Rakyan Vardhman K, Down Thomas A, Thorne Natalie P, Flicek Paul, Kulesha Eugene, Gräf Stefan, Tomazou Eleni M, Bäckdahl Liselotte, Johnson Nathan, Herberth Marlis, Howe Kevin L, Jackson David K, Miretti Marcos M, Fiegler Heike, Marioni John C, Birney Ewan, Hubbard Tim J P, Carter Nigel P, Tavaré Simon, Beck Stephan
Institute of Cell and Molecular Science, Barts and the London, London E1 2AT, United Kingdom.
Genome Res. 2008 Sep;18(9):1518-29. doi: 10.1101/gr.077479.108. Epub 2008 Jun 24.
We report a novel resource (methylation profiles of DNA, or mPod) for human genome-wide tissue-specific DNA methylation profiles. mPod consists of three fully integrated parts, genome-wide DNA methylation reference profiles of 13 normal somatic tissues, placenta, sperm, and an immortalized cell line, a visualization tool that has been integrated with the Ensembl genome browser and a new algorithm for the analysis of immunoprecipitation-based DNA methylation profiles. We demonstrate the utility of our resource by identifying the first comprehensive genome-wide set of tissue-specific differentially methylated regions (tDMRs) that may play a role in cellular identity and the regulation of tissue-specific genome function. We also discuss the implications of our findings with respect to the regulatory potential of regions with varied CpG density, gene expression, transcription factor motifs, gene ontology, and correlation with other epigenetic marks such as histone modifications.
我们报告了一种用于人类全基因组组织特异性DNA甲基化谱的新型资源(DNA甲基化谱,或mPod)。mPod由三个完全整合的部分组成:13种正常体细胞组织、胎盘、精子和一个永生化细胞系的全基因组DNA甲基化参考谱;一个已与Ensembl基因组浏览器整合的可视化工具;以及一种用于分析基于免疫沉淀的DNA甲基化谱的新算法。我们通过鉴定可能在细胞身份和组织特异性基因组功能调控中发挥作用的首个全面的全基因组组织特异性差异甲基化区域(tDMR)集,证明了我们资源的实用性。我们还讨论了我们的发现对于具有不同CpG密度、基因表达、转录因子基序、基因本体以及与其他表观遗传标记(如组蛋白修饰)相关性的区域的调控潜力的影响。