表观基因组文库构建方法的实验发展,以在单细胞水平上阐明表观基因组和转录组之间的表观遗传多样性及其因果关系

Kyunghyuk Park, Min Chul Jeon, Bokyung Kim, Bukyoung Cha, Jong-Il Kim
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引用次数: 0

摘要

单细胞RNA测序方法在过去的十年中得到了迅速的发展,并进行了大量的实验。他们的结果使我们能够识别组织、肿瘤和免疫系统中以前未识别的各种亚群和罕见的细胞状态,并指导我们理解基于单细胞基因表达谱决定细胞身份的基本生物学过程。然而,理解仅通过转录组(基因表达程序的结果输出)决定细胞命运的综合基因调控原理仍然具有挑战性。为了阐明单细胞综合转录组的起源和维持的相关机制,我们需要相应的单细胞表观基因组,这是每个细胞具有相同基因组的分化信息。本文综述了单细胞表观基因组文库构建方法的最新进展,包括具有关键因素的多组学工具和未来关注DNA甲基化、染色质可及性和组蛋白翻译后修饰的附加要求。单细胞水平上对细胞分化和疾病发生的研究已经从单细胞转录组迈出了第一步,现在正从单细胞表观基因组迈出下一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental development of the epigenomic library construction method to elucidate the epigenetic diversity and causal relationship between epigenome and transcriptome at a single-cell level
The method of single-cell RNA sequencing has been rapidly developed, and numerous experiments have been conducted over the past decade. Their results allow us to recognize various subpopulations and rare cell states in tissues, tumors, and immune systems that are previously unidentified, and guide us to understand fundamental biological processes that determine cell identity based on single-cell gene expression profiles. However, it is still challenging to understand the principle of comprehensive gene regulation that determines the cell fate only with transcriptome, a consequential output of the gene expression program. To elucidate the mechanisms related to the origin and maintenance of comprehensive single-cell transcriptome, we require a corresponding single-cell epigenome, which is a differentiated information of each cell with an identical genome. This review deals with the current development of single-cell epigenomic library construction methods, including multi-omics tools with crucial factors and additional requirements in the future focusing on DNA methylation, chromatin accessibility, and histone post-translational modifications. The study of cellular differentiation and the disease occurrence at a single-cell level has taken the first step with single-cell transcriptome and is now taking the next step with single-cell epigenome.
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