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分辨率为1.9埃的Fv-Fv独特型-抗独特型复合物的晶体结构。

Crystal structure of an Fv-Fv idiotope-anti-idiotope complex at 1.9 A resolution.

作者信息

Braden B C, Fields B A, Ysern X, Dall'Acqua W, Goldbaum F A, Poljak R J, Mariuzza R A

机构信息

Center for Advanced Research in Biotechnology, University of Maryland Biotechnology Institute, Rockville 20850, USA.

出版信息

J Mol Biol. 1996 Nov 22;264(1):137-51. doi: 10.1006/jmbi.1996.0629.

Abstract

Anti-idiotopic antibodies react with unique antigenic features, usually associated with the combining sites, of other antibodies. They may thus mimic specific antigens that react with the same antibodies. The structural basis of this mimicry is analyzed here in detail for an anti-idiotopic antibody that mimics the antigen, hen egg-white lysozyme. The crystal structure of an anti-hen-egg-white lysozyme antibody (D1.3) complexed with an anti-idiotopic antibody (E5.2) has been determined at a nominal resolution of 1.9 A. E5.2 contacts substantially the same residues of D1.3 as lysozyme, thus mimicking its binding to D1.3. The mimicry embodies conservation of hydrogen bonding: six of the 14 protein-protein hydrogen bonds bridging D1.3-E5.2 are structurally equivalent to hydrogen bonds bridging D1.3-lysozyme. The mimicry includes a similar number of van der Waals interactions. The mimicry of E5.2 for lysozyme, however, does not extend to the topology of the non-polar surfaces of E5.2 and lysozyme, which are in contact with D1.3 as revealed by a quantitative analysis of the contacting surface similarities between E5.2 and lysozyme. The structure discussed herein shows that an anti-idiotopic antibody can provide an approximate topological and binding-group mimicry of an external antigen, especially in the case of the hydrophilic surfaces, even though there is no sequence homology between the anti-idiotope and the antigen.

摘要

抗独特型抗体与其他抗体的独特抗原特征发生反应,这些特征通常与结合部位相关。因此,它们可能模拟与相同抗体发生反应的特定抗原。本文详细分析了一种模拟抗原——鸡蛋清溶菌酶的抗独特型抗体的这种模拟的结构基础。已确定与抗独特型抗体(E5.2)复合的抗鸡蛋清溶菌酶抗体(D1.3)的晶体结构,标称分辨率为1.9埃。E5.2与D1.3的接触残基基本上与溶菌酶相同,从而模拟其与D1.3的结合。这种模拟体现了氢键的保守性:连接D1.3 - E5.2的14个蛋白质 - 蛋白质氢键中有6个在结构上等同于连接D1.3 - 溶菌酶的氢键。这种模拟还包括数量相似的范德华相互作用。然而,E5.2对溶菌酶的模拟并不延伸至E5.2和溶菌酶非极性表面的拓扑结构,通过对E5.2和溶菌酶之间接触表面相似性的定量分析表明,它们与D1.3接触。本文讨论的结构表明,抗独特型抗体可以提供外部抗原的近似拓扑和结合基团模拟,特别是在亲水性表面的情况下,即使抗独特型与抗原之间没有序列同源性。

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