Marillat Valérie, Sabatier Christelle, Failli Vieri, Matsunaga Eiji, Sotelo Constantino, Tessier-Lavigne Marc, Chédotal Alain
CNRS UMR7102, Université Paris 6, Bâtiment B, Case 12, 9 Quai Saint-Bernard, 75005 Paris, France.
Neuron. 2004 Jul 8;43(1):69-79. doi: 10.1016/j.neuron.2004.06.018.
During development, precerebellar neurons migrate dorsoventrally from the rhombic lip to the floor plate. Some of these neurons cross the midline while others stop. We have identified a role for the slit receptor Rig-1/Robo3 in directing this process. During their tangential migration, neurons of all major hindbrain precerebellar nuclei express high levels of Rig-1 mRNA. Rig-1 expression is rapidly downregulated as their leading process crosses the floor plate. Interestingly, most precerebellar nuclei do not develop normally in Rig-1-deficient mice, as they fail to cross the midline. In addition, inferior olivary neurons, which normally send axons into the contralateral cerebellum, project ipsilaterally in Rig-1 mutant mice. Similarly, neurons of the lateral reticular nucleus and basilar pons are unable to migrate across the floor plate and instead remain ipsilateral. These results demonstrate that Rig-1 controls the ability of both precerebellar neuron cell bodies and their axons to cross the midline.
在发育过程中,小脑前神经元从菱唇向腹侧迁移至底板。其中一些神经元穿过中线,而另一些则停止迁移。我们已经确定缝隙受体Rig-1/Robo3在引导这一过程中发挥作用。在其切向迁移过程中,所有主要后脑小脑前核的神经元均高表达Rig-1 mRNA。当它们的前端穿过底板时,Rig-1表达迅速下调。有趣的是,在Rig-1基因缺失的小鼠中,大多数小脑前核发育不正常,因为它们无法穿过中线。此外,正常情况下将轴突发送到对侧小脑的下橄榄核神经元,在Rig-1突变小鼠中却向同侧投射。同样,外侧网状核和脑桥基底的神经元无法穿过底板,而是停留在同侧。这些结果表明,Rig-1控制着小脑前神经元细胞体及其轴突穿过中线的能力。