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首页> 外文期刊>Nature Communications >Self-patterning of rostral-caudal neuroectoderm requires dual role of Fgf signaling for localized Wnt antagonism
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Self-patterning of rostral-caudal neuroectoderm requires dual role of Fgf signaling for localized Wnt antagonism

机译:鼻尾神经外胚层的自我模式需要Fgf信号转导对局部Wnt拮抗作用的双重作用。

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摘要

The neuroectoderm is patterned along a rostral-caudal axis in response to localized factors in the embryo, but exactly how these factors act as positional information for this patterning is not yet fully understood. Here, using the self-organizing properties of mouse embryonic stem cell (ESC), we report that ESC-derived neuroectoderm self-generates a Six3+ rostral and a Irx3+ caudal bipolarized patterning. In this instance, localized Fgf signaling performs dual roles, as it regulates Six3+ rostral polarization at an earlier stage and promotes Wnt signaling at a later stage. The Wnt signaling components are differentially expressed in the polarized tissues, leading to genome-wide Irx3+ caudal-polarization signals. Surprisingly, differentially expressed Wnt agonists and antagonists have essential roles in orchestrating the formation of a balanced rostral-caudal neuroectoderm pattern. Together, our findings provide key processes for dynamic self-patterning and evidence that a temporally and locally regulated interaction between Fgf and Wnt signaling controls self-patterning in ESC-derived neuroectoderm.
机译:响应于胚胎中的局部因素,沿着鼻尾轴将神经外胚层图案化,但是这些因素如何精确地充当这种图案化的位置信息尚不清楚。在这里,使用小鼠胚胎干细胞(ESC)的自组织特性,我们报道了ESC衍生的神经外胚层自生一个Six3 +鼻尖和一个Irx3 +尾双极化模式。在这种情况下,本地化的Fgf信号传导起双重作用,因为它在较早的阶段调节Six3 +延髓的极化,并在较晚的阶段促进Wnt信号传导。 Wnt信号组件在极化组织中差异表达,从而导致全基因组的Irx3 +尾极化信号。令人惊讶地,差异表达的Wnt激动剂和拮抗剂在协调平衡的鼻尾神经外胚层模式的形成中具有重要作用。在一起,我们的发现提供了动态自我模式的关键过程,并证明了Fgf和Wnt信号之间的时间和局部调控的相互作用控制了ESC衍生的神经外胚层的自我模式。

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