School of Life Science and Technology, the Key Laboratory of Developmental Genes and Human Disease, Southeast University, Nanjing, China.
Co-innovation Center of Neuroregeneration, Nantong University, Nantong, China.
Elife. 2024 Jul 25;13:RP96041. doi: 10.7554/eLife.96041.
Axon projection is a spatial- and temporal-specific process in which the growth cone receives environmental signals guiding axons to their final destination. However, the mechanisms underlying changes in axonal projection direction without well-defined landmarks remain elusive. Here, we present evidence showcasing the dynamic nature of axonal projections in 's small ventral lateral clock neurons (s-LNvs). Our findings reveal that these axons undergo an initial vertical projection in the early larval stage, followed by a subsequent transition to a horizontal projection in the early-to-mid third instar larvae. The vertical projection of s-LNv axons correlates with mushroom body calyx expansion, while the s-LNv-expressed Down syndrome cell adhesion molecule (Dscam1) interacts with Netrins to regulate the horizontal projection. During a specific temporal window, locally newborn dorsal clock neurons secrete Netrins, facilitating the transition of axonal projection direction in s-LNvs. Our study establishes a compelling in vivo model to probe the mechanisms of axonal projection direction switching in the absence of clear landmarks. These findings underscore the significance of dynamic local microenvironments in the complementary regulation of axonal projection direction transitions.
轴突投射是一个空间和时间特异性的过程,在此过程中生长锥接收环境信号,引导轴突到达其最终目的地。然而,对于没有明确地标存在的情况下轴突投射方向变化的机制仍然难以捉摸。在这里,我们提供了证据,展示了“小腹侧外侧钟神经元(s-LNv)”中轴突投射的动态性质。我们的研究结果表明,这些轴突在早期幼虫阶段首先进行垂直投射,然后在早期到中期的第三龄幼虫阶段转变为水平投射。s-LNv 轴突的垂直投射与蘑菇体蕈帽扩张相关,而表达于 s-LNv 的唐氏综合征细胞黏附分子(Dscam1)与 Netrins 相互作用,以调节水平投射。在特定的时间窗口内,局部新生的背侧钟神经元分泌 Netrins,促进 s-LNv 轴突投射方向的转变。我们的研究建立了一个引人注目的体内模型,以探究在没有明确地标存在的情况下轴突投射方向转变的机制。这些发现强调了动态局部微环境在互补调节轴突投射方向转变中的重要性。