Department of Biological Sciences, University of South Carolina, Columbia, SC 29208, USA.
Int J Mol Sci. 2020 Jul 21;21(14):5170. doi: 10.3390/ijms21145170.
The development of neural circuits is a complex process that relies on the proper navigation of axons through their environment to their appropriate targets. While axon-environment and axon-target interactions have long been known as essential for circuit formation, communication between axons themselves has only more recently emerged as another crucial mechanism. Trans-axonal signaling governs many axonal behaviors, including fasciculation for proper guidance to targets, defasciculation for pathfinding at important choice points, repulsion along and within tracts for pre-target sorting and target selection, repulsion at the target for precise synaptic connectivity, and potentially selective degeneration for circuit refinement. This review outlines the recent advances in identifying the molecular mechanisms of trans-axonal signaling and discusses the role of axon-axon interactions during the different steps of neural circuit formation.
神经回路的发育是一个复杂的过程,依赖于轴突通过其环境正确导航到其适当的靶标。虽然轴突-环境和轴突-靶标相互作用早已被认为是回路形成所必需的,但轴突之间的通信最近才被认为是另一个关键机制。轴间信号转导控制着许多轴突行为,包括为正确导向靶标而进行的纤维集结,在重要选择点进行的解集结以进行路径寻找,在轨迹内和轨迹内进行的排斥以进行预靶标分拣和靶标选择,在靶标处进行的排斥以实现精确的突触连接,以及可能用于回路细化的选择性退化。本综述概述了鉴定轴间信号转导分子机制的最新进展,并讨论了轴突-轴突相互作用在神经回路形成的不同步骤中的作用。