School of Biological Sciences, Cell and Developmental Biology, University of East Anglia, Norwich Research Park, Norwich, U.K.
Biochem Soc Trans. 2022 Jun 30;50(3):1167-1177. doi: 10.1042/BST20210834.
Mapping accessible chromatin across time scales can give insights into its dynamic nature, for example during cellular differentiation and tissue or organism development. Analysis of such data can be utilised to identify functional cis-regulatory elements (CRE) and transcription factor binding sites and, when combined with transcriptomics, can reveal gene regulatory networks (GRNs) of expressed genes. Chromatin accessibility mapping is a powerful approach and can be performed using ATAC-sequencing (ATAC-seq), whereby Tn5 transposase inserts sequencing adaptors into genomic DNA to identify differentially accessible regions of chromatin in different cell populations. It requires low sample input and can be performed and analysed relatively quickly compared with other methods. The data generated from ATAC-seq, along with other genomic approaches, can help uncover chromatin packaging and potential cis-regulatory elements that may be responsible for gene expression. Here, we describe the ATAC-seq approach and give examples from mainly vertebrate embryonic development, where such datasets have identified the highly dynamic nature of chromatin, with differing landscapes between cellular precursors for different lineages.
绘制跨越时间尺度的可及染色质图谱可以深入了解其动态特性,例如在细胞分化和组织或器官发育过程中。对这些数据的分析可用于识别功能顺式调控元件 (CRE) 和转录因子结合位点,并且与转录组学结合使用时,可以揭示表达基因的基因调控网络 (GRN)。染色质可及性作图是一种强大的方法,可以使用 ATAC 测序 (ATAC-seq) 来实现,其中 Tn5 转座酶将测序接头插入基因组 DNA 中,以识别不同细胞群体中染色质的差异可及区域。它需要的样本输入量低,与其他方法相比,它可以更快地进行和分析。ATAC-seq 生成的数据以及其他基因组方法可以帮助揭示染色质包装和潜在的顺式调控元件,这些元件可能负责基因表达。在这里,我们描述了 ATAC-seq 方法,并给出了主要来自脊椎动物胚胎发育的示例,这些数据集确定了染色质的高度动态性质,不同谱系的细胞前体之间存在不同的景观。