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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Fast Photochemical Oxidation of Proteins (FPOP) Maps the Epitope of EGFR Binding to Adnectin
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Fast Photochemical Oxidation of Proteins (FPOP) Maps the Epitope of EGFR Binding to Adnectin

机译:蛋白质的快速光化学氧化(FPOP)将EGFR结合到Adnectin的表位定位

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摘要

Epitope mapping is an important tool for the development of monoclonal antibodies, mAbs, as therapeutic drugs. Recently, a class of therapeutic mAb alternatives, adnectins, has been developed as targeted biologics. They are derived from the 10th type III domain of human fibronectin ((10)Fn3). A common approach to map the epitope binding of these therapeutic proteins to their binding partners is X-ray crystallography. Although the crystal structure is known for Adnectin 1 binding to human epidermal growth factor receptor (EGFR), we seek to determine complementary binding in solution and to test the efficacy of footprinting for this purpose. As a relatively new tool in structural biology and complementary to X-ray crystallography, protein footprinting coupled with mass spectrometry is promising for protein-protein interaction studies. We report here the use of fast photochemical oxidation of proteins (FPOP) coupled with MS to map the epitope of EGFR-Adnectin 1 at both the peptide and amino-acid residue levels. The data correlate well with the previously determined epitopes from the crystal structure and are consistent with HDX MS data, which are presented in an accompanying paper. The FPOP-determined binding interface involves various amino-acid and peptide regions near the N terminus of EGFR. The outcome adds credibility to oxidative labeling by FPOP for epitope mapping and motivates more applications in the therapeutic protein area as a stand-alone method or in conjunction with X-ray crystallography, NMR, site-directed mutagenesis, and other orthogonal methods.
机译:表位作图是开发单克隆抗体mAbs作为治疗药物的重要工具。最近,已开发出一类治疗性单克隆抗体替代品,adnectins,作为靶向生物制剂。它们源自人纤连蛋白的第10类III结构域((10)Fn3)。将这些治疗性蛋白质的表位结合定位到其结合伴侣的通用方法是X射线晶体学。尽管已知Adnectin 1与人表皮生长因子受体(EGFR)结合的晶体结构,但我们寻求确定溶液中的互补结合并测试为此目的产生的足迹。作为结构生物学中一种相对较新的工具,它是X射线晶体学的补充,蛋白质印迹与质谱联用对于蛋白质-蛋白质相互作用的研究很有希望。我们在这里报告使用快速光化学氧化蛋白(FPOP)与MS结合,以在肽和氨基酸残基水平定位EGFR-Adnectin 1的表位。数据与晶体结构中先前确定的表位有很好的相关性,并与随附论文中介绍的HDX MS数据一致。 FPOP确定的结合界面涉及EGFR N末端附近的各种氨基酸和肽区域。该结果增加了FPOP进行表位作图的氧化标记的可信度,并作为独立方法或与X射线晶体学,NMR,定点诱变和其他正交方法结合使用,激发了在治疗性蛋白质领域的更多应用。

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