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钙黏蛋白中的钙结合位点突变:对黏附的影响及协同作用的证据

Calcium site mutations in cadherin: impact on adhesion and evidence of cooperativity.

作者信息

Prakasam A, Chien Y-H, Maruthamuthu V, Leckband D E

机构信息

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

出版信息

Biochemistry. 2006 Jun 6;45(22):6930-9. doi: 10.1021/bi060213m.

Abstract

This work describes quantitative force and bead aggregation measurements of the adhesion and binding mechanisms of canine E-cadherin mutants W2A, D134A, D103A, D216A, D325A, and D436A. The W2A mutation affects the formation of the N-terminal strand dimer, and the remaining mutations target calcium binding sites at the interdomain junctions. Surface force measurements show that the full ectodomain of canine E-cadherin forms two bound states that span two intermembrane gap distances. The outer bond coincides with adhesion between the N-terminal extracellular domains (EC1) and the inner bond corresponds to adhesion via extracellular domain 3 (EC3). The W2A, D103A, D134A, and D216A mutations all eliminated adhesion between the N-terminal domains, and they attenuated or nearly eliminated the inner bond. The W2A mutant, which does not destabilize the protein structure, attenuates binding via EC3, which is separated from the mutation by several hundred amino acids. This long-range effect suggests that the presence or absence of tryptophan-2 docking allosterically alters the adhesive function of distal sites on the protein. This finding appears to reconcile the multidomain binding mechanism with mutagenesis studies, which suggested that W2 is the sole binding interface. The effects of the calcium site mutations indicate that structural perturbations cooperatively impact large regions of the protein structure. However, the influence of the calcium sites on cadherin structure and function depends on their location in the protein.

摘要

这项工作描述了对犬E-钙黏蛋白突变体W2A、D134A、D103A、D216A、D325A和D436A的黏附及结合机制进行的定量力和珠子聚集测量。W2A突变影响N端链二聚体的形成,其余突变靶向结构域间连接部位的钙结合位点。表面力测量表明,犬E-钙黏蛋白的完整胞外域形成两种结合状态,跨越两个跨膜间隙距离。外层键与N端胞外域(EC1)之间的黏附一致,内层键对应于通过胞外域3(EC3)的黏附。W2A、D103A、D134A和D216A突变均消除了N端结构域之间的黏附,并减弱或几乎消除了内层键。不破坏蛋白质结构的W2A突变体减弱了通过EC3的结合,而EC3与该突变相隔数百个氨基酸。这种长程效应表明,色氨酸-2对接的存在与否会变构地改变蛋白质远端位点的黏附功能。这一发现似乎使多结构域结合机制与诱变研究相协调,诱变研究表明W2是唯一的结合界面。钙位点突变的影响表明,结构扰动会协同影响蛋白质结构的大片区域。然而,钙位点对钙黏蛋白结构和功能的影响取决于它们在蛋白质中的位置。

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