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Slit-Dependent Endocytic Trafficking of the Robo Receptor Is Required for Son of Sevenless Recruitment and Midline Axon Repulsion

机译:机器人的无情招募和中线轴突排斥力需要狭缝依赖性内吞性机器人受体的内吞贩运。

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摘要

Understanding how axon guidance receptors are activated by their extracellular ligands to regulate growth cone motility is critical to learning how proper wiring is established during development. Roundabout (Robo) is one such guidance receptor that mediates repulsion from its ligand Slit in both invertebrates and vertebrates. Here we show that endocytic trafficking of the Robo receptor in response to Slit-binding is necessary for its repulsive signaling output. Dose-dependent genetic interactions and in vitro Robo activation assays support a role for Clathrin-dependent endocytosis, and entry into both the early and late endosomes as positive regulators of Slit-Robo signaling. We identify two conserved motifs in Robo’s cytoplasmic domain that are required for its Clathrin-dependent endocytosis and activation in vitro; gain of function and genetic rescue experiments provide strong evidence that these trafficking events are required for Robo repulsive guidance activity in vivo. Our data support a model in which Robo’s ligand-dependent internalization from the cell surface to the late endosome is essential for receptor activation and proper repulsive guidance at the midline by allowing recruitment of the downstream effector Son of Sevenless in a spatially constrained endocytic trafficking compartment.
机译:了解轴突指导受体如何被其胞外配体激活以调节生长锥的运动性对于了解发育过程中如何建立正确的接线至关重要。回旋处(Roboabout)是一种这样的引导受体,其在无脊椎动物和脊椎动物中介导其配体Slit的排斥。在这里,我们表明响应狭缝结合的机器人受体的内吞运输是其排斥信号输出所必需的。剂量依赖性遗传相互作用和体外Robo激活试验支持网格蛋白依赖性内吞作用,并作为Slit-Robo信号的正向调节剂进入早期和晚期内体。我们在Robo的胞质结构域中确定了两个保守的基序,这是其依赖网格蛋白的内吞作用和体外激活所必需的;功能的获得和基因拯救实验提供了有力的证据,证明这些贩运事件是体内Robo排斥指导活动所必需的。我们的数据支持一种模型,其中Robo从细胞表面到晚期内体的依赖配体的内化对于受体激活和中线的适当排斥指导至关重要,这是通过允许在空间受限的内吞运输小室中募集下游效应子七人之子。

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