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同源钙黏蛋白黏附结构基础的功能分析

Functional analysis of the structural basis of homophilic cadherin adhesion.

作者信息

Zhu B, Chappuis-Flament S, Wong E, Jensen I E, Gumbiner B M, Leckband D

机构信息

Department of Chemical and Biomolecular Engineering, University of Illinois, Urbana, Illinois 61801, USA.

出版信息

Biophys J. 2003 Jun;84(6):4033-42. doi: 10.1016/S0006-3495(03)75129-7.

Abstract

The structures of many cell surface adhesion proteins comprise multiple tandem repeats of structurally similar domains. In many cases, the functional significance of this architecture is unknown, and there are several cases in which evidence for individual domain involvement in adhesion has been contradictory. In particular, the extracellular region of the adhesion glycoprotein cadherin consists of five tandemly arranged domains. One proposed mechanism postulated that adhesion involves only trans interactions between the outermost domains. However, subsequent investigations have generated several competing models. Here we describe direct measurements of the distance-dependent interaction potentials between cadherin mutants lacking different domains. By quantifying both the absolute distances at which opposed cadherin fragments bind and the quantized changes in the interaction potentials that result from deletions of individual domains, we demonstrate that two domains participate in homophilic cadherin binding. This finding contrasts with the current view that cadherins bind via a single, unique site on the protein surface. The potentials that result from interactions involving multiple domains generate a novel, modular binding mechanism in which opposed cadherin ectodomains can adhere in any of three antiparallel alignments.

摘要

许多细胞表面粘附蛋白的结构包含多个结构相似结构域的串联重复序列。在许多情况下,这种结构的功能意义尚不清楚,而且有几种情况表明,关于单个结构域参与粘附的证据相互矛盾。特别是,粘附糖蛋白钙粘蛋白的细胞外区域由五个串联排列的结构域组成。一种提出的机制假定,粘附仅涉及最外层结构域之间的反式相互作用。然而,随后的研究产生了几种相互竞争的模型。在这里,我们描述了对缺乏不同结构域的钙粘蛋白突变体之间距离依赖性相互作用电位的直接测量。通过量化相对的钙粘蛋白片段结合时的绝对距离以及由于单个结构域缺失导致的相互作用电位的量化变化,我们证明有两个结构域参与了同源性钙粘蛋白结合。这一发现与目前认为钙粘蛋白通过蛋白质表面上单一、独特位点结合的观点形成对比。涉及多个结构域的相互作用所产生的电位产生了一种新颖的模块化结合机制,其中相对的钙粘蛋白胞外结构域可以以三种反平行排列中的任何一种方式粘附。

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