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In-depth qualitative and quantitative analysis of composite glycosylation profiles and other micro-heterogeneity on intact monoclonal antibodies by high-resolution native mass spectrometry using a modified Orbitrap

机译:使用改良的Orbitrap进行高分辨率天然质谱分析对完整单克隆抗体上的复合糖基化分布图和其他微异质性进行深入的定性和定量分析

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摘要

Here, we describe a fast, easy-to-use, and sensitive method to profile in-depth structural micro-heterogeneity, including intricate N-glycosylation profiles, of monoclonal antibodies at the native intact protein level by means of mass spectrometry using a recently introduced modified Orbitrap Exactive Plus mass spectrometer. We demonstrate the versatility of our method to probe structural micro-heterogeneity by describing the analysis of three types of molecules: (1) a non-covalently bound IgG4 hinge deleted full-antibody in equilibrium with its half-antibody, (2) IgG4 mutants exhibiting highly complex glycosylation profiles, and (3) antibody-drug conjugates. Using the modified instrument, we obtain baseline separation and accurate mass determination of all different proteoforms that may be induced, for example, by glycosylation, drug loading and partial peptide backbone-truncation. We show that our method can handle highly complex glycosylation profiles, identifying more than 20 different glycoforms per monoclonal antibody preparation and more than 30 proteoforms on a single highly purified antibody. In analyzing antibody-drug conjugates, our method also easily identifies and quantifies more than 15 structurally different proteoforms that may result from the collective differences in drug loading and glycosylation. The method presented here will aid in the comprehensive analytical and functional characterization of protein micro-heterogeneity, which is crucial for successful development and manufacturing of therapeutic antibodies
机译:在这里,我们描述了一种通过使用最近的质谱技术在天然完整蛋白水平上分析单克隆抗体的深入结构微观异质性(包括复杂的N-糖基化谱)的快速,易于使用和灵敏的方法推出了改进的Orbitrap Exactive Plus质谱仪。我们通过描述三种类型的分子的分析来证明我们的方法探测结构微观异质性的多功能性:(1)非共价结合的IgG4铰链缺失的全抗体与其半抗体平衡,(2)IgG4突变体表现出高度复杂的糖基化模式,以及(3)抗体-药物偶联物。使用改良的仪器,我们可以获得基线分离和所有可能由例如糖基化,载药量和部分肽主链截短诱导的不同蛋白形式的准确质量测定。我们表明,我们的方法可以处理高度复杂的糖基化谱,每个单克隆抗体制备可识别20多种不同的糖型,而在一种高度纯化的抗体上可识别30多种蛋白型。在分析抗体-药物偶联物时,我们的方法还可以轻松识别和定量分析15种以上结构不同的蛋白形式,这些蛋白形式可能是由于载药量和糖基化作用的总体差异所致。本文介绍的方法将有助于蛋白质微异质性的全面分析和功能表征,这对于成功开发和生产治疗性抗体至关重要

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