Université Pierre et Marie Curie-Paris 6, Laboratoire de Biologie du Développement, Paris, France.
Dev Dyn. 2012 Aug;241(8):1333-49. doi: 10.1002/dvdy.23813. Epub 2012 Jun 23.
During embryonic development, cadherin switches are correlated with tissue remodelings, such as epithelium-to-mesenchyme transition (EMT). An E- to N-cadherin switch also occurs during neurogenesis, but this is not accompanied with EMT. The biological significance of this switch is currently unknown.
We analyzed the timing and kinetics of the E- to N-cadherin switch during early neural induction and neurulation in the chick embryo, in relation to the patterns of their transcriptional regulators. We found that deployment of the E- to N-cadherin switch program varies considerably along the embryonic axis. Rostrally in regions of primary neurulation, it occurs progressively both in time and space in a manner that appears neither in connection with morphological transformation of neural epithelial cells nor in synchrony with movements of neurulation. Caudally, in regions of secondary neurulation, neurogenesis was not associated with cadherin switch as N-cadherin pre-existed before formation of the neural tube. We also found that, during neural development, cadherin switch is orchestrated by a set of transcriptional regulators distinct from those involved in EMT.
Our results indicate that cadherin switch correlates with the partition of the neurectoderm into its three main populations: ectoderm, neural crest, and neural tube.
在胚胎发育过程中,钙黏蛋白转换与组织重塑相关,例如上皮细胞-间质转化(EMT)。神经发生过程中也会发生 E-到 N-钙黏蛋白的转换,但这并不伴随着 EMT。这种转换的生物学意义目前尚不清楚。
我们分析了鸡胚早期神经诱导和神经胚形成过程中 E-到 N-钙黏蛋白转换的时间和动力学,以及它们的转录调节因子的模式。我们发现,E-到 N-钙黏蛋白转换程序在胚胎轴上的部署差异很大。在初级神经胚形成区域的头部,它在时间和空间上都以一种渐进的方式发生,这种方式既与神经上皮细胞形态转化无关,也与神经胚形成的运动不同步。在次级神经胚形成区域的尾部,神经发生与钙黏蛋白转换无关,因为 N-钙黏蛋白在神经管形成之前就已经存在。我们还发现,在神经发育过程中,钙黏蛋白转换由一组转录调节因子协调,这些因子与 EMT 中涉及的因子不同。
我们的结果表明,钙黏蛋白转换与神经外胚层分为三个主要群体有关:外胚层、神经嵴和神经管。