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Convergence of cMyc and β‐catenin on Tcf7l1 enables endoderm specification

机译:Tcf7l1上cMyc和β-catenin的融合使内胚层规范化

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摘要

The molecular machinery that directs formation of definitive endoderm from pluripotent stem cells is not well understood. Wnt/β‐catenin and Nodal signalling have been implicated, but the requirements for lineage specification remain incompletely defined. Here, we demonstrate a potent effect of inhibiting glycogen synthase kinase 3 (GSK3) on definitive endoderm production. We find that downstream of GSK3 inhibition, elevated cMyc and β‐catenin act in parallel to reduce transcription and DNA binding, respectively, of the transcriptional repressor Tcf7l1. Tcf7l1 represses FoxA2, a pioneer factor for endoderm specification. Deletion of Tcf7l1 is sufficient to allow upregulation of FoxA2 in the presence of Activin. In wild‐type cells, cMyc contributes by reducing Tcf7l1 mRNA, while β‐catenin acts on Tcf7l1 protein. GSK3 inhibition is further required for consolidation of endodermal fate via upregulation of Sox17, highlighting sequential roles for Wnt signalling. The identification of a cMyc/β‐catenin‐Tcf7l1‐FoxA2 axis reveals a de‐repression mechanism underlying endoderm induction that may be recapitulated in other developmental and patho‐logical contexts.
机译:指导由多能干细胞形成定形内胚层的分子机制尚不清楚。有牵连的Wnt /β-catenin和Nodal信号传导,但对血统规范的要求仍未完全定义。在这里,我们证明了抑制糖原合酶激酶3(GSK3)对定形内胚层产生的有效作用。我们发现,在GSK3抑制的下游,升高的cMyc和β-catenin并行发挥作用,分别减少转录阻遏物Tcf7l1的转录和DNA结合。 Tcf7l1抑制FoxA2,这是内胚层规格的先驱因素。 Tcf7l1的删除足以使激活素存在下FoxA2的上调。在野生型细胞中,cMyc通过降低Tcf7l1 mRNA发挥作用,而β-catenin作用于Tcf7l1蛋白。为了通过Sox17的上调巩固内胚层的命运,还需要GSK3抑制,这突出了Wnt信号的顺序作用。对cMyc /β-catenin-Tcf7l1-FoxA2轴的鉴定揭示了内胚层诱导基础的抑制机制,该机制可能在其他发育和病理学背景下得以概括。

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