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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Mapping the Binding Interface of VEGF and a Monoclonal Antibody Fab-1 Fragment with Fast Photochemical Oxidation of Proteins (FPOP) and Mass Spectrometry
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Mapping the Binding Interface of VEGF and a Monoclonal Antibody Fab-1 Fragment with Fast Photochemical Oxidation of Proteins (FPOP) and Mass Spectrometry

机译:用快速光化学氧化蛋白质(FPOP)和质谱法测定VEGF和单克隆抗体Fab-1片段的结合界面

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摘要

We previously analyzed the Fab-1:VEGF (vascular endothelial growth factor) system described in this work, with both native top-down mass spectrometry and bottom-up mass spectrometry (carboxyl-group or GEE footprinting) techniques. This work continues bottom-up mass spectrometry analysis using a fast photochemical oxidation of proteins (FPOP) platform to map the solution binding interface of VEGF and a fragment antigen binding region of an antibody (Fab-1). In this study, we use FPOP to compare the changes in solvent accessibility by quantitating the extent of oxidative modification in the unbound versus bound states. Determining the changes in solvent accessibility enables the inference of the protein binding sites (epitope and paratopes) and a comparison to the previously published Fab-1:VEGF crystal structure, adding to the top-down and bottom-up data. Using this method, we investigated peptide-level and residue-level changes in solvent accessibility between the unbound proteins and bound complex. Mapping these data onto the Fab-1:VEGF crystal structure enabled successful characterization of both the binding region and regions of remote conformation changes. These data, coupled with our previous higher order structure (HOS) studies, demonstrate the value of a comprehensive toolbox of methods for identifying the putative epitopes and paratopes for biotherapeutic antibodies.
机译:我们之前分析了该工作中描述的Fab-1:VEGF(血管内皮生长因子)系统,具有天然的自上而下的质谱和自下而上的质谱(羧基或羧基或GEE足迹)技术。该工作继续使用蛋白质(FPOP)平台的快速光化学氧化来映射VEGF的溶液结合界面和抗体的片段抗原结合区域(Fab-1)的溶液结合界面继续自下而上的质谱分析。在这项研究中,我们使用FPOP通过定量未结合与界定状态的氧化改性程度来比较溶剂可访问性的变化。测定溶剂可访问性的变化使得能够推断蛋白质结合位点(表位和靶向)以及与先前公开的FAB-1:VEGF晶体结构的比较,进入自上而下和自下而上的数据。使用该方法,我们研究了未结合蛋白质与结合复合物之间的溶剂可接受性的肽水平和残留水平的变化。将这些数据映射到FAB-1:VEGF晶体结构使得能够成功地表征绑定区域和远程构象变化的区域。这些数据与我们之前的更高订单结构(HOS)研究相结合,展示了识别用于生物治疗抗体的推定表位和估算方法的综合工具箱的价值。

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