DNA甲基化
表观基因组
生物
甲基化
表观遗传学
RNA导向的DNA甲基化
表观遗传学
遗传学
人类基因组
照明菌甲基化试验
CpG站点
体育锻炼的表观遗传学
差异甲基化区
基因
基因组
基因表达
作者
Matthew D. Schultz,Yiping He,John W. Whitaker,Manoj Hariharan,Eran A. Mukamel,Danny Leung,Nisha Rajagopal,Joseph R. Nery,Mark A. Urich,Huaming Chen,Shin Lin,Yiing Lin,Inkyung Jung,Anthony Schmitt,Siddarth Selvaraj,Bing Ren,Terrence J. Sejnowski,Wei Wang,Joseph R. Ecker
出处
期刊:Nature
[Nature Portfolio]
日期:2015-06-01
卷期号:523 (7559): 212-216
被引量:594
摘要
Understanding the diversity of human tissues is fundamental to disease and requires linking genetic information, which is identical in most of an individual's cells, with epigenetic mechanisms that could have tissue-specific roles. Surveys of DNA methylation in human tissues have established a complex landscape including both tissue-specific and invariant methylation patterns. Here we report high coverage methylomes that catalogue cytosine methylation in all contexts for the major human organ systems, integrated with matched transcriptomes and genomic sequence. By combining these diverse data types with each individuals' phased genome, we identified widespread tissue-specific differential CG methylation (mCG), partially methylated domains, allele-specific methylation and transcription, and the unexpected presence of non-CG methylation (mCH) in almost all human tissues. mCH correlated with tissue-specific functions, and using this mark, we made novel predictions of genes that escape X-chromosome inactivation in specific tissues. Overall, DNA methylation in several genomic contexts varies substantially among human tissues.
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