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成年和胚胎小鼠神经细胞黏附分子具有不同的结合特性。

Adult and embryonic mouse neural cell adhesion molecules have different binding properties.

作者信息

Sadoul R, Hirn M, Deagostini-Bazin H, Rougon G, Goridis C

出版信息

Nature. 1983;304(5924):347-9. doi: 10.1038/304347a0.

Abstract

Interactions between neural cell surfaces seem to be of prime importance during neuroontogenesis, and responsible for the guidance of migrating neuroblasts and growing axons and for the formation of synapses. Little is known about the underlying molecular mechanisms, but most hypotheses imply the existence of cell-surface molecules that mediate the formation of transient or permanent bonds between neural cells. Recently, a membrane glycoprotein called neural cell adhesion molecule (N-CAM) has been characterized in chick and rodent nervous tissue that appears to act as a ligand in adhesion among neural cell bodies or neurites. We have identified a mouse neural surface glycoprotein, named BSP-2 (ref. 7), which by criteriaof electrophoretic migration, developmental changes, amino acid and sugar composition seems to be closely related or identical to N-CAM. Both BSP-2 (refs 8, 9) and N-CAM undergo conversion from an embryonic to an adult form during brain development and it has been suggested that this transition changes the adhesive properties or the binding specificity of the molecule. Using a neuroblastoma line to study functional differences between embryonic and adult BSP-2/N-CAM molecules, we show here that liposomes bearing adult BSP-2 but not those bearing the embryonic form adhere to neuroblastoma cells, demonstrating that the two forms do indeed possess different binding properties.

摘要

在神经发生过程中,神经细胞表面之间的相互作用似乎至关重要,负责引导迁移的神经母细胞和生长中的轴突,并负责突触的形成。关于潜在的分子机制知之甚少,但大多数假说都暗示存在介导神经细胞之间形成瞬时或永久连接的细胞表面分子。最近,一种名为神经细胞黏附分子(N-CAM)的膜糖蛋白已在鸡和啮齿动物的神经组织中得到表征,它似乎在神经细胞体或神经突之间的黏附中充当配体。我们鉴定出一种小鼠神经表面糖蛋白,命名为BSP-2(参考文献7),根据电泳迁移、发育变化、氨基酸和糖组成的标准,它似乎与N-CAM密切相关或相同。在脑发育过程中,BSP-2(参考文献8、9)和N-CAM都会从胚胎形式转变为成年形式,有人提出这种转变会改变分子的黏附特性或结合特异性。利用一种神经母细胞瘤细胞系来研究胚胎型和成年型BSP-2/N-CAM分子之间的功能差异,我们在此表明,携带成年型BSP-2的脂质体而非携带胚胎型的脂质体能够黏附到神经母细胞瘤细胞上,这表明这两种形式确实具有不同的结合特性。

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