Bastmeyer M, Ott H, Leppert C A, Stuermer C A
Faculty of Biology, University of Konstanz, Germany.
J Cell Biol. 1995 Aug;130(4):969-76. doi: 10.1083/jcb.130.4.969.
Axons derived from young ganglion cells in the periphery of the retinae of larval and adult goldfish are known to fasciculate with one another and their immediate forerunners, creating the typical age-related order in the retinotectal pathway. Young axons express the E587 antigen, a member of the L1 family of cell adhesion molecules. Repeated injections of Fab fragments from a polyclonal E587 antiserum (E587 Fabs) into the eye of 3.4 cm goldfish disrupted the orderly fascicle pattern of RGC axons in the retina which was preserved in controls. Instead of bundling tightly, RGC axons crossed one another, grew between fascicles and arrived at the optic disk in a broadened front. When added to RGC axons growing in vitro, E587 Fabs neutralized the preference of growth cones to elongate on lanes of E587 protein, caused defasciculation of axons which normally prefer to grow along each other when explanted on polylysine, and prevented clustering of E587 antigen at axon-axon contact sites. Monoclonal E587 antibody disturbed axonal fasciculation moderately but led to a 30% reduction in growth velocities when axons tracked other axons. Therefore we conclude that E587 antigen mediates axonal recognition, selective fasciculation and the creation of the age-related order in the fish retina.
已知源自幼体和成体金鱼视网膜周边区域年轻神经节细胞的轴突会相互之间以及与它们的直接先驱轴突形成束状结构,从而在视网膜 - 脑顶盖通路中形成典型的与年龄相关的顺序。年轻轴突表达E587抗原,它是细胞黏附分子L1家族的成员。将多克隆E587抗血清的Fab片段(E587 Fabs)反复注射到3.4厘米长金鱼的眼中,会破坏视网膜中视网膜神经节细胞(RGC)轴突有序的束状模式,而对照组中这种模式得以保留。RGC轴突不再紧密成束,而是相互交叉,在束之间生长,并以更宽的前沿到达视盘。当添加到体外生长的RGC轴突中时,E587 Fabs会中和生长锥在E587蛋白条带上延伸的偏好,导致轴突解束,而这些轴突在接种到聚赖氨酸上时通常倾向于彼此生长,并且会阻止E587抗原在轴突 - 轴突接触位点聚集。单克隆E587抗体对轴突束状形成有适度干扰,但当轴突追踪其他轴突时会导致生长速度降低30%。因此我们得出结论,E587抗原介导鱼类视网膜中的轴突识别、选择性束状形成以及与年龄相关顺序的形成。