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利用单细胞亚硫酸氢盐测序(scBS-seq)进行单细胞全基因组碱基分辨率的 DNA 甲基化图谱绘制。

Genome-wide base-resolution mapping of DNA methylation in single cells using single-cell bisulfite sequencing (scBS-seq).

机构信息

Epigenetics Programme, Babraham Institute, Cambridge, UK.

Wellcome Trust Sanger Institute, Hinxton, Cambridge, UK.

出版信息

Nat Protoc. 2017 Mar;12(3):534-547. doi: 10.1038/nprot.2016.187. Epub 2017 Feb 9.

DOI:10.1038/nprot.2016.187
PMID:28182018
Abstract

DNA methylation (DNAme) is an important epigenetic mark in diverse species. Our current understanding of DNAme is based on measurements from bulk cell samples, which obscures intercellular differences and prevents analyses of rare cell types. Thus, the ability to measure DNAme in single cells has the potential to make important contributions to the understanding of several key biological processes, such as embryonic development, disease progression and aging. We have recently reported a method for generating genome-wide DNAme maps from single cells, using single-cell bisulfite sequencing (scBS-seq), allowing the quantitative measurement of DNAme at up to 50% of CpG dinucleotides throughout the mouse genome. Here we present a detailed protocol for scBS-seq that includes our most recent developments to optimize recovery of CpGs, mapping efficiency and success rate; reduce hands-on time; and increase sample throughput with the option of using an automated liquid handler. We provide step-by-step instructions for each stage of the method, comprising cell lysis and bisulfite (BS) conversion, preamplification and adaptor tagging, library amplification, sequencing and, lastly, alignment and methylation calling. An individual with relevant molecular biology expertise can complete library preparation within 3 d. Subsequent computational steps require 1-3 d for someone with bioinformatics expertise.

摘要

DNA 甲基化 (DNAme) 是多种生物中一种重要的表观遗传标记。我们目前对 DNAme 的认识是基于对大量细胞样本的测量,这掩盖了细胞间的差异,并阻止了对稀有细胞类型的分析。因此,能够在单细胞中测量 DNAme 有可能对理解几个关键的生物学过程做出重要贡献,如胚胎发育、疾病进展和衰老。我们最近报道了一种从单细胞中生成全基因组 DNAme 图谱的方法,使用单细胞亚硫酸氢盐测序 (scBS-seq),允许定量测量多达 50%的 CpG 二核苷酸在整个小鼠基因组中。在这里,我们提供了一个详细的 scBS-seq 方案,包括我们最近的开发成果,以优化 CpG 的回收、映射效率和成功率;减少手工操作时间;并通过使用自动化液体处理机增加样品通量。我们为该方法的每个阶段提供了分步说明,包括细胞裂解和亚硫酸氢盐 (BS) 转化、预扩增和接头标记、文库扩增、测序以及最后,比对和甲基化调用。具有相关分子生物学专业知识的个人可以在 3 天内完成文库制备。随后的计算步骤需要有生物信息学专业知识的人 1-3 天的时间。

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