Sullivan Kelly G, Bashaw Greg J
Department of Neuroscience, Perelman School of Medicine, University of Pennsylvania, Philadelphia, United States.
Elife. 2025 May 23;13:RP92757. doi: 10.7554/eLife.92757.
In both vertebrates and invertebrates, commissural neurons prevent premature responsiveness to the midline repellant Slit by downregulating surface levels of its receptor Roundabout1 (Robo1). In , Commissureless (Comm) plays a critical role in this process; however, there is conflicting data on the underlying molecular mechanism. Here, we demonstrate that the conserved PY motifs in the cytoplasmic domain of Comm are required allow the ubiquitination and lysosomal degradation of Robo1. Disruption of these motifs prevents Comm from localizing to Lamp1 positive late endosomes and to promote axon growth across the midline in vivo. In addition, we conclusively demonstrate a role for Nedd4 in midline crossing. Genetic analysis shows that mutations result in midline crossing defects in the embryonic nerve cord, which can be rescued by introduction of exogenous Nedd4. Biochemical evidence shows that Nedd4 incorporates into a three-member complex with Comm and Robo1 in a PY motif-dependent manner. Finally, we present genetic evidence that Nedd4 acts with Comm in the embryonic nerve cord to downregulate Robo1 levels. Taken together, these findings demonstrate that Comm promotes midline crossing in the nerve cord by facilitating Robo1 ubiquitination by Nedd4, ultimately leading to its degradation.
在脊椎动物和无脊椎动物中,连合神经元通过下调其受体Roundabout1(Robo1)的表面水平来防止对中线排斥分子Slit过早产生反应。在这一过程中,无连合蛋白(Comm)起着关键作用;然而,关于其潜在分子机制的数据存在矛盾。在这里,我们证明Comm细胞质结构域中保守的PY基序是Robo1泛素化和溶酶体降解所必需的。破坏这些基序会阻止Comm定位于Lamp1阳性晚期内体,并促进体内轴突越过中线生长。此外,我们最终证明了Nedd4在中线穿越中的作用。遗传分析表明,突变会导致胚胎神经索中线穿越缺陷,引入外源性Nedd4可以挽救这一缺陷。生化证据表明,Nedd4以PY基序依赖的方式与Comm和Robo1形成三元复合物。最后,我们提供了遗传证据,表明Nedd4在胚胎神经索中与Comm共同作用下调Robo1水平。综上所述,这些发现表明Comm通过促进Nedd4介导的Robo1泛素化来促进神经索中的中线穿越,最终导致其降解。