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甲基化单倍型块的识别有助于对异质组织样本进行解卷积,并从血浆DNA中进行肿瘤组织起源映射。

Identification of methylation haplotype blocks aids in deconvolution of heterogeneous tissue samples and tumor tissue-of-origin mapping from plasma DNA.

作者信息

Guo Shicheng, Diep Dinh, Plongthongkum Nongluk, Fung Ho-Lim, Zhang Kang, Zhang Kun

机构信息

Department of Bioengineering, University of California at San Diego, La Jolla, California, USA.

Institute for Genomic Medicine, University of California at San Diego, La Jolla, California, USA.

出版信息

Nat Genet. 2017 Apr;49(4):635-642. doi: 10.1038/ng.3805. Epub 2017 Mar 6.

Abstract

Adjacent CpG sites in mammalian genomes can be co-methylated owing to the processivity of methyltransferases or demethylases, yet discordant methylation patterns have also been observed, which are related to stochastic or uncoordinated molecular processes. We focused on a systematic search and investigation of regions in the full human genome that show highly coordinated methylation. We defined 147,888 blocks of tightly coupled CpG sites, called methylation haplotype blocks, after analysis of 61 whole-genome bisulfite sequencing data sets and validation with 101 reduced-representation bisulfite sequencing data sets and 637 methylation array data sets. Using a metric called methylation haplotype load, we performed tissue-specific methylation analysis at the block level. Subsets of informative blocks were further identified for deconvolution of heterogeneous samples. Finally, using methylation haplotypes we demonstrated quantitative estimation of tumor load and tissue-of-origin mapping in the circulating cell-free DNA of 59 patients with lung or colorectal cancer.

摘要

由于甲基转移酶或去甲基酶的持续性,哺乳动物基因组中相邻的CpG位点可能会发生共甲基化,但也观察到了不一致的甲基化模式,这与随机或不协调的分子过程有关。我们专注于对全人类基因组中显示高度协调甲基化的区域进行系统搜索和研究。在分析了61个全基因组亚硫酸氢盐测序数据集,并通过101个简化代表性亚硫酸氢盐测序数据集和637个甲基化阵列数据集进行验证后,我们定义了147,888个紧密耦合的CpG位点块,称为甲基化单倍型块。使用一种称为甲基化单倍型负荷的指标,我们在块水平上进行了组织特异性甲基化分析。进一步确定了信息性块的子集,用于对异质样本进行反卷积。最后,我们使用甲基化单倍型在59例肺癌或结直肠癌患者的循环游离DNA中进行了肿瘤负荷的定量估计和组织起源定位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2780/5374016/0ab85b66b713/nihms851433f1.jpg

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