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首页> 外文期刊>Epigenetics: official journal of the DNA Methylation Society >Fetal DNA hypermethylation in tight junction pathway is associated with neural tube defects: A genome-wide DNA methylation analysis
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Fetal DNA hypermethylation in tight junction pathway is associated with neural tube defects: A genome-wide DNA methylation analysis

机译:紧密结途径中的胎儿DNA高甲基化与神经管缺陷有关:基因组宽的DNA甲基化分析

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摘要

Neural tube defects (NTDs) are a spectrum of severe congenital malformations of fusion failure of the neural tube during early embryogenesis. Evidence on aberrant DNA methylation in NTD development remains scarce, especially when exposure to environmental pollutant is taken into consideration. DNA methylation profiling was quantified using the Infinium HumanMethylation450 array in neural tissues from 10 NTD cases and 8 non-malformed controls (stage 1). Subsequent validation was performed using a Sequenom MassARRAY system in neural tissues from 20 NTD cases and 20 non-malformed controls (stage 2). Correlation analysis of differentially methylated CpG sites in fetal neural tissues and polycyclic aromatic hydrocarbons concentrations in fetal neural tissues and maternal serum was conducted. Differentially methylated CpG sites of neural tissues were further validated in fetal mice with NTDs induced by benzo(a)pyrene given to pregnant mice. Differentially hypermethylated CpG sites in neural tissues from 17 genes and 6 pathways were identified in stage 1. Subsequently, differentially hypermethylated CpG sites in neural tissues from 6 genes (BDKRB2, CTNNA1, CYFIP2, MMP7, MYH2, and TIAM2) were confirmed in stage 2. Correlation analysis showed that methylated CpG sites in CTNNA1 and MYH2 from NTD cases were positively correlated to polycyclic aromatic hydrocarbon level in fetal neural tissues and maternal serum. The correlation was confirmed in NTD-affected fetal mice that were exposed to benzo(a)pyrene in utero. In conclusion, hypermethylation of the CTNNA1 and MYH2 genes in tight junction pathway is associated with the risk for NTDs, and the DNA methylation aberration may be caused by exposure to benzo(a)pyrene.
机译:神经管缺陷(NTDS)是早期胚胎发生期间神经管的熔化失效的严重先天性畸形的光谱。对NTD发育中异常DNA甲基化的证据仍然是稀缺的,特别是考虑到环境污染物的暴露时。使用来自10个NTD病例的神经组织中的人甲基化450阵列和8例非畸形对照(第1阶段)来定量DNA甲基化分析。随后使用来自20个NTD病例的神经组织中的蛋白质massArray系统和20例非畸形对照(第2阶段)进行后续验证。进行胎儿神经组织中差异甲基化CpG位点的相关分析,并进行胎儿神经组织和母血清中的多环芳烃浓度。在胎儿小鼠中进一步验证了胎儿小鼠的差异甲基化CpG位点,所述胎儿小鼠用苯佐(A)芘诱导的NTDS给予孕妇。从17个基因和6阶段鉴定来自17个基因和6个途径的神经组织中的差异上甲基化CpG位点。随后,在第2阶段确认了来自6个基因的神经组织中的差异高甲基化CpG位点(BDKRB2,CTNNA1,CYFIP2,MMP7,MYH2和TIAM2) 。相关性分析表明,NTD病例中CTNNA1和MyH2中的甲基化CPG位点与胎儿神经组织和母体血清中的多环芳烃水平正相关。在NTD受影响的胎儿小鼠中证实了相关性,所述胎儿小鼠暴露于UTETO中的苯并(A)芘。总之,紧密结途径中CTNNA1和MyH2基因的高甲基化与NTDS的风险有关,DNA甲基化畸变可能由暴露于苯并(A)芘。

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