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Resolving Disulfide Structural Isoforms of IgG2 Monoclonal Antibodies by Ion Mobility Mass Spectrometry

机译:通过离子淌度质谱分析IgG2单克隆抗体的二硫键结构同工型

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Recombinant monoclonal antibodies are an important class of therapeutic agents that have found widespread use for the treatment of many human diseases. Here, we have examined the utility of ion mobility mass spectrometry (IMMS) for the rapid characterization of disulfide variants in intact IgG2 monoclonal antibodies. It is shown that IMMS reveals 2 to 3 gas-phase conformer populations for IgG2s. In contrast, a single gas-phase conformer is revealed using IMMS for both an IgG1 antibody and a Cys232 -> Ser mutant IgG2, both of which are homogeneous with respect to disulfide bonding. This provides strong evidence that the observed IgG2 gas-phase conformers are related to disulfide bond heterogeneity. Additionally, IMMS analysis of redox enriched disulfide isoforms allows assignment of the mobility peaks to established disulfide bonding patterns. These data clearly illustrate how IMMS can be used to quickly provide information on the higher order structure of antibody therapeutics.
机译:重组单克隆抗体是一类重要的治疗剂,已广泛用于治疗许多人类疾病。在这里,我们已经检查了离子淌度质谱(IMMS)在完整IgG2单克隆抗体中快速鉴定二硫键变异体的实用性。结果表明,IMMS揭示了2-3个IgG2的气相构象异构体群体。相比之下,使用IMMS揭示了一个单一的气相构象异构体,用于IgG1抗体和Cys232-> Ser突变IgG2,两者在二硫键方面均是同质的。这提供了有力的证据,表明观察到的IgG2气相构象异构体与二硫键异质性有关。另外,富集氧化还原的二硫同工型的IMMS分析允许将迁移率峰分配给已建立的二硫键模式。这些数据清楚地说明了IMMS如何可用于快速提供有关抗体治疗剂更高结构的信息。

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