首页> 美国卫生研究院文献>Frontiers in Neuroscience >DNA Methylation Profiling at Single-Base Resolution Reveals Gestational Folic Acid Supplementation Influences the Epigenome of Mouse Offspring Cerebellum
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DNA Methylation Profiling at Single-Base Resolution Reveals Gestational Folic Acid Supplementation Influences the Epigenome of Mouse Offspring Cerebellum

机译:DNA甲基化分析的单碱基分辨率揭示了妊娠叶酸补充影响小鼠后代小脑的表观基因组。

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摘要

It is becoming increasingly more evident that lifestyle, environmental factors, and maternal nutrition during gestation can influence the epigenome of the developing fetus and thus modulate the physiological outcome. Variations in the intake of maternal nutrients affecting one-carbon metabolism may influence brain development and exert long-term effects on the health of the progeny. In this study, we investigated whether supplementation with high maternal folic acid during gestation alters DNA methylation and gene expression in the cerebellum of mouse offspring. We used reduced representation bisulfite sequencing to analyze the DNA methylation profile at the single-base resolution level. The genome-wide DNA methylation analysis revealed that supplementation with higher maternal folic acid resulted in distinct methylation patterns (P < 0.05) of CpG and non-CpG sites in the cerebellum of offspring. Such variations of methylation and gene expression in the cerebellum of offspring were highly sex-specific, including several genes of the neuronal pathways. These findings demonstrate that alterations in the level of maternal folic acid during gestation can influence methylation and gene expression in the cerebellum of offspring. Such changes in the offspring epigenome may alter neurodevelopment and influence the functional outcome of neurologic and psychiatric diseases.
机译:越来越明显的是,怀孕期间的生活方式,环境因素和孕产妇营养会影响发育中的胎儿的表观基因组,从而调节生理结果。母体营养摄入量的变化会影响一碳代谢,可能会影响大脑发育,并对子代的健康产生长期影响。在这项研究中,我们调查了妊娠期补充高母体叶酸是否会改变小鼠后代小脑中的DNA甲基化和基因表达。我们使用简化表示的亚硫酸氢盐测序来分析单碱基分辨率水平的DNA甲基化谱。全基因组DNA甲基化分析表明,补充高水平的母体叶酸会导致后代小脑中CpG和非CpG位点的甲基化模式不同(P <0.05)。后代小脑中甲基化和基因表达的这种变化是高度性别特异性的,包括神经元途径的几个基因。这些发现表明,妊娠期间母体叶酸水平的改变可影响后代小脑中的甲基化和基因表达。后代表观基因组的这种变化可能会改变神经发育并影响神经系统和精神疾病的功能结局。

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