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首页> 外文期刊>Cell structure and function >Mutually Exclusive Distribution of the Focal Adhesion Associated Proteins and the Erythrocyte Membrane Skeleton Proteins in the Human Fibroblast Plasma Membrane Undercoat
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Mutually Exclusive Distribution of the Focal Adhesion Associated Proteins and the Erythrocyte Membrane Skeleton Proteins in the Human Fibroblast Plasma Membrane Undercoat

机译:人成纤维细胞血浆膜底涂层中局灶性粘附相关蛋白和红细胞膜骨架蛋白的相互排斥分布

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References(41) Cited-By(4) The ends of stress fibers in the basal portion of cells (basal stress fibers) are anchored to focal adhesions, and stress fibers in the apical part of cells (apical stress fibers) are attached to the apical membrane, forming a structure (the apical plaque; KATOH, K. et al. (1995). Cell Motil. Cytoskel., 31:177-195) resembling the focal adhesion. In addition to these two sites, stress fibers also make lateral contact with the plasma membrane but little is known about the molecular composition of this type of stress fiber-membrane interaction sites. Several actin-membrane association types are known, each employing a different set of proteins, and the focal adhesion and the erythrocyte membrane skeleton are the best characterized systems. We investigated by immunofluorescence microscopy if there is any morphological basis for the involvement of the erythrocyte membrane proteins in the stress fiber-plasma membrane association sites in cultured human fibroblasts. Our results indicated that fodrin (nonerythrocyte type spectrin) and ankyrin were generally associated with the plasma membrane, but that they were clearly excluded from the focal adhesion, the apical plaque and the stress fiber. Thus, it appears that the spectrin and the integrin based actin-membrane association systems are mutually excluded in the fibroblast membrane undercoat. Protein localization at the lateral stress fiber-membrane association site was also studied. Our data indicated that, while talin, vinculin, paxillin, fibronectin receptor and integrin β1 were present at the three stress fiber-membrane association sites, vitronectin receptor and integrin αvwere absent from the apical plaque and the lateral association site. While the plasma membrane at the focal adhesion adheres tightly to a solid substrate, the cell surface of the apical plaque is free. Although the lateral association site faces the substrate, the molecular composition of this site is similar to that of the apical plaque.
机译:参考文献(41)Cited-By(4)将细胞基底部分的应力纤维(基底应力纤维)的末端锚定到粘着斑,而细胞顶端部分的应力纤维(基底应力纤维)连接到基底。顶膜,形成类似于粘着斑的结构(顶斑; KATOH,K。等人(1995).Cell Motil.Cytoskel。,31:177-195)。除这两个位点外,应力纤维还与质膜横向接触,但对于这种应力纤维-膜相互作用位点的分子组成知之甚少。几种肌动蛋白-膜缔合类型是已知的,每种类型都使用一组不同的蛋白质,并且粘着斑和红细胞膜骨架是最能表征的系统。我们通过免疫荧光显微镜研究了是否有任何形态学基础参与培养的人类成纤维细胞中红细胞膜蛋白参与应激纤维-质膜结合部位。我们的结果表明,铁蛋白(非红细胞血影蛋白)和锚蛋白通常与质膜相关,但是它们明显地被粘连,根尖斑和应力纤维所排斥。因此,似乎在成纤维细胞膜底涂层中互斥了血影蛋白和基于整联蛋白的肌动蛋白-膜缔合系统。还研究了蛋白质在侧向应力纤维-膜结合位点的定位。我们的数据表明,尽管塔林,纽蛋白,paxillin,纤连蛋白受体和整联蛋白β1存在于三个应力纤维-膜结合位点,但在菌斑和外侧结合位点缺少玻连蛋白受体和整联蛋白αv。当粘着斑处的质膜紧紧地粘附在固体基质上时,顶斑的细胞表面是自由的。尽管侧向缔合位点面对基底,但是该位点的分子组成类似于顶斑。

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