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DNA甲基化与DNA甲基转移酶

DNA methylation and DNA methyltransferases.

作者信息

Edwards John R, Yarychkivska Olya, Boulard Mathieu, Bestor Timothy H

机构信息

Center for Pharmacogenomics, Department of Medicine, Washington University School of Medicine, St. Louis, MO USA.

Department of Genetics and Development, College of Physicians and Surgeons of Columbia University, New York, NY USA.

出版信息

Epigenetics Chromatin. 2017 May 8;10:23. doi: 10.1186/s13072-017-0130-8. eCollection 2017.

Abstract

The prevailing views as to the form, function, and regulation of genomic methylation patterns have their origin many years in the past, at a time when the structure of the mammalian genome was only dimly perceived, when the number of protein-encoding mammalian genes was believed to be at least five times greater than the actual number, and when it was not understood that only ~10% of the genome is under selective pressure and likely to have biological function. We use more recent findings from genome biology and whole-genome methylation profiling to provide a reappraisal of the shape of genomic methylation patterns and the nature of the changes that they undergo during gametogenesis and early development. We observe that the sequences that undergo deep changes in methylation status during early development are largely sequences without regulatory function. We also discuss recent findings that begin to explain the remarkable fidelity of maintenance methylation. Rather than a general overview of DNA methylation in mammals (which has been the subject of many reviews), we present a new analysis of the distribution of methylated CpG dinucleotides across the multiple sequence compartments that make up the mammalian genome, and we offer an updated interpretation of the nature of the changes in methylation patterns that occur in germ cells and early embryos. We discuss the cues that might designate specific sequences for demethylation or de novo methylation during development, and we summarize recent findings on mechanisms that maintain methylation patterns in mammalian genomes. We also describe the several human disorders, each very different from the other, that are caused by mutations in DNA methyltransferase genes.

摘要

关于基因组甲基化模式的形式、功能和调控的主流观点起源于多年以前,当时哺乳动物基因组的结构仅被模糊地认识,当时认为编码蛋白质的哺乳动物基因数量至少比实际数量多五倍,而且当时还不明白只有约10%的基因组处于选择压力之下并可能具有生物学功能。我们利用基因组生物学和全基因组甲基化谱分析的最新发现,对基因组甲基化模式的形态以及它们在配子发生和早期发育过程中所经历变化的性质进行重新评估。我们观察到,在早期发育过程中甲基化状态发生深刻变化的序列大多是没有调控功能的序列。我们还讨论了最近的一些发现,这些发现开始解释维持甲基化的显著保真度。我们并非对哺乳动物DNA甲基化进行全面概述(这已成为众多综述的主题),而是对构成哺乳动物基因组的多个序列区室中甲基化CpG二核苷酸的分布进行新的分析,并对生殖细胞和早期胚胎中发生的甲基化模式变化的性质提供更新的解释。我们讨论了在发育过程中可能指定特定序列进行去甲基化或从头甲基化的线索,并总结了关于维持哺乳动物基因组甲基化模式机制的最新发现。我们还描述了几种人类疾病,它们彼此各不相同,都是由DNA甲基转移酶基因突变引起的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f42f/5422929/a3c45de77b9f/13072_2017_130_Fig1_HTML.jpg

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