α -连环蛋白的突变会破坏克隆A细胞的粘附,但不会干扰其肌动蛋白和β -连环蛋白的结合活性。

S Roe, E R Koslov, D L Rimm
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引用次数: 18

摘要

钙粘蛋白介导的细胞-细胞粘附需要细胞质连接到由-连环蛋白介导的细胞骨架。对连环蛋白的原始描述以及我们自己的体外研究表明,这种联系是由α -连环蛋白与肌动蛋白的相互作用介导的。人结肠癌细胞系“克隆A”的粘附丧失是由于蛋白质n端附近158个残基的内部缺失突变导致80 kD的突变蛋白。用全长蛋白转染这些细胞可恢复正常的粘附表型。我们对这种突变蛋白进行了表征,以了解α -连环蛋白的正常功能,特别是克隆A突变体中缺失的区域。使用全细胞裂解物的共沉淀实验表明,突变形式的α -连环蛋白结合β -连环蛋白和血小板红蛋白,并通过这些相互作用与e -钙粘蛋白形成结构复合物。肌动蛋白共沉淀实验表明,重组突变体结合并捆绑f -肌动蛋白,并同时结合肌动蛋白和β -连环蛋白,与野生型α -连环蛋白一样。这些结果表明,e -钙粘蛋白-连环蛋白复合物的稳定可能是由其与肌动蛋白直接相互作用之外的因素介导的。我们得出的结论是,在α -连环蛋白n端附近的一个区域介导了粘附复合物和细胞骨架之间的额外相互作用,这对功能性粘附至关重要。
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A mutation in alpha-catenin disrupts adhesion in clone A cells without perturbing its actin and beta-catenin binding activity.

Cadherin mediated cell-cell adhesion requires cytoplasmic connections to the cytoskeleton mediated by alpha-catenin. Original descriptions of the catenins, as well as our own in vitro studies, have suggested that this connection was mediated by the interaction of alpha-catenin to actin. Loss of adhesion in the human colon carcinoma cell line "Clone A" is the result of an internal deletion mutation of 158 residues near the N-terminus of the protein resulting in an 80 kD mutated protein. Transfection of these cells with the full length protein restores the normal adhesive phenotype. We have characterized this mutant protein in efforts to understand the normal function of alpha-catenin and, in particular, the region deleted in the Clone A mutant. Co-precipitation experiments using whole cell lysates indicate that the mutant form of alpha-catenin binds beta-catenin and plakoglobin, and can form a structural complex with E-cadherin via these interactions. Actin co-sedimentation assays show that the recombinant mutant binds and bundles F-actin and binds both actin and beta-catenin simultaneously, as seen with wild type alpha-catenin. These results suggest that the stabilization of the E-cadherin-catenin complex may be mediated by factors beyond its direct interaction with actin. We conclude that a region near the N-terminus of alpha-catenin mediates additional interactions between the adhesive complex and the cytoskeleton that are critical for functional adhesion.

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