首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The L1 cell adhesion molecule is essential for topographic mapping of retinal axons.
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The L1 cell adhesion molecule is essential for topographic mapping of retinal axons.

机译:L1细胞粘附分子对于视网膜轴突的地形图绘制至关重要。

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摘要

The retinocollicular projection is a preferred axon guidance pathway for investigating molecular mechanisms of synaptic targeting in the mammalian CNS. Here we identify a previously unrecognized role of the L1 cell adhesion molecule in topographic mapping of retinal ganglion cell (RGC) axons to their targets in the mouse superior colliculus (SC). L1 was transiently expressed on RGC axons during axon growth and targeting. DiI labeling of retinal axons revealed that temporal axons of L1-minus mice bypassed correct target locations in the anterior SC, forming termination zones at incorrect posterior sites, which were often skewed along the mediolateral axis. During development of the retinotopic map L1-minus temporal axons extended across the anteroposterior axis of the SC like wild-type axons but failed to arborize at normal anterior target sites. L1-minus RGC axons exhibited normal crossing at the optic chiasm and fasciculation of the optic nerve. Results suggest that retinal axons require the function of L1 in addition to repellent EphA guidance receptors to achieve proper topographic mapping.
机译:视网膜胶状体投射是用于研究哺乳动物CNS中突触靶向的分子机制的优选的轴突引导途径。在这里,我们确定了以前无法识别的L1细胞粘附分子在视网膜神经节细胞(RGC)轴突到小鼠上丘(SC)靶标的地形图中的作用。 L1在轴突生长和靶向过程中在RGC轴突上瞬时表达。视网膜轴突的DiI标记显示,L1负鼠的颞轴突绕过了前SC中的正确目标位置,在不正确的后部部位形成了终止区,这些部位通常沿中外侧轴倾斜。在视网膜图谱的发展过程中,L1减去颞轴突像野生型轴突一样横穿SC的前后轴延伸,但无法在正常的前靶部位乔木。 L1减RGC轴突在视神经交叉处正常交叉,并且视神经束缚。结果表明,视网膜轴突除了具有驱避作用的EphA引导受体外,还需要L1的功能才能实现正确的地形图绘制。

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