首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Identification and measurement of isoaspartic acid formation in the complementarity determining region of a fully human monoclonal antibody
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Identification and measurement of isoaspartic acid formation in the complementarity determining region of a fully human monoclonal antibody

机译:鉴定和测量完全人单克隆抗体互补决定区中异天冬氨酸的形成

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摘要

Isomerization plays a key role in protein degradation. This isomerization is often difficult to detect by many protein characterization methods such as SDS-PAGE, SEC, and IEF. This work shows the identification of an isomerized aspartic acid residue in the CDR2 of the heavy chain of a fully human monoclonal antibody. This isoaspartic acid increases significantly with storage at 2-8 degrees C. Hydrophobic interaction chromatography was utilized to separate the isoaspartic variant in the intact state. Mass spectrometry including peptide mapping was employed to identify and confirm the exact location of the modification. Since this modification occurs in the complementarity determining region (CDR) it was found that binding is reduced. Therefore. three different analytical methods for regular analysis of this isomerization are evaluated. These methods include peptide mapping by LC-MS, HIC, and a protein isoaspartate methyltransferase assay. It was determined that HIC is the best method to regularly assay the level of isomerization in this monoclonal antibody.
机译:异构化在蛋白质降解中起关键作用。通过许多蛋白质表征方法(例如SDS-PAGE,SEC和IEF)通常很难检测到这种异构化。这项工作显示了完全人单克隆抗体重链CDR2中异构化的天冬氨酸残基的鉴定。该异天冬氨酸随着在2-8摄氏度下储存而显着增加。疏水相互作用色谱法用于分离完整状态的异天冬氨酸变体。质谱分析(包括肽图分析)用于鉴定和确认修饰的确切位置。由于这种修饰发生在互补决定区(CDR)中,因此发现结合减少。因此。评估了三种不同的分析方法,用于定期分析该异构化反应。这些方法包括通过LC-MS,HIC进行肽图分析和蛋白质异天冬氨酸甲基转移酶测定。已确定HIC是定期测定该单克隆抗体中异构化水平的最佳方法。

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