首页> 美国卫生研究院文献>The Journal of Neuroscience >Hermes Regulates Axon Sorting in the Optic Tract by Post-Trancriptional Regulation of Neuropilin 1
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Hermes Regulates Axon Sorting in the Optic Tract by Post-Trancriptional Regulation of Neuropilin 1

机译:爱马仕通过转录后调节Neuropilin 1调节视轴中的轴突排序。

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摘要

The establishment of precise topographic maps during neural development is facilitated by the presorting of axons in the pathway before they reach their targets. In the vertebrate visual system, such topography is seen clearly in the optic tract (OT) and in the optic radiations. However, the molecular mechanisms involved in pretarget axon sorting are poorly understood. Here, we show in zebrafish that the RNA-binding protein Hermes, which is expressed exclusively in retinal ganglion cells (RGCs), is involved in this process. Using a RiboTag approach, we show that Hermes acts as a negative translational regulator of specific mRNAs in RGCs. One of these targets is the guidance cue receptor Neuropilin 1 (Nrp1), which is sensitive to the repellent cue Semaphorin 3A (Sema3A). Hermes knock-down leads to topographic missorting in the OT through the upregulation of Nrp1. Restoring Nrp1 to appropriate levels in Hermes-depleted embryos rescues this effect and corrects the axon-sorting defect in the OT. Our data indicate that axon sorting relies on Hermes-regulated translation of Nrp1.>SIGNIFICANCE STATEMENT An important mechanism governing the formation of the mature neural map is pretarget axon sorting within the sensory tract; however, the molecular mechanisms involved in this process remain largely unknown. The work presented here reveals a novel function for the RNA-binding protein Hermes in regulating the topographic sorting of retinal ganglion cell (RGC) axons in the optic tract and tectum. We find that Hermes negatively controls the translation of the guidance cue receptor Neuropilin-1 in RGCs, with Hermes knock-down resulting in aberrant growth cone cue sensitivity and axonal topographic misprojections. We characterize a novel RNA-based mechanism by which axons restrict their translatome developmentally to achieve proper targeting.
机译:在神经发育过程中,轴突在到达目标之前就进行了预分类,从而有助于建立精确的地形图。在脊椎动物的视觉系统中,这种地形在视线(OT)和光辐射中清晰可见。但是,涉及预靶轴突分选的分子机制了解甚少。在这里,我们在斑马鱼中显示了仅在视网膜神经节细胞(RGCs)中表达的RNA结合蛋白爱马仕(Hermes)参与了此过程。使用RiboTag方法,我们显示爱马仕在RGC中充当特定mRNA的负翻译调节因子。这些靶标之一是引导提示受体Neuropilin 1(Nrp1),它对驱避提示信号量3A(Sema3A)敏感。 Hermes连锁反应通过上调Nrp1导致OT中的地形缺失。将Nrp1恢复至Hermes耗竭的胚胎中的适当水平可以挽救这种效应,并纠正OT中的轴突分选缺陷。我们的数据表明,轴突排序依赖于Hermes调节的Nrp1的翻译。>重要意义声明:控制成熟神经图谱形成的重要机制是靶标轴突在感觉道内的分类。然而,这个过程中涉及的分子机制仍然未知。本文介绍的工作揭示了RNA结合蛋白爱马仕(Hermes)在调节视神经束和皮层中视网膜神经节细胞(RGC)轴突的拓扑分类中的新功能。我们发现,爱马仕负向控制RGCs中的指导提示受体Neuropilin-1的翻译,与爱马仕敲低导致异常的生长锥提示灵敏度和轴突地形图放错。我们表征了一种新型的基于RNA的机制,通过该机制轴突可以限制其跨转录组的发育以实现正确的靶向。

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