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Dax1 and Nanog act in parallel to stabilize mouse embryonic stem cells and induced pluripotency

机译:Dax1和Nanog并行作用以稳定小鼠胚胎干细胞并诱导多能性

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Nanog expression is heterogeneous and dynamic in embryonic stem cells (ESCs). However, the mechanism for stabilizing pluripotency during the transitions between Nanog(high) and Nanog(low) states is not well understood. Here we report that Dax1 acts in parallel with Nanog to regulate mouse ESC (mESCs) identity. Dax1 stable knockdown mESCs are predisposed towards differentiation but do not lose pluripotency, whereas Dax1 overexpression supports LIF-independent self-renewal. Although partially complementary, Dax1 and Nanog function independently and cannot replace one another. They are both required for full reprogramming to induce pluripotency. Importantly, Dax1 is indispensable for self-renewal of Nanog(low) mESCs. Moreover, we report that Dax1 prevents extra-embryonic endoderm (ExEn) commitment by directly repressing Gata6 transcription. Dax1 may also mediate inhibition of trophectoderm differentiation independent or as a downstream effector of Oct4. These findings establish a basal role of Dax1 in maintaining pluripotency during the state transition of mESCs and somatic cell reprogramming.
机译:Nanog表达在胚胎干细胞(ESC)中是异质的,并且是动态的。然而,对于在Nanog(高)和Nanog(低)状态之间过渡的过程中稳定多能性的机制尚不清楚。在这里,我们报告Dax1与Nanog并行作用,以调节小鼠ESC(mESCs)的身份。 Dax1稳定的敲低mESC倾向于分化,但不会失去多能性,而Dax1的过表达支持LIF独立的自我更新。尽管部分互补,但Dax1和Nanog独立发挥作用,不能相互替代。完全重新编程以诱导多能性都需要它们。重要的是,Dax1是Nanog(低)mESCs自我更新必不可少的。此外,我们报告Dax1通过直接抑制Gata6转录阻止胚外内胚层(ExEn)的承诺。 Dax1还可以独立或作为Oct4的下游效应子介导对滋养外胚层分化的抑制。这些发现建立了Dax1在mESCs状态转换和体细胞重编程过程中维持多能性的基础作用。

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