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抗体诱导的构象变化导致抗体对蜱传脑炎病毒糖蛋白上不同抗原位点的亲和力增强。

Antibody-induced conformational changes result in enhanced avidity of antibodies to different antigenic sites on the tick-borne encephalitis virus glycoprotein.

作者信息

Heinz F X, Mandl C, Berger R, Tuma W, Kunz C

出版信息

Virology. 1984 Feb;133(1):25-34. doi: 10.1016/0042-6822(84)90422-7.

DOI:10.1016/0042-6822(84)90422-7
PMID:6199892
Abstract

By the use of monoclonal antibodies we have recently defined eight distinct epitopes on the structural glycoprotein of tick-borne encephalitis (TBE) virus which differ with respect to location, function, or serological specificity (Heinz et al, Virology 126, 525-537, 1983). The present investigation reveals a complex network of interactions between antibodies directed against distinct nonoverlapping epitopes leading to enhanced binding of certain antibodies in the presence of bound second antibodies. The enhancement between antibody pairs can be either unidirectional or bidirectional. In addition, there are domains of predilection, which bind enhanceable antibodies (domain A) whereas others bind antibodies which preferentially induce enhancement (domain B). These domains represent structurally unrelated entities, domain A being sensitive to denaturation and fragmentation and domain B being resistant. Quantitative evaluation of binding data by Scatchard analysis revealed that the observed enhancement phenomenon is due to a two- to sixfold increase of antibody avidity. In the system described, enhancement of antibody binding is not dependent on antibody bivalency since it could also be demonstrated with purified Fab fragments acting either as enhanced or as enhancing antibody. It is therefore concluded that binding of antibodies to certain epitopes on the TBE virus glycoprotein induces conformational changes in distant parts of the molecule which can result in increased avidity of antibodies directed to conformationally changed epitopes. A possible explanation for the origin of this enhancement phenomenon is presented.

摘要

我们最近利用单克隆抗体在蜱传脑炎(TBE)病毒的结构糖蛋白上确定了八个不同的表位,这些表位在位置、功能或血清学特异性方面存在差异(Heinz等人,《病毒学》126,525 - 537,1983)。本研究揭示了针对不同非重叠表位的抗体之间存在复杂的相互作用网络,导致在结合第二抗体时某些抗体的结合增强。抗体对之间的增强作用可以是单向的,也可以是双向的。此外,存在偏好结构域,其中一些结合可增强的抗体(结构域A),而另一些结合优先诱导增强作用的抗体(结构域B)。这些结构域代表结构不相关的实体,结构域A对变性和片段化敏感,而结构域B具有抗性。通过Scatchard分析对结合数据进行定量评估表明,观察到的增强现象是由于抗体亲和力提高了两到六倍。在所描述的系统中,抗体结合的增强不依赖于抗体的二价性,因为用纯化的Fab片段作为增强抗体或作为被增强抗体时也能证明这一点。因此得出结论,抗体与TBE病毒糖蛋白上某些表位的结合会诱导分子远处部分发生构象变化,这可能导致针对构象变化表位的抗体亲和力增加。本文还提出了这种增强现象起源的一种可能解释。

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