染色质
生物
增强子
神经嵴
细胞命运测定
调节器
细胞生物学
转录因子
基因调控网络
神经板
电池类型
颅神经嵴
索克斯10
基因表达调控
计算生物学
嘉雅宠物
细胞
遗传学
外胚层
细胞分化
祖细胞
命运图
抄写(语言学)
基因
基因表达
神经干细胞
神经细胞
转录组
转录调控
调节顺序
胚胎干细胞
表观遗传学
发育生物学
作者
Eva Hamrud,Jacob Leese,Alexandre P. Thiery,Ailín L. Buzzi,Alessandra Vigilante,James Briscoe,Andrea Streit
出处
期刊:Development
[The Company of Biologists]
日期:2025-11-14
摘要
During development, dynamic changes in gene expression and chromatin architecture drive the transition from progenitors to specialised cell types. Here we use single cell ATAC sequencing (scATAC-seq) to investigate changes in chromatin accessibility as neural plate border cells segregate into neural, neural crest and placode cells. We developed a Nextflow pipeline, ‘single cell Advanced Chromatin Exploration’ (scACE), which integrates scATAC-seq and scRNA-seq data to identify cell state specific accessibility profiles and groups of chromatin regions with coordinated dynamic behaviour, termed accessibility modules (AMs). We find that neural plate border and adjacent cells are characterised by broadly open chromatin, reflecting their broad potential to generate any ectodermal derivative. As development proceeds, cell-type-specific chromatin signatures are established. Inferring an enhancer-centric gene regulatory network, we predict Foxk2 as new regulator for placode specification and verify this prediction experimentally. Foxk2 target enhancers are open in placodal, but not any other ectodermal cells. This finding suggests that on a regulatory level, cells can use different strategies to control fate choice: differential accessibility of enhancers and broad accessibility controlled by differentially expressed transcription factors.
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