Department of Neurosurgery, Cathay General Hospital, Taipei 110, Taiwan.
School of Medicine, Fu Jen Catholic University, New Taipei 242, Taiwan.
J Neurosci. 2018 Feb 21;38(8):2043-2056. doi: 10.1523/JNEUROSCI.2257-17.2018. Epub 2018 Jan 23.
The precise assembly of a functional nervous system relies on the guided migration of axonal growth cones, which is made possible by signals transmitted to the cytoskeleton by cell surface-expressed guidance receptors. We investigated the function of ephexin1, a Rho guanine nucleotide exchange factor, as an essential growth-cone guidance intermediary in the context of spinal lateral motor column (LMC) motor axon trajectory selection in the limb mesenchyme. Using mRNA detection, we first show that ephexin1 is expressed in LMC neurons of chick and mouse embryos at the time of spinal motor axon extension into the limb. Ephexin1 loss of function and gain of function using electroporation in chick LMC neurons, of either sex, perturbed LMC axon trajectory selection, demonstrating an essential role of ephexin1 in motor axon guidance. In addition, ephexin1 loss in mice of either sex led to LMC axon trajectory selection errors. We also show that ephexin1 knockdown attenuates the growth preference of LMC neurites against ephrins and Eph receptor-mediated retargeting of LMC axons , suggesting that ephexin1 is required in Eph-mediated LMC motor axon guidance. Finally, both ephexin1 knockdown and ectopic expression of nonphosphorylatable ephexin1 mutant attenuated the retargeting of LMC axons caused by Src overexpression, implicating ephexin1 as an Src target in Eph signal relay in this context. In summary, our findings demonstrate that ephexin1 is essential for motor axon guidance and suggest an important role in relaying ephrin:Eph signals that mediate motor axon trajectory selection. The proper development of functioning neural circuits requires precise nerve connections among neurons or between neurons and their muscle targets. The Eph tyrosine kinase receptors expressed in neurons are important in many contexts during neural-circuit formation, such as axon outgrowth, axon guidance, and synaptic formation, and have been suggested to be involved in neurodegenerative disorders, including amyotrophic lateral sclerosis and Alzheimer's disease. To dissect the mechanism of Eph signal relay, we studied ephexin1 gain of function and loss of function and found ephexin1 essential for the development of limb nerves toward their muscle targets, concluding that it functions as an intermediary to relay Eph signaling in this context. Our work could thus shed new light on the molecular mechanisms controlling neuromuscular connectivity during embryonic development.
精确组装功能性神经系统依赖于轴突生长锥的导向迁移,这是通过细胞表面表达的导向受体向细胞骨架传递信号来实现的。我们研究了 Eph 家族受体的一个小 GTP 酶 Rho 鸟嘌呤核苷酸交换因子(Rho GEF)ephexin1 在脊髓外侧运动柱(LMC)运动轴突在肢体间质中选择轨迹中的作用,作为一个必不可少的生长锥导向中介。我们首先使用 mRNA 检测,在鸡和鼠胚胎脊髓运动轴突延伸到肢体时,显示 ephexin1 在 LMC 神经元中表达。我们使用电穿孔在鸡 LMC 神经元中进行 ephexin1 的功能丧失和功能获得,无论是雄性还是雌性,都会扰乱 LMC 轴突轨迹选择,证明了 ephexin1 在运动轴突导向中的重要作用。此外,无论雄性还是雌性的 ephexin1 缺失小鼠都会导致 LMC 轴突轨迹选择错误。我们还表明,ephexin1 敲低会减弱 LMC 突起对 Eph 受体配体 ephrins 的生长偏好和 LMC 轴突的 Eph 受体介导的重新靶向,这表明 ephexin1 在 Eph 介导的 LMC 运动轴突导向中是必需的。最后,ephexin1 敲低和非磷酸化的 ephexin1 突变体的异位表达都减弱了 Src 过表达引起的 LMC 轴突的重新靶向,这表明 ephexin1 是 Eph 信号转导中Src 靶点在这种情况下的中继。总之,我们的发现表明 ephexin1 是运动轴突导向所必需的,并表明它在中继介导运动轴突轨迹选择的 Eph 受体配体信号中起着重要作用。功能神经回路的正常发育需要神经元之间或神经元与其肌肉靶标之间的精确神经连接。在神经回路形成的许多情况下,神经元中表达的 Eph 酪氨酸激酶受体都很重要,例如轴突生长、轴突导向和突触形成,并被认为与神经退行性疾病有关,包括肌萎缩侧索硬化症和阿尔茨海默病。为了解剖 Eph 信号转导的机制,我们研究了 ephexin1 的功能获得和功能丧失,发现 ephexin1 对肢体神经向其肌肉靶标发育是必需的,这表明它在这种情况下作为 Eph 信号转导的中继发挥作用。我们的工作可以为控制胚胎发育过程中神经肌肉连接的分子机制提供新的认识。