on the basis of in utero folate exposure. High-folate (HF; n=11) and low-folate (LF; n=12) groups were selected from opposite extremes of maternal serum folate levels measured in the last trimester of pregnancy. A comparison of these groups revealed differential methylation at 7 regions across the genome. By far, the biggest effect observed was hypomethylation of a 923 bp region 3 kb upstream of the ZFP57 transcript, a regulator of DNA methylation during development, observed in both cell types. Levels of H3/H4 acetylation at ZFP57 promoter and ZFP57 mRNA expression were higher in CD4+cells in the HF group relative to the LF group. Hypomethylation at this region was replicated in an independent sample set. These data suggest that exposure to folate has effects on the regulation of DNA methylation during fetal development, and this may be important for health and disease.
机译:怀孕期间叶酸的摄入可能会影响胎儿发育过程中DNA甲基化的调节。后代中在子宫发育过程中可能对叶酸暴露敏感的基因组区域尚未表征。使用基因组规模的分析,我们研究了从新生儿脐带血中分离的 2 种免疫细胞类型(CD4+ 和抗原呈递细胞)的 DNA 甲基化,这些细胞类型是在子宫内叶酸暴露的基础上选择的。高叶酸组(HF;n=11)和低叶酸组(LF;n=12)选自妊娠最后三个月测量的母体血清叶酸水平的相反极端值。对这些组的比较揭示了基因组中 7 个区域的差异甲基化。到目前为止,观察到的最大影响是ZFP57转录本上游3 kb处的923 bp区域的低甲基化,ZFP57转录本是发育过程中DNA甲基化的调节因子,在两种细胞类型中都观察到。与LF组相比,HF组CD4+细胞的ZFP57启动子H3/H4乙酰化水平和ZFP57 mRNA表达水平更高。该区域的低甲基化在独立样本集中复制。这些数据表明,暴露于叶酸对胎儿发育过程中DNA甲基化的调节有影响,这可能对健康和疾病很重要。

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