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不同抗体与口蹄疫病毒主要抗原位点的相似相互作用模式:对口蹄疫病毒型内抗原变异的影响

A similar pattern of interaction for different antibodies with a major antigenic site of foot-and-mouth disease virus: implications for intratypic antigenic variation.

作者信息

Verdaguer N, Sevilla N, Valero M L, Stuart D, Brocchi E, Andreu D, Giralt E, Domingo E, Mateu M G, Fita I

机构信息

Centre de Investigació i Desenvolupament (CSIC), Barcelona, Spain.

出版信息

J Virol. 1998 Jan;72(1):739-48. doi: 10.1128/JVI.72.1.739-748.1998.

Abstract

The three-dimensional structures of the Fab fragment of a neutralizing antibody raised against a foot-and-mouth disease virus (FMDV) of serotype C1, alone and complexed to an antigenic peptide representing the major antigenic site A (G-H loop of VP1), have been determined. As previously seen in a complex of the same antigen with another antibody which recognizes a different epitope within antigenic site A, the receptor recognition motif Arg-Gly-Asp and some residues from an adjacent helix participate directly in the interaction with the complementarity-determining regions of the antibody. Remarkably, the structures of the two antibodies become more similar upon binding the peptide, and both undergo considerable induced fit to accommodate the peptide with a similar array of interactions. Furthermore, the pattern of reactivities of five additional antibodies with versions of the antigenic peptide bearing amino acid replacements suggests a similar pattern of interaction of antibodies raised against widely different antigens of serotype C. The results reinforce the occurrence of a defined antigenic structure at this mobile, exposed antigenic site and imply that intratypic antigenic variation of FMDV of serotype C is due to subtle structural differences that affect antibody recognition while preserving a functional structure for the receptor binding site.

摘要

已确定一种针对C1型口蹄疫病毒(FMDV)产生的中和抗体的Fab片段的三维结构,该片段单独存在时以及与代表主要抗原位点A(VP1的G-H环)的抗原肽复合时的结构。正如之前在同一抗原与另一种识别抗原位点A内不同表位的抗体形成的复合物中所观察到的那样,受体识别基序精氨酸-甘氨酸-天冬氨酸以及相邻螺旋中的一些残基直接参与与抗体互补决定区的相互作用。值得注意的是,两种抗体在结合肽后结构变得更加相似,并且两者都经历了相当大的诱导契合,以通过类似的相互作用阵列来容纳肽。此外,另外五种抗体与带有氨基酸替换的抗原肽变体的反应模式表明,针对C型广泛不同抗原产生的抗体具有类似的相互作用模式。这些结果强化了在这个可移动的暴露抗原位点存在确定的抗原结构,并且意味着C型口蹄疫病毒的型内抗原变异是由于细微的结构差异,这些差异影响抗体识别,同时保留受体结合位点的功能结构。

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