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Reduced representation bisulfite sequencing for comparative high-resolution DNA methylation analysis

机译:减少代表性的亚硫酸氢盐测序,用于比较高分辨率的DNA甲基化分析

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摘要

We describe a large-scale random approach termed reduced representation bisulfite sequencing (RRBS) for analyzing and comparing genomic methylation patterns. BglII restriction fragments were size-selected to 500–600 bp, equipped with adapters, treated with bisulfite, PCR amplified, cloned and sequenced. We constructed RRBS libraries from murine ES cells and from ES cells lacking DNA methyltransferases Dnmt3a and 3b and with knocked-down (kd) levels of Dnmt1 (Dnmt[1kd,3a−/−,3b−/−]). Sequencing of 960 RRBS clones from Dnmt[1kd,3a−/−,3b−/−] cells generated 343 kb of non-redundant bisulfite sequence covering 66212 cytosines in the genome. All but 38 cytosines had been converted to uracil indicating a conversion rate of >99.9%. Of the remaining cytosines 35 were found in CpG and 3 in CpT dinucleotides. Non-CpG methylation was >250-fold reduced compared with wild-type ES cells, consistent with a role for Dnmt3a and/or Dnmt3b in CpA and CpT methylation. Closer inspection revealed neither a consensus sequence around the methylated sites nor evidence for clustering of residual methylation in the genome. Our findings indicate random loss rather than specific maintenance of methylation in Dnmt[1kd,3a−/−,3b−/−] cells. Near-complete bisulfite conversion and largely unbiased representation of RRBS libraries suggest that random shotgun bisulfite sequencing can be scaled to a genome-wide approach.
机译:我们描述了一种称为减少的代表性亚硫酸氢盐测序(RRBS)的大规模随机方法,用于分析和比较基因组甲基化模式。将BglII限制性酶切片段大小选择为500-600 bp,配备衔接子,用亚硫酸氢盐处理,PCR扩增,克隆和测序。我们从鼠类ES细胞以及缺少DNA甲基转移酶Dnmt3a和3b且具有敲低(kd)水平的Dnmt1(Dnmt [1kd,3a-/-,3b-/-])的ES细胞构建RRBS库。来自Dnmt [1kd,3a-/-,3b-/-]细胞的960个RRBS克隆的测序产生了343 kb的非冗余亚硫酸氢盐序列,覆盖了基因组中的66212个胞嘧啶。除38个胞嘧啶外,所有胞嘧啶均已转化为尿嘧啶,表明转化率> 99.9%。在其余的胞嘧啶中,在CpG中发现35个,在CpT二核苷酸中发现3个。与野生型ES细胞相比,非CpG甲基化减少> 250倍,这与Dnmt3a和/或Dnmt3b在CpA和CpT甲基化中的作用一致。仔细检查后,既未发现甲基化位点周围的共有序列,也未发现基因组中残留甲基化聚类的证据。我们的发现表明Dnmt [1kd,3a-/-,3b-/-]细胞中的甲基化是随机丢失而不是特定维持。亚硫酸氢盐的转化接近完全,并且RRBS库的表达基本无偏,这表明随机散弹枪亚硫酸氢盐测序可以扩展到全基因组方法。

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