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Temporal control of neural crest lineage generation by Wnt/beta-catenin signaling

机译:通过Wnt /β-catenin信号传导控制神经c谱系的时间

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摘要

Wnt/β-catenin signaling controls multiple steps of neural crest development, ranging from neural crest induction, lineage decisions, to differentiation. In mice, conditional β-catenin inactivation in premigratory neural crest cells abolishes both sensory neuron and melanocyte formation. Intriguingly, the generation of melanocytes is also prevented by activation of β-catenin in the premigratory neural crest, which promotes sensory neurogenesis at the expense of other neural crest derivatives. This raises the question of how Wnt/β-catenin signaling regulates the formation of distinct lineages from the neural crest. Using various Cre lines to conditionally activate β-catenin in neural crest cells at different developmental stages, we show that neural crest cell fate decisions in vivo are subject to temporal control by Wnt/β-catenin. Unlike in premigratory neural crest, β-catenin activation in migratory neural crest cells promotes the formation of ectopic melanoblasts, while the production of most other lineages is suppressed. Ectopic melanoblasts emerge at sites of neural crest target structures and in many tissues usually devoid of neural crest-derived cells. β-catenin activation at later stages in glial progenitors or in melanoblasts does not lead to surplus melanoblasts, indicating a narrow time window of Wnt/β-catenin responsiveness during neural crest cell migration. Thus, neural crest cells appear to be multipotent in vivo both before and after emigration from the neural tube but adapt their response to extracellular signals in a temporally controlled manner.
机译:Wnt /β-catenin信号控制神经c发育的多个步骤,范围从神经induction诱导,谱系决定到分化。在小鼠中,迁移前神经c细胞中的条件性β-catenin失活消除了感觉神经元和黑素细胞的形成。有趣的是,黑色素细胞的生成也可以通过移徙前神经rest中β-catenin的活化来阻止,从而促进感觉神经发生,而其他神经rest衍生物却会受到损害。这就提出了一个问题,即Wnt /β-catenin信号传导如何调节来自神经rest的独特谱系的形成。使用不同的Cre系在不同发育阶段有条件地激活神经stages细胞中的β-catenin,我们显示体内神经c细胞的命运决定受Wnt /β-catenin的时间控制。与迁徙前的神经rest不同,迁徙的神经β细胞中的β-catenin活化促进异位黑素细胞的形成,而其他大多数谱系的产生均受到抑制。异位黑素细胞出现在神经c靶结构的部位,并且在许多通常没有神经rest衍生细胞的组织中出现。在神经胶质祖细胞或黑素母细胞的后期阶段,β-catenin活化不会导致多余的黑素母细胞,这表明在神经c细胞迁移过程中Wnt /β-catenin反应的时间窗口很窄。因此,神经c细胞似乎在从神经管移出之前和之后在体内都是多能的,但是以时间控制的方式使它们对细胞外信号的反应适应。

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