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Ephrin-As are required for the topographic mapping but not laminar choice of physiologically distinct RGC types

机译:地形图需要Ephrin-As而不是层层选择生理学上不同的RGC类型

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摘要

In the retinocollicular projection, the axons from functionally distinct retinal ganglion cell (RGC) types form synapses in a stereotypical manner along the superficial to deep axis of the SC. Each lamina contains an orderly topographic map of the visual scene but different laminae receive inputs from distinct sets of RGCs, and inputs to each lamina are aligned with the others to integrate parallel streams of visual information. To determine the relationship between laminar organization and topography of physiologically defined RGC types, we used genetic and anatomical axon tracing techniques in wild type and ephrin-A mutant mice. We find that adjacent RGCs of the same physiological type can send axons to both ectopic and normal topographic locations, supporting a penetrance model for ephrin-A independent mapping cues. While the overall laminar organization in the SC is unaffected in ephrin-A2/A5 double mutant mice, analysis of the laminar locations of ectopic terminations shows that the topographic maps of different RGC types are misaligned. These data lend support to the hypothesis that the retinocollicular projection is a superimposition of a number of individual 2-D topographic maps that originate from specific types of RGCs, require ephrin-A signaling, and form independently of the other maps.
机译:在视网膜胶状体投影中,功能不同的视网膜神经节细胞(RGC)类型的轴突沿SC的浅轴到深轴以定型方式形成突触。每个薄片包含视觉场景的有序地形图,但是不同的薄片从不同的RGC集接收输入,并且每个薄片的输入与其他薄片对齐,以整合并行的视觉信息流。为了确定生理定义的RGC类型的层状组织与地形之间的关系,我们在野生型和ephrin-A突变小鼠中使用了遗传和解剖轴突追踪技术。我们发现,具有相同生理类型的相邻RGC可以将轴突发送到异位和正常地形位置,从而支持了针对ephrin-A独立映射提示的渗透模型。虽然在ephrin-A2 / A5双突变小鼠中,SC中的整体层状组织不受影响,但对异位末端的层状位置的分析表明,不同RGC类型的地形图未对齐。这些数据为以下假设提供了支持:视网膜胶状体投影是许多单独的2-D地形图的叠加,这些二维图来自于特定类型的RGC,需要ephrin-A信号传导并且独立于其他图而形成。

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