Lee Kong Chian School of Medicine, Experimental Medicine Building, Nanyang Technological University, Singapore City, Singapore.
Institute of Molecular and Cell Biology (IMCB), A*STAR (Agency for Science, Technology and Research), Singapore City, Singapore.
EMBO Rep. 2022 Aug 3;23(8):e54464. doi: 10.15252/embr.202154464. Epub 2022 Jun 9.
Immigration of mesenchymal cells into the growing fin and limb buds drives distal outgrowth, with subsequent tensile forces between these cells essential for fin and limb morphogenesis. Morphogens derived from the apical domain of the fin, orientate limb mesenchyme cell polarity, migration, division and adhesion. The zebrafish mutant stomp displays defects in fin morphogenesis including blister formation and associated loss of orientation and adhesion of immigrating fin mesenchyme cells. Positional cloning of stomp identifies a mutation in the gene encoding the axon guidance ligand, Slit3. We provide evidence that Slit ligands derived from immigrating mesenchyme act via Robo receptors at the apical ectodermal ridge (AER) to promote release of sphingosine-1-phosphate (S1P). S1P subsequently diffuses back to the mesenchyme to promote their polarisation, orientation, positioning and adhesion to the interstitial matrix of the fin fold. We thus demonstrate the coordination of the Slit-Robo and S1P signalling pathways in fin fold morphogenesis. Our work introduces a mechanism regulating the orientation, positioning and adhesion of its constituent cells.
间质细胞向生长中的鳍和附肢芽的迁移驱动了远端生长,随后这些细胞之间的张力对于鳍和附肢的形态发生是必不可少的。来自鳍顶端区域的形态发生素定向排列附肢间充质细胞的极性、迁移、分裂和黏附。斑马鱼突变体 stomp 显示出在鳍的形态发生中存在缺陷,包括水疱形成以及相关的迁移的鳍间充质细胞的取向和黏附丧失。stomp 的定位克隆确定了编码轴突导向配体 Slit3 的基因突变。我们提供的证据表明,来自迁移的间充质的 Slit 配体通过顶端外胚层嵴(AER)上的 Robo 受体发挥作用,以促进鞘氨醇-1-磷酸(S1P)的释放。S1P 随后回扩散到间充质中,以促进它们的极化、定向、定位和黏附到鳍褶的间质基质中。因此,我们证明了 Slit-Robo 和 S1P 信号通路在鳍褶形态发生中的协调作用。我们的工作引入了一种调节其组成细胞的取向、定位和黏附的机制。