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轴突蛋白-1表达的超微结构观察:对感觉轴突在向鸡后肢轴突生长过程中束状化的影响

Ultrastructural observations on the expression of axonin-1: implications for the fasciculation of sensory axons during axonal outgrowth into the chick hindlimb.

作者信息

Xue Y, Honig M G

机构信息

Department of Anatomy and Neurobiology, University of Tennessee, College of Medicine, Memphis 38163, USA.

出版信息

J Comp Neurol. 1999 Jun 7;408(3):299-317. doi: 10.1002/(sici)1096-9861(19990607)408:3<299::aid-cne1>3.0.co;2-n.

Abstract

To help understand how axons interact as they grow into the developing chick hindlimb, we used electron microscopy in conjunction with immunoperoxidase staining for the cell adhesion molecule axonin-1 to label sensory axons. The results showed that sensory axons travel together in bundles, tightly apposed to one another. In contrast, motoneuron axons are more widely spaced, although motoneuron axons situated at the perimeter of sensory axon bundles are found in close contact with neighboring sensory axons. Sensory growth cones and lamellipodia tend to be located centrally within the bundles, with several lamellipodia typically being found stacked together. Strikingly, regions of close axonal apposition are accompanied by axonin-1 expression, suggesting that such contacts are indeed adhesive. Taken together, these observations suggest that groups of sensory axons of a similar age grow together, with some of the older sensory axons fasciculating along motoneuron axons and younger sensory axons later fasciculating along older sensory axons. Axons situated at the periphery of sensory bundles are typically partly labelled, such that axonin-1 is expressed on membranes apposing other labelled axons but not on those facing unlabelled axons or unlabelled Schwann cells. Thus, axonin-1 appears to become redistributed within the membranes of axons growing into the limb, as it does on cultured neurons. In contrast, the neuron-glia cell adhesion molecule (NgCAM), which binds heterophilically to axonin-1, appears uniformly distributed on even those axons that would have an asymmetric distribution of axonin-1. Thus, the localization of axonin-1 strongly suggests that it plays an important role in sensory axon fasciculation, but the relative contributions of its interactions with various potential ligands are unclear. Finally, we found that some sensory growth cones have lamellipodia that are spread over considerable expanses. This suggests that although fasciculation is important in sensory axon guidance, sensory axons may also explore the local environment.

摘要

为了帮助理解轴突在生长进入发育中的鸡后肢时是如何相互作用的,我们使用电子显微镜结合针对细胞粘附分子轴突蛋白-1的免疫过氧化物酶染色来标记感觉轴突。结果显示,感觉轴突成束一起行进,彼此紧密相邻。相比之下,运动神经元轴突的间距更大,不过位于感觉轴突束周边的运动神经元轴突与相邻的感觉轴突紧密接触。感觉生长锥和片状伪足往往位于束的中央,通常会发现几个片状伪足堆叠在一起。引人注目的是,轴突紧密相邻的区域伴有轴突蛋白-1的表达,这表明这种接触确实具有粘附性。综合这些观察结果表明,年龄相近的感觉轴突群一起生长,一些较老的感觉轴突沿着运动神经元轴突成束,而较年轻的感觉轴突后来沿着较老的感觉轴突成束。位于感觉束周边的轴突通常部分被标记,使得轴突蛋白-1在与其他标记轴突相对的膜上表达,但在与未标记轴突或未标记施万细胞相对的膜上不表达。因此,轴突蛋白-1似乎在生长进入肢体的轴突膜内重新分布,就像在培养的神经元上一样。相比之下,与轴突蛋白-1异性结合的神经元-胶质细胞粘附分子(NgCAM),即使在那些轴突蛋白-1分布不对称的轴突上也似乎均匀分布。因此,轴突蛋白-1的定位强烈表明它在感觉轴突成束中起重要作用,但其与各种潜在配体相互作用的相对贡献尚不清楚。最后,我们发现一些感觉生长锥具有延伸到相当大面积的片状伪足。这表明虽然成束在感觉轴突导向中很重要,但感觉轴突也可能探索局部环境。

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