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首页> 外文期刊>Neuron >Early stages of zebrafish eye formation require the coordinated activity of Wnt11, Fz5, and the Wnt/beta-catenin pathway.
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Early stages of zebrafish eye formation require the coordinated activity of Wnt11, Fz5, and the Wnt/beta-catenin pathway.

机译:斑马鱼眼睛形成的早期阶段需要Wnt11,Fz5和Wnt /β-catenin途径的协调活动。

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摘要

During regional patterning of the anterior neural plate, a medially positioned domain of cells is specified to adopt retinal identity. These eye field cells remain coherent as they undergo morphogenetic events distinct from other prospective forebrain domains. We show that two branches of the Wnt signaling pathway coordinate cell fate determination with cell behavior during eye field formation. Wnt/beta-catenin signaling antagonizes eye specification through the activity of Wnt8b and Fz8a. In contrast, Wnt11 and Fz5 promote eye field development, at least in part, through local antagonism of Wnt/beta-catenin signaling. Additionally, Wnt11 regulates the behavior of eye field cells, promoting their cohesion. Together, these results allow us to postulate a model in which Wnt11 and Fz5 signaling promotes early eye development through the coordinated antagonism of signals that suppress retinal identity and promotion of coherence of eye field cells.
机译:在前神经板的区域图案化过程中,指定一个位于细胞内侧的区域以采用视网膜身份。这些眼场细胞在经历不同于其他前脑结构域的形态发生事件时仍保持相干。我们显示,Wnt信号通路的两个分支协调眼球形成过程中细胞命运与细胞行为的确定。 Wnt /β-catenin信号传导通过Wnt8b和Fz8a的活性拮抗眼部规格。相反,Wnt11和Fz5至少部分地通过Wnt /β-catenin信号的局部拮抗作用来促进眼场的发育。此外,Wnt11调节眼视野细胞的行为,促进其凝聚力。在一起,这些结果使我们能够提出一个模型,其中Wnt11和Fz5信号通过信号的协同拮抗作用来促进早期眼睛发育,这些信号抑制视网膜身份并促进眼场细胞的相干性。

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