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首页> 外文期刊>Epigenetics: official journal of the DNA Methylation Society >Establishment of paternal allele-specific DNA methylation at the imprinted mouse GTl2 locus
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Establishment of paternal allele-specific DNA methylation at the imprinted mouse GTl2 locus

机译:父本等位基因特异性DNA甲基化在印迹的小鼠GTl2基因座处的建立

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摘要

The monoallelic expression of imprinted genes is controlled by epigenetic factors including DNA methylation and histone modifications. In mouse, the imprinted gene Gtl2 is associated with two differentially methylated regions: the IG-DMR, which serves as a gametic imprinting mark at which paternal allele-specific DNA methylation is inherited from sperm, and the Gtl2-DMR, which acquires DNA methylation on the paternal allele after fertilization. The timeframe during which DNA methylation is acquired at secondary DMRs during post-fertilization development and the relationship between secondary DMRs and imprinted expression have not been well established. In order to better understand the role of secondary DMRs in imprinting, we examined the methylation status of the Gtl2-DMR in pre- and post-implantation embryos. Paternal allele-specific DNA methylation of this region correlates with imprinted expression of Gtl2 during post-implantation development but is not required to implement imprinted expression during pre-implantation development, suggesting that this secondary DMR may play a role in maintaining imprinted expression. Furthermore, our developmental profile of DNA methylation patterns at the Cdkn1c- and Gtl2-DMRs illustrates that the temporal acquisition of DNA methylation at imprinted genes during post-fertilization development is not universally controlled.
机译:印迹基因的单等位基因表达受表观遗传因素控制,包括DNA甲基化和组蛋白修饰。在小鼠中,印记的基因Gtl2与两个差异甲基化区域相关:IG-DMR(作为配子的印记标记,在该标记处父本等位基因特异性的DNA甲基化从精子继承)和Gtl2-DMR,其获得DNA甲基化受精后在父本等位基因上。受精后发育过程中二级DMR处获得DNA甲基化的时间框架以及二级DMR与印迹表达之间的关系尚未得到很好的建立。为了更好地理解次级DMR在印迹中的作用,我们检查了植入前和植入后Gtl2-DMR的甲基化状态。该区域的父本等位基因特异性DNA甲基化与植入后发育过程中Gtl2的印迹表达相关,但在植入前发育过程中并不需要实现印迹表达,这表明该次级DMR可能在维持印迹表达中起作用。此外,我们在Cdkn1c-和Gtl2-DMRs处的DNA甲基化模式的发育概况表明,受精后发育过程中印迹基因的DNA甲基化的时间获取不受普遍控制。

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