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Role of DNA methylation in imprinting disorders: an updated review

机译:DNA甲基化在印迹疾病中的作用:最新综述

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摘要

Genomic imprinting is a complex epigenetic process that contributes substantially to embryogenesis, reproduction, and gametogenesis. Only small fraction of genes within the whole genome undergoes imprinting. Imprinted genes are expressed in a monoallelic parent-of-origin-specific manner, which means that only one of the two inherited alleles is expressed either from the paternal or maternal side. Imprinted genes are typically arranged in clusters controlled by differentially methylated regions or imprinting control regions. Any defect or relaxation in imprinting process can cause loss of imprinting in the key imprinted loci. Loss of imprinting in most cases has a harmful effect on fetal development and can result in neurological, developmental, and metabolic disorders. Since DNA methylation and histone modifications play a key role in the process of imprinting. This review focuses on the role of DNA methylation in imprinting process and describes DNA methylation aberrations in different imprinting disorders.
机译:基因组印记是一个复杂的表观遗传过程,对胚胎发生,繁殖和配子发生有重大贡献。整个基因组中只有一小部分基因受到印记。印记的基因以单等位基因起源亲本特异性的方式表达,这意味着两个遗传等位基因中只有一个是从父本或母本一方表达的。印迹基因通常排列在由差异甲基化区域或印迹控制区域控制的簇中。压印过程中的任何缺陷或松弛都会导致关键压印位点的压印丢失。在大多数情况下,印记的丢失会对胎儿的发育产生有害影响,并可能导致神经,发育和代谢紊乱。由于DNA甲基化和组蛋白修饰在印迹过程中起关键作用。这篇综述着重于DNA甲基化在印迹过程中的作用,并描述了在不同印迹疾病中的DNA甲基化畸变。

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