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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >DNA Methylation and Expression Patterns of Selected Genes in First-Trimester Placental Tissue from Pregnancies with Small-for-Gestational-Age Infants at Birth
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DNA Methylation and Expression Patterns of Selected Genes in First-Trimester Placental Tissue from Pregnancies with Small-for-Gestational-Age Infants at Birth

机译:小胎龄婴儿出生时妊娠的前三个月胎盘组织中的DNA甲基化和所选基因的表达模式

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Variations in DNA methylation levels in the placenta are thought to influence gene expression and are associated with complications of pregnancy, like fetal growth restriction (FGR). The most important cause for FGR is placental dysfunction. Here, we examined whether changes in DNA methylation, followed by gene expression changes, are mechanistically involved in the etiology of FGR. In this retrospective case-control study, we examined the association between small-forgestational-age (SGA) children and both DNA methylation and gene expression levels of the genes WNT2, IGF2/H19, SERPI-NA3, HERVWE1, and PPARG in first-trimester placental tissue. We also examined the repetitive element LINE-1. These candidate genes have been reported in the literature to be associated with SGA. We used first-trimester placental tissue from chorionic villus biopsies. A total of 35 SGA children (with a birth weight below the 10th percentile) were matched to 70 controls based on their gestational age. DNA methylation levels were analyzed by pyrosequencing and mRNA levels were analyzed by real-time PCR. None of the average DNA methylation levels, measured for each gene, showed a significant difference between SGA placental tissue compared to control tissue. However, hypermethylation of WNT2 was detected on two CpG positions in SGA. This was not associated with changes in gene expression. Apart from two CpG positions of the WNT2 gene, in early placenta samples, no evident changes in DNA methylation or expression were found. This indicates that the already reported changes in term placenta are not present in the early placenta, and therefore must arise after the first trimester.
机译:胎盘中DNA甲基化水平的变化被认为会影响基因表达,并与妊娠并发症(如胎儿生长受限(FGR))相关。 FGR的最重要原因是胎盘功能障碍。在这里,我们检查了DNA甲基化的变化以及随后基因表达的变化是否在机制上与FGR的病因有关。在这项回顾性病例对照研究中,我们检查了小胎龄(SGA)儿童与DNA甲基化和WNT2,IGF2 / H19,SERPI-NA3,HERVWE1和PPARG基因的基因表达水平之间的关联,妊娠中期胎盘组织。我们还研究了重复元素LINE-1。这些候选基因在文献中已有报道与SGA有关。我们使用了绒毛膜活检的早孕胎盘组织。根据他们的胎龄,将35名SGA儿童(出生体重低于第10个百分位)与70名对照进行配对。通过焦磷酸测序分析DNA甲基化水平,并通过实时PCR分析mRNA水平。与对照组织相比,每个基因测得的平均DNA甲基化水平均未显示SGA胎盘组织之间有显着差异。但是,在SGA中的两个CpG位置检测到WNT2的甲基化过高。这与基因表达的改变无关。除了WNT2基因的两个CpG位置外,在早期胎盘样品中,未发现DNA甲基化或表达的明显变化。这表明早孕期胎盘中不存在已经报道的足月胎盘变化,因此必须在孕早期后出现。

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