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位于Fab片段VL和VH结构域界面的保守残基的功能图谱分析。

Functional mapping of conserved residues located at the VL and VH domain interface of a Fab.

作者信息

Chatellier J, Van Regenmortel M H, Vernet T, Altschuh D

机构信息

Institut de Biologie Moléculaire et Cellulaire (CNRS), Laboratoire d'Immunochimie des Peptides et des Virus, Stransbourg, France.

出版信息

J Mol Biol. 1996 Nov 22;264(1):1-6. doi: 10.1006/jmbi.1996.0618.

Abstract

The interface between the VL and VH domains of antibodies is highly conserved. To investigate the influence of conserved interface residues on Fab function, 13 interface residues were subjected to codon-based combinatorial alanine scanning mutagenesis in Fab 57P, specific for peptide 134 to 151 of the coat protein of tobacco mosaic virus. The 13 single mutants were analysed by Western blot to determine the effect of interface modifications on Fab expression. The kinetic rate constants of peptide-Fab mutant interactions were measured using the biosensor technology. Alanine replacements did not prevent assembly of the mutated Fabs and led to a modification of their binding properties in every case. Twelve of the 13 target residues correspond to homologous positions in the VL and VH domains, which have similar folds. Mutation at homologous positions mostly had different effects on antigen binding affinity. The replacement of bulky side-chains had the most drastic effect on binding. When smaller side-chains were replaced by alanine, the binding properties of Fab mutants differed slightly (by less than a factor of two), but significantly from that of Fab 57P. Modification of some of these residues, which are located 9 to 12 A away from the base of CDR loops, is unlikely to alter loop conformation. They may affect antigen binding indirectly by influencing the relative position of the VL and VH domains. Our results demonstrate that residues situated at the VL-VH interface and which are remote from the paratope are able to influence the antigen binding properties of antibodies.

摘要

抗体的VL和VH结构域之间的界面高度保守。为了研究保守界面残基对Fab功能的影响,对烟草花叶病毒外壳蛋白第134至151位肽段具有特异性的Fab 57P中的13个界面残基进行了基于密码子的组合丙氨酸扫描诱变。通过蛋白质免疫印迹分析这13个单突变体,以确定界面修饰对Fab表达的影响。使用生物传感器技术测量肽-Fab突变体相互作用的动力学速率常数。丙氨酸替换并不妨碍突变型Fab的组装,并且在每种情况下都导致其结合特性的改变。13个目标残基中的12个对应于VL和VH结构域中具有相似折叠的同源位置。同源位置的突变对抗原结合亲和力大多有不同影响。大侧链的替换对结合的影响最为显著。当较小的侧链被丙氨酸替换时,Fab突变体的结合特性略有不同(相差不到两倍),但与Fab 57P的结合特性有显著差异。这些位于距互补决定区(CDR)环基部9至12埃处的一些残基的修饰不太可能改变环的构象。它们可能通过影响VL和VH结构域的相对位置间接影响抗原结合。我们的结果表明,位于VL-VH界面且远离抗原结合位的残基能够影响抗体的抗原结合特性。

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