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Neuron Glia-Related Cell Adhesion Molecule (NrCAM) Promotes Topographic Retinocollicular Mapping

机译:神经元胶质细胞黏附分子(NrCAM)促进视网膜胶体地形图。

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摘要

NrCAM (Neuron-glial related cell adhesion molecule), a member of the L1 family of cell adhesion molecules, reversibly binds ankyrin and regulates axon growth, but it has not been studied for a role in retinotopic mapping. During development of retino-collicular topography, NrCAM was expressed uniformly in retinal ganglion cells (RGCs) along both mediolateral and anteroposterior retinal axes, and was localized on RGC axons within the optic tract and superior colliculus (SC). Anterograde tracing of RGC axons in NrCAM null mutant mice at P10, when the map resembles its mature form, revealed laterally displaced ectopic termination zones (eTZs) of axons from the temporal retina, indicating defective mediolateral topography, which is governed by ephrinB/EphBs. Axon tracing at P2 revealed that interstitial branch orientation of ventral-temporal RGC axons in NrCAM null mice was compromised in the medial direction, likely accounting for displacement of eTZs. A similar retinocollicular targeting defect in EphB mutant mice suggested that NrCAM and EphB interact to regulate mediolateral retino-collicular targeting. We found that EphB2 tyrosine kinase but not an EphB2 kinase dead mutant, phosphorylated NrCAM at a conserved tyrosine residue in the FIGQY ankyrin binding motif, perturbing ankyrin recruitment in NrCAM transfected HEK293 cells. Furthermore, the phosphorylation of NrCAM at FIGQY in SC was decreased in EphB1/3 and EphB1/2/3 null mice compared to WT, while phospho-FIGQY of NrCAM in SC was increased in EphB2 constitutively active (F620D/F620D) mice. These results demonstrate that NrCAM contributes to mediolateral retinocollicular axon targeting by regulating RGC branch orientation through a likely mechanism in which ephrinB/EphB phosphorylates NrCAM to modulate linkage to the actin cytoskeleton.
机译:NrCAM(神经胶质细胞相关的细胞粘附分子)是细胞粘附分子L1家族的成员,可逆地结合锚蛋白并调节轴突生长,但尚未研究其在视网膜定位中的作用。在视网膜-胶状体地形图的形成过程中,NrCAM在视网膜中轴沿视网膜的内侧和后侧均在视网膜神经节细胞(RGC)中均匀表达,并位于视神经束和上丘(SC)内的RGC轴突上。当NrCAM空突变小鼠的RGC轴突在地图上类似于其成熟形式时,其RGC轴突的顺行性示踪显示了颞视网膜轴突的侧向异位终止区(eTZs),表明有缺陷的前外侧形貌受ephrinB / EphBs控制。在P2的轴突追踪显示,NrCAM null小鼠的腹颞RGC轴突的间质分支方向在内侧方向上受到损害,这可能是eTZ位移的原因。 EphB突变小鼠中的类似视网膜胶体靶向缺陷提示NrCAM和EphB相互作用以调节中外侧视网膜胶体靶向。我们发现EphB2酪氨酸激酶但不是EphB2激酶死亡突变体,在FIGQY锚蛋白结合基序中的保守酪氨酸残基处磷酸化了NrCAM,干扰了NrCAM转染的HEK293细胞中的锚蛋白募集。此外,与WT相比,EphB1 / 3和EphB1 / 2/3缺失小鼠中SC中FIGQY处NrCAM的磷酸化降低,而EphB2组成型活性(F620D / F620D)小鼠中SC中NrCAM的磷酸化FIGQY增加。这些结果表明,NrCAM通过一种可能的机制调节RGC分支的方向,从而有助于中视网膜视网膜胶质轴突的靶向,其中ephrinB / EphB磷酸化NrCAM来调节与肌动蛋白细胞骨架的连接。

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