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神经细胞黏附分子两种形式的分化状态依赖性表面迁移率

Differentiation state-dependent surface mobilities of two forms of the neural cell adhesion molecule.

作者信息

Pollerberg G E, Schachner M, Davoust J

出版信息

Nature. 1986;324(6096):462-5. doi: 10.1038/324462a0.

Abstract

The neural cell adhesion molecule (N-CAM) has been implicated in morphogenetic events during formation of the nervous system. Three forms of N-CAM exist, all glycoprotein chains, of relative molecular masses 180,000 (180K), 140K and 120K (N-CAM180, N-CAM140 and N-CAM120) which are differentially expressed on neural cell types and during development. The three chains are thought to carry similar if not identical amino-acid sequences on their extracellular amino-terminal domains, but differ in the length of their carboxy-terminal cytoplasmic region. They occur in highly sialylated embryonic and less sialylated adult forms. N-CAM180 is selectively expressed in more differentiated neural cells and may play a role in the stabilization of cell contacts. To investigate this, we have studied in the surface membrane of a mouse neuroblastoma cell line N2A the lateral mobility of the two predominant forms of N-CAM, N-CAM180 and N-CAM140, as a function of differentiation. Here we report that as judged by fringe pattern photobleaching, the surface mobility of N-CAM140 is higher than that of N-CAM180, suggesting an association of N-CAM180 with the cytoskeleton or other stabilizing factors. We also show that brain spectrin, a membrane-cytoskeleton linker protein, binds only to N-CAM180. The immobilization of N-CAM in differentiated N2A cells is achieved by a shift in expression from N-CAM140 to N-CAM180.

摘要

神经细胞黏附分子(N-CAM)与神经系统形成过程中的形态发生事件有关。N-CAM有三种形式,均为糖蛋白链,相对分子质量分别为180,000(180K)、140K和120K(N-CAM180、N-CAM140和N-CAM120),它们在神经细胞类型及发育过程中差异表达。这三条链被认为在其细胞外氨基末端结构域上携带相似(即便不完全相同)的氨基酸序列,但羧基末端细胞质区域的长度不同。它们以高度唾液酸化的胚胎形式和唾液酸化程度较低的成年形式存在。N-CAM180在分化程度更高的神经细胞中选择性表达,可能在细胞接触的稳定中发挥作用。为了对此进行研究,我们在小鼠神经母细胞瘤细胞系N2A的表面膜中研究了两种主要形式的N-CAM,即N-CAM180和N-CAM140的侧向流动性与分化的关系。在此我们报告,通过条纹图案光漂白判断,N-CAM140的表面流动性高于N-CAM180,这表明N-CAM180与细胞骨架或其他稳定因子有关联。我们还表明,脑血影蛋白,一种膜-细胞骨架连接蛋白仅与N-CAM180结合。在分化的N2A细胞中,N-CAM的固定是通过表达从N-CAM140向N-CAM180的转变来实现的。

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