Erskine Lynda, Herrera Eloisa
Division of Visual Science, Institute of Ophthalmology, University College London, 11-43 Bath Street, London, EC1V 9EL, UK.
Dev Biol. 2007 Aug 1;308(1):1-14. doi: 10.1016/j.ydbio.2007.05.013. Epub 2007 May 18.
The developing visual system has proven to be one of the most informative models for studying axon guidance decisions. The pathway is composed of the axons of a single neuronal cell type, the retinal ganglion cell (RGC), that navigate through a series of intermediate targets on route to their final destination. The molecular basis of optic pathway development is beginning to be elucidated with cues such as netrins, Slits and ephrins playing a key role. Other factors best characterised for their role as morphogens in patterning developing tissues, such as sonic hedgehog (Shh) and Wnts, also act directly on RGC axons to influence guidance decisions. The transcriptional basis of the spatial-temporal expression of guidance cues and their cognate receptors within the developing optic pathway as well as mechanisms underlying the plasticity of guidance responses also are starting to be understood. This review will focus on our current understanding of the molecular mechanisms directing the early development of functional connections in the developing visual system and the insights these studies have provided into general mechanisms of axon guidance.
发育中的视觉系统已被证明是研究轴突导向决策最具信息价值的模型之一。该通路由单一神经元细胞类型——视网膜神经节细胞(RGC)的轴突组成,这些轴突在通往最终目的地的途中要经过一系列中间靶点。随着诸如网蛋白、Slit蛋白和 Ephrin 蛋白等信号分子发挥关键作用,视觉通路发育的分子基础正开始得到阐明。其他一些在发育中组织的模式形成中作为形态发生素作用最为显著的因子,如音猬因子(Shh)和 Wnt 蛋白,也直接作用于 RGC 轴突以影响导向决策。发育中的视觉通路内导向信号及其同源受体的时空表达的转录基础以及导向反应可塑性的潜在机制也开始为人所理解。本综述将聚焦于我们目前对指导发育中视觉系统功能连接早期发育的分子机制的理解,以及这些研究对轴突导向一般机制所提供的见解。