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单细胞 RNA 测序揭示 Sox17 表达谱系中的独特基因调控网络和动态发育轨迹。

Single-Cell RNA Sequencing of Sox17-Expressing Lineages Reveals Distinct Gene Regulatory Networks and Dynamic Developmental Trajectories.

机构信息

Department of Molecular Physiology and Biophysics, Vanderbilt University, Nashville, TN, USA.

Department of Cell and Developmental Biology, Vanderbilt University, Nashville, TN, USA.

出版信息

Stem Cells. 2023 Jun 15;41(6):643-657. doi: 10.1093/stmcls/sxad030.

Abstract

During early embryogenesis, the transcription factor SOX17 contributes to hepato-pancreato-biliary system formation and vascular-hematopoietic emergence. To better understand Sox17 function in the developing endoderm and endothelium, we developed a dual-color temporal lineage-tracing strategy in mice combined with single-cell RNA sequencing to analyze 6934 cells from Sox17-expressing lineages at embryonic days 9.0-9.5. Our analyses showed 19 distinct cellular clusters combined from all 3 germ layers. Differential gene expression, trajectory and RNA-velocity analyses of endothelial cells revealed a heterogenous population of uncommitted and specialized endothelial subtypes, including 2 hemogenic populations that arise from different origins. Similarly, analyses of posterior foregut endoderm revealed subsets of hepatic, pancreatic, and biliary progenitors with overlapping developmental potency. Calculated gene-regulatory networks predict gene regulons that are dominated by cell type-specific transcription factors unique to each lineage. Vastly different Sox17 regulons found in endoderm versus endothelial cells support the differential interactions of SOX17 with other regulatory factors thereby enabling lineage-specific regulatory actions.

摘要

在胚胎早期发育过程中,转录因子 SOX17 有助于肝胰胆管系统的形成和血管造血的出现。为了更好地了解 Sox17 在发育中内胚层和内皮细胞中的功能,我们在小鼠中开发了一种双色时间谱系追踪策略,并结合单细胞 RNA 测序,分析了 Sox17 表达谱系在胚胎第 9.0-9.5 天的 6934 个细胞。我们的分析表明,从所有 3 个胚层组合而成的 19 个不同的细胞簇。内皮细胞的差异基因表达、轨迹和 RNA 速度分析揭示了一个异质的未分化和特化的内皮亚型群体,包括来自不同起源的 2 个造血群体。同样,对后前肠内胚层的分析揭示了具有重叠发育潜力的肝、胰和胆管祖细胞的亚群。计算出的基因调控网络预测了基因调控网络,这些网络主要由每个谱系特有的细胞类型特异性转录因子主导。在内胚层与内皮细胞中发现的 SOX17 调控网络存在巨大差异,这支持了 SOX17 与其他调节因子的差异相互作用,从而实现了谱系特异性的调节作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcc5/10465087/38ed5cb30977/sxad030_fig8.jpg

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