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酰胺氢/氘交换质谱和计算对接法绘制不连续构象表位图谱。

Mapping of discontinuous conformational epitopes by amide hydrogen/deuterium exchange mass spectrometry and computational docking.

机构信息

ExSAR Corporation, Monmouth Junction, NJ 08852, USA.

出版信息

J Mol Recognit. 2012 Mar;25(3):114-24. doi: 10.1002/jmr.1169.

Abstract

Understanding antigen-antibody interactions at the sub-molecular level is of particular interest for scientific, regulatory, and intellectual property reasons, especially with increasing demand for monoclonal antibody therapeutic agents. Although various techniques are available for the determination of an epitope, there is no widely applicable, high-resolution, and reliable method available. Here, a combination approach using amide hydrogen/deuterium exchange coupled with proteolysis and mass spectrometry (HDX-MS) and computational docking was applied to investigate antigen-antibody interactions. HDX-MS is a widely applicable, medium-resolution, medium-throughput technology that can be applied to epitope identification. First, the epitopes of cytochrome c-E8, IL-13-CNTO607, and IL-17A-CAT-2200 interactions identified using the HDX-MS method were compared with those identified by X-ray co-crystal structures. The identified epitopes are in good agreement with those identified using high-resolution X-ray crystallography. Second, the HDX-MS data were used as constraints for computational docking. More specifically, the non-epitope residues of an antigen identified using HDX-MS were designated as binding ineligible during computational docking. This approach, termed HDX-DOCK, gave more tightly clustered docking poses than stand-alone docking for all antigen-antibody interactions examined and improved docking results significantly for the cytochrome c-E8 interaction.

摘要

在亚分子水平上理解抗原-抗体相互作用,无论是出于科学、监管还是知识产权的原因都具有特别的意义,尤其是单克隆抗体治疗药物的需求不断增加。尽管有各种技术可用于确定表位,但目前还没有广泛适用、高分辨率且可靠的方法。在这里,我们采用了一种组合方法,将酰胺氢/氘交换与蛋白水解和质谱(HDX-MS)以及计算对接相结合,用于研究抗原-抗体相互作用。HDX-MS 是一种广泛适用、中等分辨率、中等通量的技术,可用于鉴定表位。首先,我们将使用 HDX-MS 方法鉴定细胞色素 c-E8、IL-13-CNTO607 和 IL-17A-CAT-2200 相互作用的表位与通过 X 射线共晶结构鉴定的表位进行了比较。鉴定出的表位与使用高分辨率 X 射线晶体学鉴定的表位非常吻合。其次,我们将 HDX-MS 数据用作计算对接的约束条件。更具体地说,在计算对接过程中,将 HDX-MS 鉴定的抗原的非表位残基指定为结合不合格。对于我们所研究的所有抗原-抗体相互作用,这种称为 HDX-DOCK 的方法比独立对接产生的对接构象更为紧凑,并显著改善了细胞色素 c-E8 相互作用的对接结果。

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