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Single-cell transcriptomics reveals a new dynamical function of transcription factors during embryonic hematopoiesis

机译:单细胞转录组学揭示了胚胎造血过程中转录因子的新动力功能

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摘要

Recent advances in single-cell transcriptomics techniques have opened the door to the study of gene regulatory networks (GRNs) at the single-cell level. Here, we studied the GRNs controlling the emergence of hematopoietic stem and progenitor cells from mouse embryonic endothelium using a combination of single-cell transcriptome assays. We found that a heptad of transcription factors (Runx1, Gata2, Tal1, Fli1, Lyl1, Erg and Lmo2) is specifically co-expressed in an intermediate population expressing both endothelial and hematopoietic markers. Within the heptad, we identified two sets of factors of opposing functions: one (Erg/Fli1) promoting the endothelial cell fate, the other (Runx1/Gata2) promoting the hematopoietic fate. Surprisingly, our data suggest that even though Fli1 initially supports the endothelial cell fate, it acquires a pro-hematopoietic role when co-expressed with Runx1. This work demonstrates the power of single-cell RNA-sequencing for characterizing complex transcription factor dynamics.
机译:单细胞转录组学技术的最新进展为单细胞水平的基因调控网络(GRN)的研究打开了大门。在这里,我们研究了结合使用单细胞转录组分析方法控制小鼠胚胎内皮细胞造血干细胞和祖细胞出现的GRN。我们发现,七因子转录因子(Runx1,Gata2,Tal1,Fli1,Lyl1,Erg和Lmo2)在表达内皮和造血标记的中间人群中特别共表达。在七足动物中,我们确定了两组相反功能的因素:一组(Erg / Fli1)促进内皮细胞命运,另一组(Runx1 / Gata2)促进造血命运。出乎意料的是,我们的数据表明,即使Fli1最初支持内皮细胞命运,当与Runx1共表达时,它仍具有促造血作用。这项工作演示了单细胞RNA测序表征复杂转录因子动力学的能力。

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