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鉴定在皮摩尔亲和力范围内具有中和作用的人类呼吸道合胞病毒 F 结合抗体的亲和力成熟。

Characterization of neutralizing affinity-matured human respiratory syncytial virus F binding antibodies in the sub-picomolar affinity range.

机构信息

Biologics Research, Janssen Research & Development LLC, Radnor, PA 19087, USA.

出版信息

J Mol Recognit. 2012 Mar;25(3):136-46. doi: 10.1002/jmr.2149.

DOI:10.1002/jmr.2149
PMID:22407977
Abstract

In the human adaptation and optimization of a mouse anti-human respiratory syncytial virus neutralizing antibody, affinity assessment was crucial to distinguish among potential candidates and to evaluate whether this correlated with function in vitro and in vivo. This affinity assessment was complicated by the trimeric nature of the antigen target, respiratory syncytial virus F (RSV-F) glycoprotein. In the initial affinity screen, surface plasmon resonance was used to determine the intrinsic binding affinities of anti-RSV-F Fab and immunoglobulin G (IgG) to the extracellular domain of RSV-F. This assessment required minimal biotinylation of the RSV-F protein and design of a capture strategy to minimize avidity effects. Approximately 30 Fabs were selected from three optimization phage display libraries on the basis of an initial ELISA screen. Surface plasmon resonance analysis demonstrated the success of optimization with some candidates from the screened libraries having low picomolar dissociation constants, more than 700-fold tighter than the parental monoclonal antibody (B21M). The affinities of these antibodies were further evaluated by a kinetic exclusion assay, a solution binding technology. One IgG (monoclonal antibody 029) displayed a low picomolar K(D) comparable with that of motavizumab, an RSV antibody in clinical study. Kinetic exclusion assay showed that two other of the matured IgGs (011 and 019) had sub-picomolar dissociation constants that could not be resolved further. We discuss the relevance of these interaction analysis results in the light of recently published data on the mechanism of F-driven viral fusion during paramyxoviral infection and 101F epitope conservation revealed from the recent crystal structure of RSV-F in the post-fusion state.

摘要

在人类对小鼠抗人呼吸道合胞病毒中和抗体的适应和优化过程中,亲和力评估对于区分潜在候选物以及评估其与体外和体内功能的相关性至关重要。由于抗原靶标(呼吸道合胞病毒 F 糖蛋白,RSV-F)的三聚体性质,这种亲和力评估变得复杂。在初始亲和力筛选中,表面等离子体共振用于确定抗 RSV-F Fab 和免疫球蛋白 G(IgG)与 RSV-F 细胞外结构域的固有结合亲和力。这种评估需要对 RSV-F 蛋白进行最小化的生物素化,并设计一种捕获策略,以最大限度地减少亲合力效应。基于初始 ELISA 筛选,从三个优化噬菌体展示文库中选择了大约 30 个 Fab。表面等离子体共振分析表明,优化取得了成功,筛选文库中的一些候选物具有低皮摩尔的解离常数,比亲本单克隆抗体(B21M)紧密 700 多倍。通过动力学排除测定进一步评估了这些抗体的亲和力,动力学排除测定是一种溶液结合技术。一种 IgG(单克隆抗体 029)显示出低皮摩尔 K(D),与临床研究中的 RSV 抗体 motavizumab 相当。动力学排除测定表明,另外两种成熟的 IgG(011 和 019)具有亚皮摩尔的解离常数,无法进一步解析。我们根据最近发表的关于副粘病毒感染过程中 F 驱动的病毒融合机制的数据分析以及最近 RSV-F 融合后状态的晶体结构揭示的 101F 表位保守性,讨论了这些相互作用分析结果的相关性。

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