The DNA Methylome of Human Peripheral Blood Mononuclear Cells

Yingrui Li(BGI Group (China)), Jingde Zhu(Shanghai Jiao Tong University), Geng Tian(BGI Group (China)), Ning Li(BGI Group (China)), Qibin Li(BGI Group (China)), Mingzhi Ye(BGI Group (China)), Hancheng Zheng(BGI Group (China)), Jian Yu(Shanghai Cancer Institute), Honglong Wu(BGI Group (China)), Jihua Sun(BGI Group (China)), Hongyu Zhang(Shanghai Cancer Institute), Quan Chen(BGI Group (China)), Ruibang Luo(BGI Group (China)), Minfeng Chen(BGI Group (China)), Yinghua He(Shanghai Cancer Institute), Xin Jin(BGI Group (China)), Qinghui Zhang(BGI Group (China)), Chang Yu(BGI Group (China)), Guangyu Zhou(BGI Group (China)), Jinfeng Sun(BGI Group (China)), Yebo Huang(BGI Group (China)), Huisong Zheng(BGI Group (China)), Hongzhi Cao(BGI Group (China)), Xiaoyu Zhou(Shanghai Cancer Institute), Shicheng Guo(Shanghai Cancer Institute), Xueda Hu(BGI Group (China)), Xin Li(Kunming Institute of Zoology), Karsten Kristiansen(University of Copenhagen), Lars Bolund(BGI Group (China)), Jiujin Xu(Institute of Genetics and Developmental Biology), Wen Wang(Kunming Institute of Zoology), Huanming Yang(BGI Group (China)), Jian Wang(BGI Group (China)), Jian Wang(BGI Group (China)), Ruiqiang Li(BGI Group (China)), Stephan Beck(BGI Group (China)), Jun Wang(BGI Group (China)), Jun Wang(BGI Group (China)), Xiuqing Zhang(BGI Group (China))
PLoS Biology
November 9, 2010
Cited by 325Open Access
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Abstract

DNA methylation plays an important role in biological processes in human health and disease. Recent technological advances allow unbiased whole-genome DNA methylation (methylome) analysis to be carried out on human cells. Using whole-genome bisulfite sequencing at 24.7-fold coverage (12.3-fold per strand), we report a comprehensive (92.62%) methylome and analysis of the unique sequences in human peripheral blood mononuclear cells (PBMC) from the same Asian individual whose genome was deciphered in the YH project. PBMC constitute an important source for clinical blood tests world-wide. We found that 68.4% of CpG sites and <0.2% of non-CpG sites were methylated, demonstrating that non-CpG cytosine methylation is minor in human PBMC. Analysis of the PBMC methylome revealed a rich epigenomic landscape for 20 distinct genomic features, including regulatory, protein-coding, non-coding, RNA-coding, and repeat sequences. Integration of our methylome data with the YH genome sequence enabled a first comprehensive assessment of allele-specific methylation (ASM) between the two haploid methylomes of any individual and allowed the identification of 599 haploid differentially methylated regions (hDMRs) covering 287 genes. Of these, 76 genes had hDMRs within 2 kb of their transcriptional start sites of which >80% displayed allele-specific expression (ASE). These data demonstrate that ASM is a recurrent phenomenon and is highly correlated with ASE in human PBMCs. Together with recently reported similar studies, our study provides a comprehensive resource for future epigenomic research and confirms new sequencing technology as a paradigm for large-scale epigenomics studies.


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