Rader C, Kunz B, Lierheimer R, Giger R J, Berger P, Tittmann P, Gross H, Sonderegger P
Institute of Biochemistry, University of Zurich, Switzerland.
EMBO J. 1996 May 1;15(9):2056-68.
The neuronal cell adhesion molecule axonin-1 is composed of six immunoglobulin and four fibronectin type III domains. Axonin-1 promotes neurite outgrowth, when presented as a substratum for neurons in vitro, via a neuronal receptor that has been identified as the neuron-glia cell adhesion molecule, NgCAM, based on the blocking effect of polyclonal antibodies directed to NgCAM. Here we report the identification of axonin-1 domains involved in NgCAM binding. NgCAM-conjugated microspheres were tested for binding to COS cells expressing domain deletion mutants of axonin-1. In addition, monoclonal antibodies directed to axonin-1 were assessed for their ability to block the axonin-1-NgCAM interaction, and their epitopes were mapped using the domain deletion mutants. The results suggest that the four amino-terminal immunoglobulin domains of axonin-1 form a domain conglomerate which is necessary and sufficient for NgCAM binding. Surprisingly, NgCAM binding to membrane-bound axonin-1 was increased strongly by deletion of the fifth or sixth immunoglobulin domains of axonin-1. Based on these results and on negative staining electron microscopy, we propose a horseshoe-shaped domain arrangement of axonin-1 that obscures the NgCAM binding site. Neurite outgrowth studies with truncated forms of axonin-1 show that axonin-1 is a neurite outgrowth-promoting substratum in the absence of the NgCAM binding site.
神经元细胞黏附分子轴突素-1由六个免疫球蛋白结构域和四个III型纤连蛋白结构域组成。当轴突素-1作为体外培养神经元的底物时,它通过一种神经元受体促进神经突生长,基于针对神经胶质细胞黏附分子NgCAM的多克隆抗体的阻断作用,该受体已被鉴定为神经胶质细胞黏附分子NgCAM。在此我们报告了参与NgCAM结合的轴突素-1结构域的鉴定。测试了与NgCAM偶联的微球与表达轴突素-1结构域缺失突变体的COS细胞的结合情况。此外,评估了针对轴突素-1的单克隆抗体阻断轴突素-1与NgCAM相互作用的能力,并使用结构域缺失突变体绘制了它们的表位图谱。结果表明,轴突素-1的四个氨基末端免疫球蛋白结构域形成了一个结构域聚集体,这对于NgCAM结合是必要且充分的。令人惊讶的是,通过缺失轴突素-1的第五或第六个免疫球蛋白结构域,NgCAM与膜结合的轴突素-1的结合显著增加。基于这些结果和负染色电子显微镜,我们提出了轴突素-1的马蹄形结构域排列,该排列掩盖了NgCAM结合位点。对截短形式的轴突素-1进行的神经突生长研究表明,在没有NgCAM结合位点的情况下,轴突素-1是一种促进神经突生长的底物。