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Allele-specific methylation is prevalent and is contributed by CpG-SNPs in the human genome

机译:等位基因特异性甲基化很普遍,并且是由人类基因组中的CpG-SNP贡献的

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摘要

In diploid mammalian genomes, parental alleles can exhibit different methylation patterns (allele-specific DNA methylation, ASM), which have been documented in a small number of cases except for the imprinted regions and X chromosomes in females. We carried out a chromosome-wide survey of ASM across 16 human pluripotent and adult cell lines using Illumina bisulfite sequencing. We applied the principle of linkage disequilibrium (LD) analysis to characterize the correlation of methylation between adjacent CpG sites on single DNA molecules, and also investigated the correlation between CpG methylation and single nucleotide polymorphisms (SNPs). We observed ASM on 23%∼37% heterozygous SNPs in any given cell line. ASM is often cell-type-specific. Furthermore, we found that a significant fraction (38%∼88%) of ASM regions is dependent on the presence of heterozygous SNPs in CpG dinucleotides that disrupt their methylation potential. This study identified distinct types of ASM across many cell types and suggests a potential role for CpG-SNP in connecting genetic variation with the epigenome.
机译:在二倍体哺乳动物基因组中,亲本等位基因可能表现出不同的甲基化模式(等位基因特异性DNA甲基化,ASM),除了雌性的印迹区域和X染色体外,在少数情况下已有记录。我们使用Illumina亚硫酸氢盐测序对16种人类多能和成年细胞系进行了ASM的全染色体调查。我们应用连锁不平衡(LD)分析的原理来表征单个DNA分子上相邻CpG位点之间的甲基化相关性,并研究了CpG甲基化与单核苷酸多态性(SNPs)之间的相关性。在任何给定的细胞系中,我们在23%〜37%的杂合SNP上观察到ASM。 ASM通常是特定于细胞类型的。此外,我们发现ASM区的很大一部分(38%〜88%)取决于CpG二核苷酸中杂合的SNP的存在,从而破坏了它们的甲基化潜力。这项研究确定了跨多种细胞类型的ASM的不同类型,并暗示了CpG-SNP在将遗传变异与表观基因组联系起来方面的潜在作用。

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