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分辨率为2.5埃的无金属伴刀豆球蛋白A的晶体结构。

Crystallographic structure of metal-free concanavalin A at 2.5 A resolution.

作者信息

Bouckaert J, Loris R, Poortmans F, Wyns L

机构信息

Laboratorium voor Ultrastructuur, Vrije Universiteit Brussel, Belgium.

出版信息

Proteins. 1995 Dec;23(4):510-24. doi: 10.1002/prot.340230406.

Abstract

The three-dimensional structure of demetallized concanavalin A has been determined at 2.5 A resolution and refined to a crystallographic R-factor of 18%. The lectin activity of concanavalin A requires the binding of both a transition metal ion, generally Mn2+, and a Ca2+ ion in two neighboring sites in close proximity to the carbohydrate binding site. Large structural differences between the native and the metal-free lectin are observed in the metal-binding region and consequently for the residues involved in the specific binding of saccharides. The demetallization invokes a series of conformational changes in the protein backbone, apparently initiated mainly by the loss of the calcium ion. Most of the Mn2+ ligands retain their position, but the Ca2+ binding site is destroyed. The Ala207-Asp208 peptide bond, in the beta-strand neighboring the metal-binding sites, undergoes a cis to trans isomerization. The cis conformation for this bond is a highly conserved feature among the leguminous lectins and is critically maintained by the Ca2+ ion in metal-bound concanavalin A. A further and major change adjacent to the isomerized bond is an expansion of the loop containing the monosaccharide ligand residues Leu99 and Tyr100. The dispersion of the ligand residues for the monosaccharide binding site (Asn14, Agr228, Asp208, Leu99, and Tyr100) in metal-free concanavalin A abolishes the lectin's ability to bind saccharides. Since the quaternary structure of legume lectins is essential to their biological role, the tetramer formation was analyzed. In the crystal (pH 5), the metal-free concanavalin A dimers associate into a tetramer that is similar to the native one, but with a drastically reduced number of inter-dimer interactions. This explains the tetramer dissociation into dimers below pH values of 6.5.

摘要

去金属伴刀豆球蛋白A的三维结构已在2.5埃分辨率下确定,并精修至晶体学R因子为18%。伴刀豆球蛋白A的凝集素活性需要在紧邻碳水化合物结合位点的两个相邻位点结合一个过渡金属离子(通常为Mn2+)和一个Ca2+离子。在金属结合区域观察到天然凝集素与无金属凝集素之间存在较大的结构差异,因此糖类特异性结合所涉及的残基也存在差异。去金属化引发了蛋白质主链的一系列构象变化,显然主要是由钙离子的丢失引发的。大多数Mn2+配体保留其位置,但Ca2+结合位点被破坏。在紧邻金属结合位点的β链中,Ala207 - Asp208肽键发生了顺式到反式的异构化。该键的顺式构象是豆科凝集素中的一个高度保守特征,在结合金属的伴刀豆球蛋白A中由Ca2+离子严格维持。与异构化键相邻的另一个主要变化是包含单糖配体残基Leu99和Tyr100的环的扩展。无金属伴刀豆球蛋白A中用于单糖结合位点(Asn14、Agr228、Asp208、Leu99和Tyr100)的配体残基分散,消除了凝集素结合糖类的能力。由于豆科凝集素的四级结构对其生物学作用至关重要,因此对四聚体形成进行了分析。在晶体中(pH 5),无金属伴刀豆球蛋白A二聚体缔合形成类似于天然四聚体的结构,但二聚体间相互作用的数量大幅减少。这解释了在pH值低于6.5时四聚体解离为二聚体的现象。

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