Integrative single‐cell RNA‐seq and ATAC‐seq analysis of the evolutionary trajectory features of adipose‐derived stem cells induced into astrocytes

染色质 生物 细胞分化 转录因子 细胞生物学 干细胞 神经干细胞 转录组 星形胶质细胞 计算生物学 基因表达 遗传学 基因 神经科学 中枢神经系统
作者
Qingxi Long,Yi Yuan,Ya Ou,Wen Li,Yan Qi,Pingshu Zhang,Xiaodong Yuan
出处
期刊:Journal of Neurochemistry [Wiley]
卷期号:169 (1)
标识
DOI:10.1111/jnc.16269
摘要

Abstract This study employs single‐cell RNA sequencing (scRNA‐seq) and assay for transposase‐accessible chromatin with high‐throughput sequencing technologies (scATAC‐seq) to perform joint sequencing on cells at various time points during the induction of adipose‐derived stem cells (ADSCs) into astrocytes. We applied bioinformatics approaches to investigate the differentiation trajectories of ADSCs during their induced differentiation into astrocytes. Pseudotemporal analysis was used to infer differentiation trajectories. Additionally, we assessed chromatin accessibility patterns during the differentiation process. Key transcription factors driving the differentiation of ADSCs into astrocytes were identified using motif and footprint methods. Our analysis revealed significant shifts in gene expression during the induction process, with astrocyte‐related genes upregulated and stem cell‐related genes downregulated. ADSCs first differentiated into neural stem cell‐like cells with high plasticity, which further matured into astrocytes via two distinct pathways. Marked changes in chromatin accessibility were observed during ADSC‐induced differentiation, affecting transcription regulation and cell function. Transcription factors analysis identified NFIA/B/C/X and CEBPA/B/D as key regulators in ADSCs differentiation into astrocytes. We observed a correlation between chromatin accessibility and gene expression, with ADSCs exhibiting broad chromatin accessibility prior to lineage commitment, where chromatin opening precedes transcription initiation. In summary, we found that ADSCs first enter a neural stem cell‐like state before differentiating into astrocytes. ADSCs also display extensive chromatin accessibility prior to astrocyte differentiation, although transcription has not yet been initiated. These findings offer a theoretical framework for understanding the molecular mechanisms underlying this process. image

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