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Recapitulation of gametic DNA methylation and its post-fertilization maintenance with reassembled DNA elements at the mouse Igf2/H19 locus

机译:用小鼠IGF2 / H19位点的重组DNA元素重新培育途集甲基甲基化及其后施肥维持

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Paternal allele-specific DNA methylation of the H19 imprinting control region (ICR) regulates imprinted expression of the Igf2/H19 genes. The molecular mechanism by which differential methylation of the H19 ICR is established during gametogenesis and maintained after fertilization, however, is not fully understood. We previously showed that a 2.9-kb H19 ICR fragment in transgenic mice was differentially methylated only after fertilization, demonstrating that two separable events, gametic and post-fertilization methylation, occur at the H19 ICR. We then determined that CTCF/Sox-Oct motifs and the 478-bp sequence of the H19 ICR are essential for maintaining its maternal hypomethylation status and for acquisition of paternal methylation, respectively, during the post-fertilization period. Using a series of 5′-truncated H19 ICR transgenes to dissect the 478-bp sequence, we identified a 118-bp region required for post-fertilization methylation activity. Deletion of the sequence from the paternal endogenous H19 ICR caused loss of methylation after fertilization, indicating that methylation activity of the sequence is required to protect endogenous H19 ICR from genome-wide reprogramming. We then reconstructed a synthetic DNA fragment in which the CTCF binding sites, Sox-Oct motifs, as well as the 118-bp sequence, were inserted into lambda DNA, and used it to replace the endogenous H19 ICR. The fragment was methylated during spermatogenesis; moreover, its allele-specific methylation status was faithfully maintained after fertilization, and imprinted expression of the both Igf2 and H19 genes was recapitulated. Our results identified a 118-bp region within the H19 ICR that is required for de novo DNA methylation of the paternally inherited H19 ICR during pre-implantation period. A lambda DNA-based artificial fragment that contains the 118-bp sequence, in addition to the previously identified cis elements, could fully replace the function of the H19 ICR in the mouse genome.
机译:H19压印对照区域(ICR)的父等等位基因特异性DNA甲基化调节IGF2 / H19基因的印迹表达。然而,在配子发生期间,在配子发生过程中建立差异甲基化的分子机制并保持受精后维持。我们以前表明,在受精后,转基因小鼠中的2.9kb H19 ICR片段仅在施肥后差异甲基化,表明在H19 ICR发生了两个可分离的事件,杂种和施肥后甲基化。然后,我们确定CTCF / SOX-OCT基序和H19 ICR的478-BP序列对于维持其母体低甲基化状态并分别在受精后期分别获取父甲基化的必不可少。使用一系列5'截断的H19 ICR转基因来描述478-BP序列,我们鉴定了受精后甲基化活性所需的118-BP区域。从父肠内源H19 ICR缺失序列引起施肥后甲基化的损失,表明序列的甲基化活性是保护内源性H19 ICR免受基因组重编程保护。然后,我们重建了一种合成的DNA片段,其中将CTCF结合位点,SOX-OCT基序以及118-BP序列插入Lambda DNA中,并用它来代替内源H19 ICR。在精子发生期间将片段甲基化;此外,其等位基因特异性甲基化状态被忠实于受精后保持,并综合了IGF2和H19基因的印迹表达。我们的结果鉴定了在预植入期间患者遗传的H19 ICR的De Novo DNA甲基化所需的118-BP区域。除了先前鉴定的顺式元素外,含有118-BP序列的基于λ的基于λ的人工片段可以完全替换小鼠基因组中H19 ICR的功能。

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