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Structural Analysis of Intact Monoclonal Antibodies by Electron Transfer Dissociation Mass Spectrometry

机译:电子转移解离质谱分析完整单克隆抗体的结构

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Improving qualitative and quantitative characterization of monoclonal antibodies is essential, because of their increasing popularity as therapeutic drug targets. Electron transfer dissociation (ETD)-based top-down mass spectrometry (MS) is the method of choice for in-depth characterization of post-translationally modified large peptides, small- and medium-sized proteins, and noncovalent protein complexes. Here, we describe the performance of ETD-based top-down mass spectrometry for structural analysis of intact 150 kDa monoclonal antibodies, immunoglobulins G (IgGs). Simultaneous mass analysis of intact IgGs as well as a complex mixture of ETD product ions at sufficiently high resolution and mass accuracy in a wide m/z range became possible because of recent advances in state-of-the-art time-of-flight (TOF) mass spectrometry. High-resolution ETD TOF MS performed on IgG1-kappa from murine myeloma cells and human anti-Rhesus D IgG1 resulted in extensive sequence coverage of both light and heavy chains of IgGs and revealed information on their variable domains. Results are superior and complementary to those previously generated by collision-induced dissociation. However, numerous disulfide bonds drastically reduce the efficiency of top-down ETD fragmentation within the protected sequence regions, leaving glycosylation uncharacterized. Further increases in the experiment sensitivity and improvement of ion activation before and after ETD reaction are needed to target S-S bond-protected sequence regions and post-translational modifications.
机译:改善单克隆抗体的定性和定量表征是必不可少的,因为单克隆抗体越来越多地作为治疗药物的靶标。基于电子转移解离(ETD)的自上而下质谱(MS)是深度表征翻译后修饰的大肽,中小型蛋白质和非共价蛋白质复合物的一种选择方法。在这里,我们描述了基于ETD的自上而下的质谱仪对完整的150 kDa单克隆抗体免疫球蛋白G(IgG)进行结构分析的性能。由于最新的飞行时间技术的进步,可以在足够宽的m / z范围内以足够高的分辨率和质量精度对完整IgG以及ETD产物离子的复杂混合物进行同时质量分析( TOF)质谱。对来自鼠类骨髓瘤细胞的IgG1-kappa和人抗Rhesus D IgG1的高分辨率ETD TOF MS导致IgG轻链和重链的广泛序列覆盖,并揭示了其可变域的信息。结果优于先前由碰撞诱导的解离产生的结果。但是,许多二硫键会极大地降低受保护序列区域内自上而下的ETD片段化的效率,从而使糖基化无法实现。为了靶向S-S键保护的序列区域和翻译后修饰,需要进一步提高实验灵敏度和改善ETD反应前后的离子活化。

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