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The neural cell adhesion molecule N-CAM enhances L1-dependent cell-cell interactions

机译:神经细胞粘附分子N-CAM增强L1依赖的细胞间相互作用

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摘要

On neural cells, the cell adhesion molecule L1 is generally found coexpressed with N-CAM. The two molecules have been suggested, but not directly shown, to affect each other's function. To investigate the possible functional relationship between the two molecules, we have characterized the adhesive interactions between the purified molecules and between cultured cells expressing them. Latex beads were coated with purified L1 and found to aggregate slowly. N-CAM-coated beads did not aggregate, but did so after addition of heparin. Beads coated with both L1 and N-CAM aggregated better than L1-coated beads. Strongest aggregation was achieved when L1-coated beads were incubated together with beads carrying both L1 and N-CAM. In a binding assay, the complex of L1 and N-CAM bound strongly to immobilized L1, but not to the cell adhesion molecules J1 or myelin-associated glycoprotein. N-CAM alone did not bind to these glycoproteins. Cerebellar neurones adhered to and sent out processes on L1 immobilized on nitrocellulose. N-CAM was less effective as substrate. Neurones interacted most efficiently with the immobilized complex of L1 and N-CAM. They adhered to this complex even when its concentration was at least 10 times lower than the lowest concentration of L1 found to promote adhesion. The complex became adhesive for cells only when the two glycoproteins were preincubated together for approximately 30 min before their immobilization on nitrocellulose. The adhesive properties between cells that express L1 only or both L1 and N-CAM were also studied. ESb-MP cells, which are L1- positive, but N-CAM negative, aggregated slowly under low Ca2+. Their aggregation could be completely inhibited by antibodies to L1 and enhanced by addition of soluble N-CAM to the cells before aggregation. N2A cells, which are L1 and N-CAM positive aggregated well under low Ca2+. Their aggregation was partially inhibited by either L1 or N-CAM antibodies and almost completely by the combination of both antibodies. N2A and ESb-MP cells coaggregated rapidly and their interaction was similarly inhibited by L1 and N-CAM antibodies. These results indicate that L1 is involved in two types of binding mechanisms. In one type, L1 serves as its own receptor with slow binding kinetics. In the other, L1 is modulated in the presence of N-CAM on one cell (cis-binding) to form a more potent receptor complex for L1 on another cell (trans-binding).
机译:在神经细胞上,通常发现细胞粘附分子L1与N-CAM共表达。已经提出了这两种分子,但没有直接示出,以影响彼此的功能。为了研究两个分子之间可能的功能关系,我们表征了纯化分子之间以及表达它们的培养细胞之间的粘附相互作用。用纯化的L1包被乳胶珠,发现其缓慢聚集。 N-CAM包被的珠未聚集,但在加入肝素后聚集。涂有L1和N-CAM的珠子的聚集比涂有L1的珠子更好。当将涂有L1的珠子与同时带有L1和N-CAM的珠子一起孵育时,可实现最强的聚集。在结合测定中,L1和N-CAM的复合物与固定的L1牢固结合,但不与细胞粘附分子J1或髓磷脂相关糖蛋白结合。单独的N-CAM不结合这些糖蛋白。小脑神经元在固定在硝酸纤维素膜上的L1上粘附并发出过程。 N-CAM作为底物的效果较差。神经元与固定的L1和N-CAM复合物最有效地相互作用。即使其浓度比发现能促进粘附的最低L1浓度低至少10倍,他们仍会粘附于该复合物。仅当两种糖蛋白在固定在硝酸纤维素上之前一起预孵育约30分钟时,复合物才对细胞具有粘附性。还研究了仅表达L1或同时表达L1和N-CAM的细胞之间的粘附性。 L1阳性但N-CAM阴性的ESb-MP细胞在低Ca2 +下缓慢聚集。它们的聚集可被抗L1的抗体完全抑制,并通过在聚集前向细胞中添加可溶性N-CAM来增强。在低Ca2 +下,L1和N-CAM阳性的N2A细胞聚集良好。它们的聚集被L1或N-CAM抗体部分抑制,而两种抗体的组合几乎完全抑制了它们的聚集。 N2A和ESb-MP细胞快速聚集,并且它们的相互作用同样受到L1和N-CAM抗体的抑制。这些结果表明L1参与两种类型的结合机制。在一种类型中,L1充当其自身的受体,具有缓慢的结合动力学。另一方面,在一个细胞上存在N-CAM时,L1被调节(顺式结合),从而在另一个细胞上形成更有效的L1受体复合物(反式结合)。

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