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层粘连蛋白及层粘连蛋白/纤连蛋白受体复合物在视网膜神经节细胞轴突生长中的作用。

The role of laminin and the laminin/fibronectin receptor complex in the outgrowth of retinal ganglion cell axons.

作者信息

Cohen J, Burne J F, McKinlay C, Winter J

出版信息

Dev Biol. 1987 Aug;122(2):407-18. doi: 10.1016/0012-1606(87)90305-8.

Abstract

Chick embryo retinal ganglion cell (RGC) axons grow to the optic tectum along a stereotyped route, as if responding to cues distributed along the pathway. We showed previously that, in culture, RGCs from embryonic Day 6 retina are responsive to the neurite-promoting effects of the extracellular matrix glycoprotein laminin and that this response is lost by RGCs at a later stage of development. Here we report that, before axon outgrowth is initiated in vivo, laminin, is expressed along the optic pathway at nonbasal lamina sites that are accessible to the growth cones of RGC axons. The distribution of laminin within the pathway is consistent with its localization at the end-feet of neuroepithelial cells that line the route, and it continues to be expressed at these marginal sites during the first week of embryonic development. At later stages, concomitant with the loss of response by RGCs in culture, laminin becomes restricted to basal laminae at the retinal inner limiting membrane and pial surface of the optic pathway. Neurofilament-positive RGC axons bind a monoclonal antibody, JG22, which recognizes the laminin/fibronectin receptor complex, and continue to do so throughout embryonic development. We show that, in vitro, the JG22 antigen expressed by RGCs appears to function as a laminin receptor, by demonstrating that JG22 antibody blocks neurite outgrowth on a substrate of laminin. These findings are consistent with the possibility that laminin defines a transient performed pathway specifically recognized by early RGC growth cones as they navigate toward their central target.

摘要

鸡胚视网膜神经节细胞(RGC)轴突沿着一条固定的路径生长到视顶盖,就好像是对沿该路径分布的线索做出反应。我们之前表明,在培养中,来自胚胎第6天视网膜的RGC对细胞外基质糖蛋白层粘连蛋白的神经突促进作用有反应,并且这种反应在发育后期的RGC中消失。在这里我们报告,在体内轴突生长开始之前,层粘连蛋白沿着视神经通路在RGC轴突生长锥可及的非基底层部位表达。层粘连蛋白在通路内的分布与其在沿该路径排列的神经上皮细胞终足处的定位一致,并且在胚胎发育的第一周期间它在这些边缘部位持续表达。在后期,伴随着培养中RGC反应的丧失,层粘连蛋白局限于视网膜内界膜和视神经通路软膜表面的基底层。神经丝阳性的RGC轴突结合一种单克隆抗体JG22,该抗体识别层粘连蛋白/纤连蛋白受体复合物,并且在整个胚胎发育过程中一直如此。我们表明,在体外,通过证明JG22抗体阻断在层粘连蛋白底物上的神经突生长,RGC表达的JG22抗原似乎作为层粘连蛋白受体发挥作用。这些发现与层粘连蛋白定义了一条早期RGC生长锥在向其中心靶标导航时特异性识别的短暂预成通路的可能性一致。

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