Patthey Cédric, Gunhaga Lena, Edlund Thomas
Umeå Center for Molecular Medicine, Umeå University, Umeå, Sweden.
PLoS One. 2008 Feb 20;3(2):e1625. doi: 10.1371/journal.pone.0001625.
The formation of functional neural circuits that process sensory information requires coordinated development of the central and peripheral nervous systems derived from neural plate and neural plate border cells, respectively. Neural plate, neural crest and rostral placodal cells are all specified at the late gastrula stage. How the early development of the central and peripheral nervous systems are coordinated remains, however, poorly understood. Previous results have provided evidence that at the late gastrula stage, graded Wnt signals impose rostrocaudal character on neural plate cells, and Bone Morphogenetic Protein (BMP) signals specify olfactory and lens placodal cells at rostral forebrain levels. By using in vitro assays of neural crest and placodal cell differentiation, we now provide evidence that Wnt signals impose caudal character on neural plate border cells at the late gastrula stage, and that under these conditions, BMP signals induce neural crest instead of rostral placodal cells. We also provide evidence that both caudal neural and caudal neural plate border cells become independent of further exposure to Wnt signals at the head fold stage. Thus, the status of Wnt signaling in ectodermal cells at the late gastrula stage regulates the rostrocaudal patterning of both neural plate and neural plate border, providing a coordinated spatial and temporal control of the early development of the central and peripheral nervous systems.
处理感觉信息的功能性神经回路的形成需要分别源自神经板和神经板边缘细胞的中枢和外周神经系统的协调发育。神经板、神经嵴和头端基板细胞均在原肠胚晚期被特化。然而,中枢和外周神经系统的早期发育如何协调仍知之甚少。先前的研究结果表明,在原肠胚晚期,梯度Wnt信号赋予神经板细胞头尾特征,而骨形态发生蛋白(BMP)信号在前脑头端水平特化嗅觉和晶状体基板细胞。通过使用神经嵴和基板细胞分化的体外测定方法,我们现在提供证据表明,Wnt信号在原肠胚晚期赋予神经板边缘细胞尾侧特征,并且在这些条件下,BMP信号诱导神经嵴而非头端基板细胞。我们还提供证据表明,在头褶期,尾侧神经细胞和尾侧神经板边缘细胞都不再依赖于进一步暴露于Wnt信号。因此,原肠胚晚期外胚层细胞中Wnt信号的状态调节神经板和神经板边缘的头尾模式,为中枢和外周神经系统的早期发育提供协调的时空控制。