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Role of EphA/ephrin-A signaling in the development of topographic maps in mouse corticothalamic projections

机译:Epha / Ephrin-a信令在鼠标皮质塔米菌预测中的地形图中的作用

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摘要

Corticothalamic (CT) feedback outnumbers thalamocortical projections, and regulates sensory information processing at the level of the thalamus. It is well established that EphA7, a member of EphA receptor family, is involved in the topographic mapping of CT projections. The aim of the present study is to dissect the precise impact of EphA7 on each step of CT growth. We used in utero electroporation-mediated EphA7 overexpression in developing somatosensory CT axons to dissect EphA7/ephrin-A-dependent mechanisms involved in regulating both initial targeting and postnatal growth of the CT projections. Our data revealed that topographic maps of cortical afferents in the ventrobasal complex and medial part of the posterior complex in the thalamus become discernible shortly after birth and are fully established by the second postnatal week. This process starts with the direct ingrowth of the CT axons to the designated areas within target thalamic nuclei and by progressive increase of axonal processes in the terminal zones. Large-scale overproduction and elimination of exuberant widespread axonal branches outside the target zone was not observed. Each developmental event was coordinated by spatially and temporally different responsiveness of CT axons to the ephrin-A gradient in thalamic nuclei, as well as by the matching levels of EphA7 in CT axons and ephrin-As in thalamic nuclei. These results support the concept that the topographic connections between the maps in the cerebral cortex and corresponding thalamic nuclei are genetically pre-specified to a large extent, and established by precise spatio-temporal molecular mechanisms that involve the Eph family of genes.
机译:皮质丘脑(CT)反馈的数量超过丘脑皮质投影,并调节丘脑水平的感觉信息处理。众所周知,EphA受体家族的一个成员EphA7参与了CT投影的地形图绘制。本研究的目的是剖析EphA7对CT增长的每个步骤的精确影响。我们在子宫体电穿孔介导的EphA7过表达中使用了发育中的体感CT轴突,以剖析EphA7 / ephrin-A依赖的机制,该机制涉及调节CT投射的最初目标和出生后的生长。我们的数据显示,丘脑腹侧复合体和丘脑后复合体中部皮质传入神经的地形图在出生后不久就可以辨认,并在产后第二周完全建立。该过程从CT轴突直接向内生长到目标丘脑核内的指定区域开始,并逐渐增加末端区域的轴突过程。没有观察到大规模过量生产和消除了目标区域外旺盛的轴突分支。每个发育事件都由丘脑核中轴突对ephrin-A梯度的时空响应不同,以及丘脑核中轴突与ephrin-As的EphA7匹配水平相协调。这些结果支持了这样的概念,即大脑皮层中的图谱和相应的丘脑核之间的拓扑连接在很大程度上是遗传预先指定的,并且是通过涉及Eph基因家族的精确时空分子机制建立的。

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