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All Ion Differential Analysis Refines the Detection of Terminal and Internal Diagnostic Fragment Ions for the Characterization of Biologics Product-Related Variants and Impurities by Middle-down Mass Spectrometry

机译:所有离子差分分析都通过中下质谱法优化用于终端和内部诊断片段离子和内部诊断片段离子的检测,以通过中下质谱法进行生物学产品相关变体和杂质

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摘要

Characterization and monitoring of post-translational modifications (PTMs) are key analytical requirements during the development of biologics. Top and middle-down (MD) approaches aim at capturing a direct snapshot of all proteoforms with their combinatorial distribution. However, classical MD data analysis is predominantly limited to the interpretation of terminal ion series and PTMs matched by mass. In this study, time-resolved deconvolution (TRD) maps were produced to detect variants and impurities in Fd, Fc/2, and LC subunits of an IgG1 consistently across multiple samples. Classical MD analysis retrieved terminal ions, suggesting a deamidation at a NN motif for a LC+1 Da species, and inconclusive information for a LC+40 Da species. Additionally, we performed differential analysis of all MS2 ions across unmodified and variant subunit spectra to focus data analysis on spectral differences and reveal diagnostic ions (present, absent, enriched, or depleted ions) before fragment assignment. This sensitive methodology was able to detect diagnostic ions in a chimeric spectrum pointing at a proline-to-histidine sequence variant (+40 Da) missed by classical MD analysis. This methodology was pivotal to unravel relevant terminal ions and internal fragments N-terminal to proline as diagnostic ions to confirm the deamidation site. Moreover, different cleavage propensities were revealed at the deamidated DN site compared to the native NN motif for terminal and internal fragments, which may be tracked as a diagnostic behavior. Differential analysis may refine the detection of novel diagnostic ions and leverage the sequence information on internal fragments for the characterization of product-related variants and impurities by MD mass spectrometry.
机译:翻译后修改(PTMS)的表征和监测是生物制剂开发期间的关键分析要求。顶部和下下(MD)方法旨在捕获所有蛋白质常规的直接快照,它们具有它们的组合分布。然而,经典MD数据分析主要限于终端离子系列和由质量匹配的PTM的解释。在该研究中,制备时间分辨的解卷积(TRD)映射以在多个样品中始终如一地始终如一地始终如一地检测IGG1的FD,Fc / 2和LC亚基的变体和杂质。经典MD分析检索到末端离子,表明在LC + 1Da种的NN图谱处的脱胺,以及LC + 40Da种的不确定信息。另外,我们对未经修改的和变体亚基谱进行了所有MS2离子的差异分析,以对焦于光谱差异的数据分析,并在片段分配之前揭示诊断离子(存在,不存在,富集或贫化的离子)。这种敏感方法能够检测指向胆碱与组氨酸序列变体(+40DA)的嵌合光谱中的诊断离子,所述常规MD分析错过。该方法是将相关的末端离子和内部片段N-末端枢转至脯氨酸作为诊断离子以确认脱胺位点。此外,与末端和内部片段的天然Nn基序相比,在脱胺和内部片段的末端和内部片段中显示不同的裂解施力,其可以被跟踪为诊断行为。差异分析可细化新型诊断离子的检测,并利用MD质谱法表表征产品相关变体和杂质的内部片段。

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  • 来源
    《Analytical chemistry》 |2019年第14期|共8页
  • 作者单位

    Novartis Pharma AG Analyt Dev &

    Characterizat Biopharmaceut Prod &

    Proc Dev Tech Res &

    Dev WKL693-3-20 CH-4002 Basel Switzerland;

    Novartis Pharma AG Analyt Dev &

    Characterizat Biopharmaceut Prod &

    Proc Dev Tech Res &

    Dev WKL693-3-20 CH-4002 Basel Switzerland;

    Novartis Pharma AG Analyt Dev &

    Characterizat Biopharmaceut Prod &

    Proc Dev Tech Res &

    Dev WKL693-3-20 CH-4002 Basel Switzerland;

    Novartis Pharma AG Analyt Dev &

    Characterizat Biopharmaceut Prod &

    Proc Dev Tech Res &

    Dev WKL693-3-20 CH-4002 Basel Switzerland;

    Novartis Pharma AG Analyt Dev &

    Characterizat Biopharmaceut Prod &

    Proc Dev Tech Res &

    Dev WKL693-3-20 CH-4002 Basel Switzerland;

    Novartis Pharma AG Analyt Dev &

    Characterizat Biopharmaceut Prod &

    Proc Dev Tech Res &

    Dev WKL693-3-20 CH-4002 Basel Switzerland;

    Novartis Pharma AG Analyt Dev &

    Characterizat Biopharmaceut Prod &

    Proc Dev Tech Res &

    Dev WKL693-3-20 CH-4002 Basel Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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