Siegenthaler Dominique, Enneking Eva-Maria, Moreno Eliza, Pielage Jan
Friedrich Miescher Institute for Biomedical Research, 4058 Basel, Switzerland University of Basel, 4003 Basel, Switzerland.
Friedrich Miescher Institute for Biomedical Research, 4058 Basel, Switzerland.
J Cell Biol. 2015 Mar 30;208(7):1003-18. doi: 10.1083/jcb.201407131.
The establishment of neuronal circuits depends on the guidance of axons both along and in between axonal populations of different identity; however, the molecular principles controlling axon-axon interactions in vivo remain largely elusive. We demonstrate that the Drosophila melanogaster L1CAM homologue Neuroglian mediates adhesion between functionally distinct mushroom body axon populations to enforce and control appropriate projections into distinct axonal layers and lobes essential for olfactory learning and memory. We addressed the regulatory mechanisms controlling homophilic Neuroglian-mediated cell adhesion by analyzing targeted mutations of extra- and intracellular Neuroglian domains in combination with cell type-specific rescue assays in vivo. We demonstrate independent and cooperative domain requirements: intercalating growth depends on homophilic adhesion mediated by extracellular Ig domains. For functional cluster formation, intracellular Ankyrin2 association is sufficient on one side of the trans-axonal complex whereas Moesin association is likely required simultaneously in both interacting axonal populations. Together, our results provide novel mechanistic insights into cell adhesion molecule-mediated axon-axon interactions that enable precise assembly of complex neuronal circuits.
神经元回路的建立依赖于轴突在不同特性的轴突群体之间以及群体内部的导向;然而,体内控制轴突 - 轴突相互作用的分子机制在很大程度上仍不清楚。我们证明,果蝇L1细胞粘附分子(L1CAM)的同源物神经胶质蛋白(Neuroglian)介导功能不同的蘑菇体轴突群体之间的粘附,以加强和控制向不同轴突层和叶的适当投射,这些对于嗅觉学习和记忆至关重要。我们通过分析细胞外和细胞内神经胶质蛋白结构域的靶向突变,并结合体内细胞类型特异性拯救试验,探讨了控制同源性神经胶质蛋白介导的细胞粘附的调控机制。我们证明了结构域的独立和协同需求:插入生长依赖于细胞外免疫球蛋白(Ig)结构域介导的同源性粘附。对于功能性簇的形成,细胞内锚蛋白2(Ankyrin2)的结合在跨轴突复合体的一侧就足够了,而肌动蛋白结合蛋白(Moesin)的结合可能在两个相互作用的轴突群体中同时需要。总之,我们的结果为细胞粘附分子介导的轴突 - 轴突相互作用提供了新的机制见解,这使得复杂神经元回路能够精确组装。