通过 SPATAC-seq 以单细胞分辨率绘制斑马鱼胚胎发生的染色质可及性图谱

IF 17.3 1区 生物学 Q1 CELL BIOLOGY Nature Cell Biology Pub Date : 2024-07-08 DOI:10.1038/s41556-024-01449-0
Keyong Sun, Xin Liu, Runda Xu, Chang Liu, Anming Meng, Xun Lan
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摘要

目前,对斑马鱼胚胎发育过程中决定每种细胞类型独特身份和功能的调控程序的动态可及元件缺乏详细研究。在这里,我们介绍 SPATAC-seq:一种基于分离池连接的检测方法,利用测序技术检测转座酶可及染色质。利用 SPATAC-seq,我们分析了从球体期到幼体突嘴期的 20 个发育阶段中 80 多万个细胞核的染色质可及性。利用染色质可及性图谱,我们确定了 604 种细胞状态,并推断出它们之间的发育关系。我们还确定了 959,040 个候选顺式调控元件(cCRE),并划分出发育特异性 cCRE 以及定义不同细胞特征的转录因子。重要的是,增强子报告实验证实,大多数测试过的 cCRE 在受限的细胞类型或组织中都表现出稳健的增强绿色荧光蛋白表达。最后,我们探索了驱动色素细胞和脊索细胞分化的基因调控程序。我们的工作为探索斑马鱼胚胎发生过程中细胞命运决定的驱动调控因子提供了宝贵的开放资源。
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Mapping the chromatin accessibility landscape of zebrafish embryogenesis at single-cell resolution by SPATAC-seq
Currently, the dynamic accessible elements that determine regulatory programs responsible for the unique identity and function of each cell type during zebrafish embryogenesis lack detailed study. Here we present SPATAC-seq: a split-pool ligation-based assay for transposase-accessible chromatin using sequencing. Using SPATAC-seq, we profiled chromatin accessibility in more than 800,000 individual nuclei across 20 developmental stages spanning the sphere stage to the early larval protruding mouth stage. Using this chromatin accessibility map, we identified 604 cell states and inferred their developmental relationships. We also identified 959,040 candidate cis-regulatory elements (cCREs) and delineated development-specific cCREs, as well as transcription factors defining diverse cell identities. Importantly, enhancer reporter assays confirmed that the majority of tested cCREs exhibited robust enhanced green fluorescent protein expression in restricted cell types or tissues. Finally, we explored gene regulatory programs that drive pigment and notochord cell differentiation. Our work provides a valuable open resource for exploring driver regulators of cell fate decisions in zebrafish embryogenesis. In two independent studies, Sun, Liu et al. and Sun et al. develop SPATAC-seq to map the chromatin accessibility landscape of zebrafish embryogenesis and mouse organogenesis, respectively, and identify transcription regulators that determine cell fate.
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来源期刊
Nature Cell Biology
Nature Cell Biology 生物-细胞生物学
CiteScore
28.40
自引率
0.90%
发文量
219
审稿时长
3 months
期刊介绍: Nature Cell Biology, a prestigious journal, upholds a commitment to publishing papers of the highest quality across all areas of cell biology, with a particular focus on elucidating mechanisms underlying fundamental cell biological processes. The journal's broad scope encompasses various areas of interest, including but not limited to: -Autophagy -Cancer biology -Cell adhesion and migration -Cell cycle and growth -Cell death -Chromatin and epigenetics -Cytoskeletal dynamics -Developmental biology -DNA replication and repair -Mechanisms of human disease -Mechanobiology -Membrane traffic and dynamics -Metabolism -Nuclear organization and dynamics -Organelle biology -Proteolysis and quality control -RNA biology -Signal transduction -Stem cell biology
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