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Probing molecular interactions in intact antibody: antigen complexes an electrospray time-of-flight mass spectrometry approach.

机译:探测完整抗体中的分子相互作用:抗原复合物一种电喷雾飞行时间质谱方法。

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摘要

Using a combination of nanoflow-electrospray ionization and time-of-flight mass spectrometry we have analyzed the oligomeric state of the recombinant V antigen from Yersinia pestis, the causative agent of plague. The mass spectrometry results show that at pH 6.8 the V antigen in solution exists predominantly as a dimer and a weakly associated tetramer. A monoclonal antibody 7.3, raised against the V antigen, gave rise to mass spectra containing a series of well-resolved charge states at m/z 6000. After addition of aliquots of solution containing V antigen in substoichiometric and molar equivalents, the spectra revealed that two molecules of the V antigen bind to the antibody. Collision-induced dissociation of the antibody-antigen complex results in the selective release of the dimer from the complex supporting the proposed 1:2 antibody:antigen stoichiometry. Control experiments with the recombinant F1 antigen, also from Yersinia pestis, establish that the antibody is specific for the V antigen because no complex with F1 was detected even in the presence of a 10-fold molar excess of F1 antigen. More generally this work demonstrates a rapid means of assessing antigen subunit interactions as well as the stoichiometry and specificity of binding in antibody-antigen complexes.
机译:通过结合使用纳米流电喷雾电离和飞行时间质谱,我们分析了鼠疫耶尔森氏菌(鼠疫的病原体)中重组V抗原的低聚状态。质谱结果表明,在pH 6.8时,溶液中的V抗原主要以二聚体和弱结合的四聚体形式存在。产生了针对V抗原的单克隆抗体7.3,其质谱图产生了一系列在m / z 6000处良好分辨的电荷状态。在添加等分当量和摩尔当量的含V抗原溶液的等分试样后,光谱显示, V抗原的两个分子与抗体结合。碰撞诱导的抗体-抗原复合物的解离导致二聚体从支持提议的1:2抗体:抗原化学计量的复合物中选择性释放。使用重组F1抗原(也来自鼠疫耶尔森氏菌)的对照实验证实,该抗体对V抗原具有特异性,因为即使存在10摩尔摩尔过量的F1抗原,也未检测到与F1的复合物。更普遍地说,这项工作证明了评估抗原亚基相互作用以及抗体-抗原复合物中结合的化学计量和特异性的快速方法。

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