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Single cell lineage analysis of mouse embryonic stem cells at the exit from pluripotency

机译:多能性退出时小鼠胚胎干细胞的单细胞谱系分析

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Understanding how interactions between extracellular signalling pathways and transcription factor networks influence cellular decision making will be crucial for understanding mammalian embryogenesis and for generating specialised cell types in vitro. To this end, pluripotent mouse Embryonic Stem (mES) cells have proven to be a useful model system. However, understanding how transcription factors and signalling pathways affect decisions made by individual cells is confounded by the fact that measurements are generally made on groups of cells, whilst individual mES cells differentiate at different rates and towards different lineages, even in conditions that favour a particular lineage. Here we have used single-cell measurements of transcription factor expression and Wnt/β-catenin signalling activity to investigate their effects on lineage commitment decisions made by individual cells. We find that pluripotent mES cells exhibit differing degrees of heterogeneity in their expression of important regulators from pluripotency, depending on the signalling environment to which they are exposed. As mES cells differentiate, downregulation of Nanog and Oct4 primes cells for neural commitment, whilst loss of Sox2 expression primes cells for primitive streak commitment. Furthermore, we find that Wnt signalling acts through Nanog to direct cells towards a primitive streak fate, but that transcriptionally active β-catenin is associated with both neural and primitive streak commitment. These observations confirm and extend previous suggestions that pluripotency genes influence lineage commitment and demonstrate how their dynamic expression affects the direction of lineage commitment, whilst illustrating two ways in which the Wnt signalling pathway acts on this network during cell fate assignment.
机译:了解细胞外信号传导途径和转录因子网络之间的相互作用如何影响细胞决策对于理解哺乳动物的胚胎发生和体外产生专门的细胞类型至关重要。为此,多能小鼠胚胎干(mES)细胞已被证明是有用的模型系统。然而,理解转录因子和信号传导途径如何影响单个细胞的决定的事实是困惑的,因为通常在一组细胞上进行测量,而单个mES细胞即使在有利于特定条件的条件下也以不同的速率和向不同的谱系分化。血统。在这里,我们使用了转录因子表达和Wnt /β-catenin信号传导活性的单细胞测量,以研究它们对单个细胞做出的谱系定型决策的影响。我们发现,多能性mES细胞在其从多能性表达的重要调控因子中表现出不同程度的异质性,这取决于它们所暴露的信号环境。随着mES细胞的分化,Nanog和Oct4的下调会刺激神经元的定植,而Sox2表达的丧失会激发细胞的原始定型。此外,我们发现Wnt信号通过Nanog起作用,将细胞导向原始条纹命运,但转录活性β-连环蛋白与神经和原始条纹的定型有关。这些观察结果证实并扩展了先前的多能性基因影响谱系定型的建议,并展示了它们的动态表达如何影响谱系定型的方向,同时说明了在细胞命运分配过程中Wnt信号通路在该网络上起作用的两种方式。

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