Distinct DNA methylation patterns characterize differentiated human embryonic stem cells and developing human fetal liver

被引:211
作者
Brunner, Alayne L. [1 ]
Johnson, David S. [1 ]
Kim, Si Wan [1 ]
Valouev, Anton [2 ]
Reddy, Timothy E. [3 ]
Neff, Norma F. [1 ]
Anton, Elizabeth [1 ]
Medina, Catherine [1 ]
Nguyen, Loan [1 ]
Chiao, Eric [1 ]
Oyolu, Chuba B. [1 ]
Schroth, Gary P. [4 ]
Absher, Devin M. [3 ]
Baker, Julie C. [1 ]
Myers, Richard M. [1 ]
机构
[1] Stanford Univ, Sch Med, Dept Genet, Stanford, CA 94305 USA
[2] Stanford Univ, Dept Pathol, Stanford, CA 94305 USA
[3] HudsonAlpha Inst Biotechnol, Huntsville, AL 35806 USA
[4] Illumina Inc, San Diego, CA 92121 USA
关键词
DE-NOVO METHYLATION; GENOME-WIDE ANALYSIS; GENE-EXPRESSION; CPG ISLANDS; MAMMALIAN DEVELOPMENT; CHROMATIN-STRUCTURE; MOUSE EMBRYO; DEVELOPMENTAL REGULATORS; HISTONE MODIFICATIONS; X-CHROMOSOME;
D O I
10.1101/gr.088773.108
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
To investigate the role of DNA methylation during human development, we developed Methyl-seq, a method that assays DNA methylation at more than 90,000 regions throughout the genome. Performing Methyl-seq on human embryonic stem cells (hESCs), their derivatives, and human tissues allowed us to identify several trends during hESC and in vivo liver differentiation. First, differentiation results in DNA methylation changes at a minimal number of assayed regions, both in vitro and in vivo (2%-11%). Second, in vitro hESC differentiation is characterized by both de novo methylation and demethylation, whereas in vivo fetal liver development is characterized predominantly by demethylation. Third, hESC differentiation is uniquely characterized by methylation changes specifically at H3K27me3-occupied regions, bivalent domains, and low density CpG promoters (LCPs), suggesting that these regions are more likely to be involved in transcriptional regulation during hESC differentiation. Although both H3K27me3-occupied domains and LCPs are also regions of high variability in DNA methylation state during human liver development, these regions become highly unmethylated, which is a distinct trend from that observed in hESCs. Taken together, our results indicate that hESC differentiation has a unique DNA methylation signature that may not be indicative of in vivo differentiation.
引用
收藏
页码:1044 / 1056
页数:13
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