Litsiou Anna, Hanson Sven, Streit Andrea
Department of Craniofacial Development, Guys Campus, Guys Tower, Floor 27, King's College London, London SE1 9RT, UK.
Development. 2005 Sep;132(18):4051-62. doi: 10.1242/dev.01964. Epub 2005 Aug 10.
The sensory nervous system in the vertebrate head arises from two different cell populations: neural crest and placodal cells. By contrast, in the trunk it originates from neural crest only. How do placode precursors become restricted exclusively to the head and how do multipotent ectodermal cells make the decision to become placodes or neural crest? At neural plate stages, future placode cells are confined to a narrow band in the head ectoderm, the pre-placodal region (PPR). Here, we identify the head mesoderm as the source of PPR inducing signals, reinforced by factors from the neural plate. We show that several independent signals are needed: attenuation of BMP and WNT is required for PPR formation. Together with activation of the FGF pathway, BMP and WNT antagonists can induce the PPR in naïve ectoderm. We also show that WNT signalling plays a crucial role in restricting placode formation to the head. Finally, we demonstrate that the decision of multipotent cells to become placode or neural crest precursors is mediated by WNT proteins: activation of the WNT pathway promotes the generation of neural crest at the expense of placodes. This mechanism explains how the placode territory becomes confined to the head, and how neural crest and placode fates diversify.
神经嵴细胞和基板细胞。相比之下,躯干中的感觉神经系统仅起源于神经嵴细胞。基板前体细胞是如何专门局限于头部的,以及多能外胚层细胞是如何决定成为基板细胞或神经嵴细胞的?在神经板阶段,未来的基板细胞局限于头部外胚层的一条窄带,即前基板区域(PPR)。在这里,我们确定头部中胚层是PPR诱导信号的来源,神经板的因子会增强这些信号。我们发现需要几种独立的信号:PPR形成需要BMP和WNT信号减弱。与FGF信号通路的激活一起,BMP和WNT拮抗剂可在未分化的外胚层中诱导PPR形成。我们还表明,WNT信号在将基板形成限制在头部方面起着关键作用。最后,我们证明多能细胞决定成为基板细胞或神经嵴前体细胞是由WNT蛋白介导的:WNT信号通路的激活以牺牲基板细胞为代价促进神经嵴的产生。这一机制解释了基板区域是如何局限于头部的,以及神经嵴和基板细胞命运是如何分化的。