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A Middle-Up Approach with Online Capillary Isoelectric Focusing/Mass Spectrometry for In-Depth Characterization of Cetuximab Charge Heterogeneity

机译:一种具有在线毛细管等电聚焦/质谱法的中间方法,用于深入表征西妥昔单抗电荷异质性

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摘要

Previously, we reported a new online capillary isoelectric focusing/mass spectrometric (CIEF/MS) method for intact monoclonal antibody (mAb) charge variant analysis that uses an electrokinetically pumped sheath-flow nanospray ion source on a time-of-flight (TOF) MS with a pressure-assisted chemical mobilization. The direct online CIEF/MS method exhibited excellent resolution of charge variants conforming to those of imaged capillary isoelectric focusing with ultraviolet detection (iCIEF/UV). However, for complex mAbs, CIEF/MS spectra of the intact charge variant peaks may be too convoluted to be effectively interpreted. In the present study, we implemented a middle-up approach to enhance the capability of the CIEF/MS method for characterizing complex mAb charge variants by reducing sample complexity. To demonstrate such a strategy, we fragmented cetuximab through IdeS enzymatic cleavage and dithiothreitol (DTT) reduction. For the first time, online CIEF/MS resolved the complex charge variants of cetuximab at subunit level, corroborating the profiles obtained by iCIEF/UV. Furthermore, high-resolution TOF mass spectra with high mass accuracy were obtained for the eight charge variants separated by CIEF/MS after IdeS cleavage and for the 11 charge variants after IdeS digestion with subsequent DTT reduction. In-depth analyses revealed the identities of all charge variants and pinpointed the causes of charge heterogeneity, which are in accord with those reported in the literature. The main sources of charge heterogeneity of cetuximab were identified as terminal lysine on the Fc domain (up to one on each single-chain Fc), glycolylneuraminic acid residues on the Fd' domain (up to two on each Fd'), and likely several deamidation species on the Fd' domain. No charge heterogeneity contribution was found from light chain. The in-depth characterization of complex charge variants for cetuximab demonstrates the remarkable capability of this middle up CIEF/MS approach. This novel workflow holds great potential for detecting and elucidating charge variants to help understand proteins with complex charge heterogeneity.
机译:以前,我们报道了一种新的在线毛细管等电聚焦/质谱(CIEF / MS)方法,用于完整的单克隆抗体(MAB)电荷变体分析,其在飞行时间(TOF)上使用电动泵浦鞘流纳米喷雾离子源MS具有压力辅助化学动员。直接在线CIEF / MS方法表现出符合紫外检测(icief / uV)的成像毛细管等电聚焦的电荷变体的优异分辨率。然而,对于复杂的MAb,完整电荷变体峰的凸型/ MS光谱可能太卷积以得到有效解释。在本研究中,我们实施了一种中间方法,以通过降低样品复杂性来增强疾病/ MS方法的能力,用于表征复杂的MAB电荷变体。为了证明这种策略,我们通过IDES酶促切割和二硫噻唑(DTT)还原来分割甲磺酸。首次,在线CIEF / MS解决了亚基水平的Cetuximab的复杂电荷变体,证实了通过icief / uv获得的曲线。此外,获得高分辨率高分辨率具有高质量精度的COF质量光谱,用于在IDES / MS分离的八个电荷变体,并且在IDES消化后的11个电荷变体与随后的DTT降低后进行11个电荷变体。深入分析揭示了所有电荷变体的身份,并确定了电荷异质性的原因,这与文献中报道的那些相吻合。西妥昔单抗的主要电荷源代码异质性鉴定为Fc结构域的末端赖氨酸(在每个单链Fc上,在每个单链Fc)上,FD'结构域上的糖胺酸残基(每个FD上最多两个'),并且可能有几个FD'结构域的脱达物种。轻链没有收费异质性贡献。用于西妥昔单抗的复杂电荷变体的深入表征证明了这种中间凸起/ MS方法的显着能力。这种新颖的工作流程具有检测和阐明电荷变体的巨大潜力,以帮助了解具有复杂电荷异质性的蛋白质。

著录项

  • 来源
    《Analytical chemistry》 |2018年第24期|共8页
  • 作者

    Dai Jun; Zhang Yingru;

  • 作者单位

    Bristol Myers Squibb Res &

    Dev Separat &

    Anal Technol Team POB 4000 Princeton NJ 08543 USA;

    Bristol Myers Squibb Res &

    Dev Separat &

    Anal Technol Team POB 4000 Princeton NJ 08543 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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