Grumet M, Flaccus A, Margolis R U
Department of Pharmacology, New York University Medical Center, New York 10016.
J Cell Biol. 1993 Feb;120(3):815-24. doi: 10.1083/jcb.120.3.815.
Ng-CAM and N-CAM are cell adhesion molecules (CAMs), and each CAM can bind homophilically as demonstrated by the ability of CAM-coated beads (Covaspheres) to self-aggregate. We have found that the extent of aggregation of Covaspheres coated with either Ng-CAM or N-CAM was strongly inhibited by the intact 1D1 and 3F8 chondroitin sulfate proteoglycans of rat brain, and by the core glycoproteins resulting from chondroitinase treatment of the proteoglycans. Much higher concentrations of rat chondrosarcoma chondroitin sulfate proteoglycan (aggrecan) core proteins had no significant effect in these assays. The 1D1 and 3F8 proteoglycans also inhibited binding of neurons to Ng-CAM when mixtures of these proteins were adsorbed to polystyrene dishes. Direct binding of neurons to the proteoglycan core glycoproteins from brain but not from chondrosarcoma was demonstrated using an assay in which cell-substrate contact was initiated by centrifugation, and neuronal binding to the 1D1 proteoglycans was specifically inhibited by the 1D1 monoclonal antibody. Different forms of the 1D1 proteoglycan have been identified in developing and adult brain. The early postnatal form (neurocan) was found to bind neurons more effectively than the adult proteoglycan, which represents the C-terminal half of the larger neurocan core protein. Our results therefore indicate that certain brain proteoglycans can bind to neurons, and that Ng-CAM and N-CAM may be heterophilic ligands for neurocan and the 3F8 proteoglycan. The ability of these brain proteoglycans to inhibit adhesion of cells to CAMs may be one mechanism to modulate cell adhesion and migration in the nervous system.
Ng-CAM和N-CAM是细胞粘附分子(CAMs),并且每种CAM都能进行同嗜性结合,这已通过包被有CAM的珠子(Covaspheres)能够自我聚集得到证明。我们发现,包被有Ng-CAM或N-CAM的Covaspheres的聚集程度受到大鼠脑完整的1D1和3F8硫酸软骨素蛋白聚糖以及蛋白聚糖经软骨素酶处理后产生的核心糖蛋白的强烈抑制。在这些实验中,高得多浓度的大鼠软骨肉瘤硫酸软骨素蛋白聚糖(聚集蛋白聚糖)核心蛋白没有显著影响。当这些蛋白质的混合物吸附到聚苯乙烯培养皿上时,1D1和3F8蛋白聚糖也抑制神经元与Ng-CAM的结合。使用一种通过离心启动细胞与底物接触的实验证明了神经元与来自脑而非软骨肉瘤的蛋白聚糖核心糖蛋白的直接结合,并通过1D1单克隆抗体特异性抑制神经元与1D1蛋白聚糖的结合。在发育中的脑和成年脑中已鉴定出1D1蛋白聚糖的不同形式。发现出生后早期形式(神经聚糖)比成年蛋白聚糖更有效地结合神经元,成年蛋白聚糖代表较大神经聚糖核心蛋白的C端一半。因此,我们的结果表明某些脑蛋白聚糖可以与神经元结合,并且Ng-CAM和N-CAM可能是神经聚糖和3F8蛋白聚糖的异嗜性配体。这些脑蛋白聚糖抑制细胞与CAMs粘附的能力可能是调节神经系统中细胞粘附和迁移的一种机制。