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Robo1 和 2 排斥受体合作指导胚胎小鼠后脑面部神经元细胞迁移和轴突投射。

Robo1 and 2 Repellent Receptors Cooperate to Guide Facial Neuron Cell Migration and Axon Projections in the Embryonic Mouse Hindbrain.

机构信息

Department of Biology, University of Nevada, 1664 N Virginia St, Reno, NV 89557, USA.

Department of Biology, University of Nevada, 1664 N Virginia St, Reno, NV 89557, USA.

出版信息

Neuroscience. 2019 Mar 15;402:116-129. doi: 10.1016/j.neuroscience.2019.01.017. Epub 2019 Jan 24.

Abstract

The facial nerve is necessary for our ability to eat, speak, and make facial expressions. Both the axons and cell bodies of the facial nerve undergo a complex embryonic developmental pattern involving migration of the cell bodies caudally and tangentially through rhombomeres, and simultaneously the axons projecting to exit the hindbrain to form the facial nerve. Our goal in this study was to test the functions of the chemorepulsive receptors Robo1 and Robo2 in facial neuron migration and axon projection by analyzing genetically marked motor neurons in double-mutant mouse embryos through the migration time course, E10.0-E13.5. In Robo1/2 double mutants, axon projection and cell body migration errors were more severe than in single mutants. Most axons did not make it to their motor exit point, and instead projected into and longitudinally within the floor plate. Surprisingly, some facial neurons had multiple axons exiting and projecting into the floor plate. At the same time, a subset of mutant facial cell bodies failed to migrate caudally, and instead either streamed dorsally toward the exit point or shifted into the floor plate. We conclude that Robo1 and Robo2 have redundant functions to guide multiple aspects of the complex cell migration of the facial nucleus, as well as regulating axon trajectories and suppressing formation of ectopic axons.

摘要

面神经对于我们的进食、说话和面部表情功能至关重要。面神经的轴突和细胞体都经历了一个复杂的胚胎发育模式,包括细胞体向尾部和切线方向迁移,同时轴突投射到后脑以形成面神经。我们在这项研究中的目标是通过分析双突变鼠胚胎中基因标记的运动神经元,研究化学排斥受体 Robo1 和 Robo2 在面神经迁移和轴突投射中的功能,通过对 E10.0-E13.5 时间进程的分析。在 Robo1/2 双突变体中,轴突投射和细胞体迁移错误比单突变体更严重。大多数轴突没有到达它们的运动出口点,而是投射到并沿着基板内纵向延伸。令人惊讶的是,一些面神经神经元有多个轴突从基板出口点穿出并投射到基板中。同时,一部分突变体面部细胞体未能向尾部迁移,而是向出口点或向基板内纵向迁移。我们的结论是,Robo1 和 Robo2 具有冗余的功能,可指导面神经核复杂的细胞迁移的多个方面,以及调节轴突轨迹和抑制异位轴突的形成。

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