Sato Yuki, Yasuda Kunio, Takahashi Yoshiko
Graduate School of Biological Sciences, Nara Institute of Science and Technology, 8916-5, Takayama, Ikoma, Nara, 630-0101, Japan.
Development. 2002 Aug;129(15):3633-44. doi: 10.1242/dev.129.15.3633.
Boundary formation plays a central role in differentiating the flanking regions that give rise to discrete tissues and organs during early development. We have studied mechanisms by which a morphological boundary and tissue separation are regulated by examining chicken somite segmentation as a model system. By transplanting a small group of cells taken from a presumptive border into a non-segmentation site, we have found a novel inductive event where posteriorly juxtaposed cells to the next-forming border instruct the anterior cells to become separated and epithelialized. We have further studied the molecular mechanisms underlying these interactions by focusing on Lunatic fringe, a modulator of Notch signaling, which is expressed in the region of the presumptive boundary. By combining DNA in ovo electroporation and embryonic transplantation techniques we have ectopically made a sharp boundary of Lunatic fringe activity in the unsegmented paraxial mesoderm and observed a fissure formed at the interface. In addition, a constitutive active form of Notch mimics this instructive phenomenon. These suggest that the boundary-forming signals emanating from the posterior border cells are mediated by Notch, the action of which is confined to the border region by Lunatic fringe within the area where mRNAs of Notch and its ligand are broadly expressed in the presomitic mesoderm.
边界形成在早期发育过程中区分产生离散组织和器官的侧翼区域方面起着核心作用。我们通过将鸡体节分割作为模型系统来研究形态边界和组织分离的调控机制。通过将一小群来自预定边界的细胞移植到非分割部位,我们发现了一种新的诱导事件,即与下一个形成的边界相邻的后部细胞指示前部细胞分离并上皮化。我们通过聚焦于Lunatic fringe(Notch信号的调节剂,在预定边界区域表达)进一步研究了这些相互作用的分子机制。通过结合卵内DNA电穿孔和胚胎移植技术,我们在未分割的轴旁中胚层中异位形成了Lunatic fringe活性的尖锐边界,并观察到在界面处形成了裂缝。此外,Notch的组成型活性形式模拟了这种诱导现象。这些表明,来自后部边界细胞的边界形成信号由Notch介导,其作用在Notch及其配体的mRNA在体节中胚层广泛表达的区域内由Lunatic fringe限制在边界区域。