Institute of Science and Technology Austria, Am Campus 1, A-3400 Klosterneuburg, Austria.
Development. 2011 Nov;138(21):4673-83. doi: 10.1242/dev.071233. Epub 2011 Sep 28.
Facial branchiomotor neurons (FBMNs) in zebrafish and mouse embryonic hindbrain undergo a characteristic tangential migration from rhombomere (r) 4, where they are born, to r6/7. Cohesion among neuroepithelial cells (NCs) has been suggested to function in FBMN migration by inhibiting FBMNs positioned in the basal neuroepithelium such that they move apically between NCs towards the midline of the neuroepithelium instead of tangentially along the basal side of the neuroepithelium towards r6/7. However, direct experimental evaluation of this hypothesis is still lacking. Here, we have used a combination of biophysical cell adhesion measurements and high-resolution time-lapse microscopy to determine the role of NC cohesion in FBMN migration. We show that reducing NC cohesion by interfering with Cadherin 2 (Cdh2) activity results in FBMNs positioned at the basal side of the neuroepithelium moving apically towards the neural tube midline instead of tangentially towards r6/7. In embryos with strongly reduced NC cohesion, ectopic apical FBMN movement frequently results in fusion of the bilateral FBMN clusters over the apical midline of the neural tube. By contrast, reducing cohesion among FBMNs by interfering with Contactin 2 (Cntn2) expression in these cells has little effect on apical FBMN movement, but reduces the fusion of the bilateral FBMN clusters in embryos with strongly diminished NC cohesion. These data provide direct experimental evidence that NC cohesion functions in tangential FBMN migration by restricting their apical movement.
斑马鱼和小鼠胚胎后脑的面脑神经节运动神经元 (FBMNs) 从它们出生的菱脑节 (r) 4 进行特征性的切线迁移,到 r6/7。神经上皮细胞 (NC) 之间的黏附被认为通过抑制位于基底神经上皮中的 FBMN 来发挥作用,使得它们在 NC 之间向上移动到神经上皮的中线,而不是沿着基底神经上皮向 r6/7 进行切线迁移。然而,对该假说的直接实验评估仍然缺乏。在这里,我们使用生物物理细胞黏附测量和高分辨率延时显微镜的组合来确定 NC 黏附在 FBMN 迁移中的作用。我们表明,通过干扰钙黏蛋白 2 (Cdh2) 活性来减少 NC 黏附力会导致位于神经上皮基底侧的 FBMN 向上移动到神经管中线,而不是向 r6/7 进行切线迁移。在 NC 黏附力严重降低的胚胎中,异位的顶端 FBMN 运动经常导致双侧 FBMN 簇在神经管顶端中线融合。相比之下,通过干扰这些细胞中的接触蛋白 2 (Cntn2) 表达来减少 FBMN 之间的黏附力对顶端 FBMN 运动几乎没有影响,但减少了在 NC 黏附力严重降低的胚胎中双侧 FBMN 簇的融合。这些数据提供了直接的实验证据,表明 NC 黏附力通过限制它们的顶端运动来发挥作用,从而促进 FBMN 的切线迁移。