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Ret is a multifunctional coreceptor that integrates diffusible- and contact-axon guidance signals

机译:Ret是一种多功能共感器,集成了可扩散和接触轴突的引导信号

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摘要

Growing axons encounter multiple guidance cues, but it is unclear how separate signals are resolved and integrated into coherent instructions for growth cone navigation. We report that glycosylphosphatidylinositol (GPI)-anchored ephrin-As function as "reverse" signaling receptors for motor axons when contacted by transmembrane EphAs present in the dorsal limb. Ephrin-A receptors are thought to depend on transmembrane coreceptors for transmitting signals intracellularly. We show that the receptor tyrosine kinase Ret is required for motor axon attraction mediated by ephrin-A reverse signaling. Ret also mediates GPI-anchored GFRα1 signaling in response to GDNF, a diffusible chemoattractant in the limb, indicating that Ret is a multifunctional coreceptor for guidance molecules. Axons respond synergistically to coactivation by GDNF and EphA ligands, and these cooperative interactions are gated by GFRα1 levels. Our studies uncover a hierarchical GPI-receptor signaling network that is constructed from combinatorial components and integrated through Ret using ligand coincidence detection.
机译:生长中的轴突会遇到多种引导线索,但是目前尚不清楚如何分解单独的信号并将其整合到用于生长锥导航的连贯指令中。我们报告说,糖基磷脂酰肌醇(GPI)锚定的ephrin-As可以作为运动轴突的“反向”信号受体,当与背肢中存在的跨膜EphAs接触时。 Ephrin-A受体被认为依赖跨膜共受体在细胞内传递信号。我们表明受体酪氨酸激酶Ret是由ephrin-A反向信号介导的运动轴突吸引所必需的。 Ret还响应GDNF(肢体中可扩散的化学引诱剂)而介导GPI锚定的GFRα1信号传导,表明Ret是导向分子的多功能共受体。轴突对GDNF和EphA配体的共激活具有协同反应,而这些协同相互作用受GFRα1水平控制。我们的研究揭示了一个层次化的GPI受体信号网络,该网络由组合组件构成,并通过Ret使用配体符合检测技术进行整合。

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