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神经胶质蛋白介导的细胞黏附诱导膜骨架在细胞接触位点组装。

Neuroglian-mediated cell adhesion induces assembly of the membrane skeleton at cell contact sites.

作者信息

Dubreuil R R, MacVicar G, Dissanayake S, Liu C, Homer D, Hortsch M

机构信息

Department of Pharmacological & Physiological Sciences, University of Chicago, Illinois 60637, USA.

出版信息

J Cell Biol. 1996 May;133(3):647-55. doi: 10.1083/jcb.133.3.647.

Abstract

The protein ankyrin links integral membrane proteins to the spectrin-based membrane skeleton. Ankyrin is often concentrated within restricted membrane domains of polarized epithelia and neurons, but the mechanisms responsible for membrane targeting and its segregation within a continuous lipid bilayer remain unexplained. We provide evidence that neuroglian, a cell adhesion molecule related to L1 and neurofascin, can transmit positional information directly to ankyrin and thereby polarize its distribution in Drosophila S2 tissue culture cells. Ankyrin was not normally associated with the plasma membrane of these cells. Upon expression of an inducible neuroglian minigene, however, cells aggregated into large clusters and ankyrin became concentrated at sites of cell-cell contact. Spectrin was also recruited to sites of cell contact in response to neuroglian expression. The accumulation of ankyrin at cell contacts required the presence of the cytoplasmic domain of neuroglian since a glycosyl phosphatidylinositol-linked form of neuroglian failed to recruit ankyrin to sites of cell-cell contact. Double-labeling experiments revealed that, whereas ankyrin was strictly associated with sites of cell-cell contact, neuroglian was more broadly distributed over the cell surface. A direct interaction between neuroglian and ankyrin was demonstrated using yeast two-hybrid analysis. Thus, neuroglian appears to be activated by extracellular adhesion so that ankyrin and the membrane skeleton selectively associate with sites of cell contact and not with other regions of the plasma membrane.

摘要

锚蛋白将整合膜蛋白与基于血影蛋白的膜骨架相连。锚蛋白通常集中在极化上皮细胞和神经元的受限膜结构域内,但负责膜靶向及其在连续脂质双层内分离的机制仍不清楚。我们提供的证据表明,神经胶质蛋白(一种与L1和神经束蛋白相关的细胞粘附分子)可以直接将位置信息传递给锚蛋白,从而使其在果蝇S2组织培养细胞中的分布极化。锚蛋白通常不与这些细胞的质膜相关联。然而,在诱导型神经胶质蛋白小基因表达后,细胞聚集成大簇,锚蛋白集中在细胞间接触部位。血影蛋白也响应神经胶质蛋白的表达而被募集到细胞接触部位。锚蛋白在细胞接触部位的积累需要神经胶质蛋白细胞质结构域的存在,因为糖基磷脂酰肌醇连接形式的神经胶质蛋白未能将锚蛋白募集到细胞间接触部位。双标记实验表明,虽然锚蛋白严格与细胞间接触部位相关联,但神经胶质蛋白在细胞表面分布更广泛。利用酵母双杂交分析证明了神经胶质蛋白与锚蛋白之间存在直接相互作用。因此,神经胶质蛋白似乎被细胞外粘附激活,从而使锚蛋白和膜骨架选择性地与细胞接触部位而非质膜的其他区域结合。

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