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Region-specific DNA methylation in the preimplantation embryo as a target for genomic plasticity

机译:植入前胚胎中的区域特异性DNA甲基化作为基因组可塑性的目标

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It has been long known that the unique genetic sequence each embryo inherits is not the sole determinant of phenotype. However, only recently have epigenetic modifications to DNA been implicated in providing potential developmental plasticity to the embryonic and fetal genome, with environmental influences directly altering the epigenetic modifications that contribute to tissue-specific gene regulation. Most is known about the potential environmental regulation of DNA methylation, epigenetic addition of methyl groups to cytosine residues in DNA that acts in the long-term silencing of affected sequences. While most attention has been paid to the methylation of imprinted gene sequences, in terms of developmental plasticity there are many more parts of the genome that are methylated and that could be affected. This review explores the distribution of cytosine methylation in the genome and discusses the potential effects of regional plasticity on subsequent development. Widening our consideration of potentially plastic regions is likely to greatly enhance our understanding of how individuals are shaped not only by DNA sequence, but by the environment in which pluripotent embryonic cells are transformed into the many cell types of the body.
机译:早就知道,每个胚胎遗传的独特遗传序列并不是表型的唯一决定因素。但是,直到最近才对DNA的表观遗传修饰涉及为胚胎和胎儿基因组提供潜在的发育可塑性,而环境影响直接改变了有助于组织特异性基因调节的表观遗传修饰。关于DNA甲基化的潜在环境调控,将甲基基团表观遗传添加到DNA的胞嘧啶残基中起着最广为人知的作用,这会长期影响受影响的序列。尽管人们最关注的是印迹基因序列的甲基化,但就发育可塑性而言,基因组中有更多的部分被甲基化并可能受到影响。这篇综述探讨了胞嘧啶甲基化在基因组中的分布,并讨论了区域可塑性对后续发展的潜在影响。扩大我们对潜在的可塑性区域的考虑可能会极大地增进我们对个体的塑造的理解,不仅是DNA序列的形成,而且是多能胚胎细胞转化为人体多种细胞类型的环境的形成。

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