Miyasaka Nobuhiko, Sato Yuki, Yeo Sang-Yeob, Hutson Lara D, Chien Chi-Bin, Okamoto Hitoshi, Yoshihara Yoshihiro
Laboratory for Neurobiology of Synapse, RIKEN Brain Science Institute, 2-1 Hirosawa, Wako-shi, Saitama 351-0198, Japan.
Development. 2005 Mar;132(6):1283-93. doi: 10.1242/dev.01698. Epub 2005 Feb 16.
Olfactory sensory neurons (OSNs) expressing a given odorant receptor project their axons to specific glomeruli, creating a topographic odor map in the olfactory bulb (OB). The mechanisms underlying axonal pathfinding of OSNs to their precise targets are not fully understood. Here, we demonstrate that Robo2/Slit signaling functions to guide nascent olfactory axons to the OB primordium in zebrafish. robo2 is transiently expressed in the olfactory placode during the initial phase of olfactory axon pathfinding. In the robo2 mutant, astray (ast), early growing olfactory axons misroute ventromedially or posteriorly, and often penetrate into the diencephalon without reaching the OB primordium. Four zebrafish Slit homologs are expressed in regions adjacent to the olfactory axon trajectory, consistent with their role as repulsive ligands for Robo2. Masking of endogenous Slit gradients by ubiquitous misexpression of Slit2 in transgenic fish causes posterior pathfinding errors that resemble the ast phenotype. We also found that the spatial arrangement of glomeruli in OB is perturbed in ast adults, suggesting an essential role for the initial olfactory axon scaffold in determining a topographic glomerular map. These data provide functional evidence for Robo2/Slit signaling in the establishment of olfactory neural circuitry in zebrafish.
表达特定气味受体的嗅觉感觉神经元(OSN)将其轴突投射到特定的嗅小球,在嗅球(OB)中形成一个拓扑气味图谱。OSN轴突寻找其精确靶点的潜在机制尚未完全了解。在这里,我们证明Robo2/Slit信号传导在引导斑马鱼新生嗅觉轴突至OB原基中发挥作用。在嗅觉轴突寻路的初始阶段,robo2在嗅基板中短暂表达。在robo2突变体astray(ast)中,早期生长的嗅觉轴突向腹内侧或后方误路,并且常常在未到达OB原基的情况下侵入间脑。四个斑马鱼Slit同源物在与嗅觉轴突轨迹相邻的区域表达,这与其作为Robo2的排斥性配体的作用一致。在转基因鱼中通过普遍错误表达Slit2对内源Slit梯度进行掩盖会导致类似于ast表型的后方寻路错误。我们还发现,ast成年鱼的OB中嗅小球的空间排列受到干扰,这表明初始嗅觉轴突支架在确定拓扑嗅小球图谱中起着重要作用。这些数据为Robo2/Slit信号传导在斑马鱼嗅觉神经回路建立中的作用提供了功能证据。