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Sodium Fluoride Affects DNA Methylation of Imprinted Genes in Mouse Early Embryos

机译:氟化钠影响小鼠早期胚胎中印迹基因的DNA甲基化。

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Fluorine is reported to affect embryonic development, but the underlining mechanism is unclear. The modification of DNA methylation of the H19 and Peg3 genes is important in embryonic development. Therefore, the effect of fluorine on methylation of H19 and Peg3 during early mouse embryos was studied. It was shown that the H19 gene was significantly downmethylated in E2.5, E3.5, and E4.5 embryos from pregnant mice treated with 120 mg/l NaF in drinking water for 48 h. But methylation of both H19 and Peg3 genes was disrupted when the parent male mice were treated with NaF for 35 days. H19 DNA methylation decreased significantly, while Peg3 was almost completely methylated. However, when pregnant mice, mated with NaF-treated male mice, were again treated with NaF for 48 h, either H19 or Peg3 methylation in the embryos decreased significantly. In addition, the mRNA level of H19 considerably increased in E3.5 and E4.5 embryos from NaF-treated pregnant mice. Further, the expression of DNMT1 decreased significantly after NaF treatment. Conclusively, we demonstrated that fluorine may adversely affect early embryonic development by disrupting the methylation of H19 and Peg3 through downregulation of DNMT1. (C) 2015 S. Karger AG, Basel
机译:据报道,氟会影响胚胎发育,但其下调机制尚不清楚。 H19和Peg3基因的DNA甲基化修饰在胚胎发育中很重要。因此,研究了氟对早期小鼠胚胎中H19和Peg3甲基化的影响。结果表明,在饮用水中经120 mg / l NaF处理48 h的妊娠小鼠的E2.5,E3.5和E4.5胚胎中,H19基因显着下甲基化。但是,当用NaF处理雌性雄性小鼠35天时,H19和Peg3基因的甲基化都被破坏了。 H19 DNA甲基化明显降低,而Peg3几乎完全甲基化。但是,当怀孕的小鼠与NaF处理的雄性小鼠交配后,再次用NaF处理48小时,胚胎中的H19或Peg3甲基化就会明显降低。另外,在用NaF治疗的怀孕小鼠的E3.5和E4.5胚胎中,H19的mRNA水平显着增加。此外,在NaF处理后,DNMT1的表达显着降低。最后,我们证明了氟可能通过下调DNMT1破坏H19和Peg3的甲基化而对早期胚胎发育产生不利影响。 (C)2015 S.Karger AG,巴塞尔

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