Lee J S, Ray R, Chien C B
Department of Neurobiology and Anatomy, University of Utah, 50 North Medical Drive, Salt Lake City, UT 84132, USA.
Dev Dyn. 2001 Jun;221(2):216-30. doi: 10.1002/dvdy.1136.
We report the cloning and expression patterns of three novel zebrafish Roundabout homologs. The Roundabout (robo) gene encodes a transmembrane receptor that is essential for axon guidance in Drosophila and Robo family members have been implicated in cell migration. Analysis of extracellular domains and conserved cytoplasmic motifs shows that zebrafish Robo1 and Robo2 are orthologs of mammalian Robo1 and Robo2, respectively, while zebrafish Robo3 is likely to be an ortholog of mouse Rig-1. The three zebrafish robos are expressed in distinct but overlapping patterns during embryogenesis. They are highly expressed in the developing nervous system, including the olfactory system, visual system, hindbrain, cranial ganglia, spinal cord, and posterior lateral line primordium. They are also expressed in several nonneuronal tissues, including somites and fin buds. The timing and patterns of expression suggest roles for zebrafish robos in axon guidance and cell migration. Wiley-Liss, Inc.
我们报道了三种新型斑马鱼Roundabout同源物的克隆及表达模式。Roundabout(robo)基因编码一种跨膜受体,该受体对果蝇轴突导向至关重要,并且Robo家族成员与细胞迁移有关。对细胞外结构域和保守细胞质基序的分析表明,斑马鱼Robo1和Robo2分别是哺乳动物Robo1和Robo2的直系同源物,而斑马鱼Robo3可能是小鼠Rig-1的直系同源物。三种斑马鱼robo在胚胎发育过程中以不同但重叠的模式表达。它们在发育中的神经系统中高度表达,包括嗅觉系统、视觉系统、后脑、颅神经节、脊髓和后侧线原基。它们也在几种非神经组织中表达,包括体节和鳍芽。表达的时间和模式表明斑马鱼robo在轴突导向和细胞迁移中发挥作用。威利-利斯公司