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原肠胚形成和神经胚形成过程中骨形态发生蛋白(BMP)和Wnt信号的不同需求定义了神经嵴诱导的两个步骤。

Differential requirements of BMP and Wnt signalling during gastrulation and neurulation define two steps in neural crest induction.

作者信息

Steventon Ben, Araya Claudio, Linker Claudia, Kuriyama Sei, Mayor Roberto

机构信息

Department of Cell and Developmental Biology, University College London, London, UK.

出版信息

Development. 2009 Mar;136(5):771-9. doi: 10.1242/dev.029017. Epub 2009 Jan 28.

Abstract

The neural crest is induced by a combination of secreted signals. Although previous models of neural crest induction have proposed a step-wise activation of these signals, the actual spatial and temporal requirement has not been analysed. Through analysing the role of the mesoderm we show for the first time that specification of neural crest requires two temporally and chemically different steps: first, an induction at the gastrula stage dependent on signals arising from the dorsolateral mesoderm; and second, a maintenance step at the neurula stage dependent on signals from tissues adjacent to the neural crest. By performing tissue recombination experiments and using specific inhibitors of different inductive signals, we show that the first inductive step requires Wnt activation and BMP inhibition, whereas the later maintenance step requires activation of both pathways. This change in BMP necessity from BMP inhibition at gastrula to BMP activation at neurula stages is further supported by the dynamic expression of BMP4 and its antagonists, and is confirmed by direct measurements of BMP activity in the neural crest cells. The differential requirements of BMP activity allow us to propose an explanation for apparently discrepant results between chick and frog experiments. The demonstration that Wnt signals are required for neural crest induction by mesoderm solves an additional long-standing controversy. Finally, our results emphasise the importance of considering the order of exposure to signals during an inductive event.

摘要

神经嵴是由多种分泌信号共同诱导产生的。尽管先前的神经嵴诱导模型提出了这些信号的逐步激活,但实际的时空需求尚未得到分析。通过分析中胚层的作用,我们首次表明神经嵴的特化需要两个在时间和化学性质上不同的步骤:首先,在原肠胚阶段的诱导依赖于背外侧中胚层产生的信号;其次,在神经胚阶段的维持步骤依赖于神经嵴相邻组织发出的信号。通过进行组织重组实验并使用不同诱导信号的特异性抑制剂,我们发现第一个诱导步骤需要Wnt激活和BMP抑制,而后期的维持步骤则需要两条信号通路的激活。BMP4及其拮抗剂的动态表达进一步支持了BMP必要性从原肠胚阶段的BMP抑制到神经胚阶段的BMP激活的这种变化,并通过对神经嵴细胞中BMP活性的直接测量得到了证实。BMP活性的不同需求使我们能够对鸡和蛙实验中明显矛盾的结果提出一种解释。中胚层诱导神经嵴需要Wnt信号这一证明解决了另一个长期存在的争议。最后,我们的结果强调了在诱导事件中考虑信号暴露顺序的重要性。

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