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通过有限的 Lys-C 蛋白水解/CEX 分离与质谱和结构分析,对独特 IgG1 mAb CEX 谱进行表征。

Characterization of a unique IgG1 mAb CEX profile by limited Lys-C proteolysis/CEX separation coupled with mass spectrometry and structural analysis.

机构信息

Department of Analytical & Formulation Sciences, 1201 Amgen Court West, Seattle, WA 98119-3105, USA.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2010 Jul 15;878(22):1973-81. doi: 10.1016/j.jchromb.2010.05.032. Epub 2010 Jun 1.

DOI:10.1016/j.jchromb.2010.05.032
PMID:20554483
Abstract

The unique cation exchange chromatography (CEX) charge variant profile of mAb1 is characterized by a combination of mass spectrometry, limited Lys-C digestion followed by CEX separation and structural analysis. During CEX method development, mAb1 showed several unexpected phenomena, including a unique profile containing two main species (acidic 2 and main) and significant instability during stability studies of the main species. Reduced Lys-C peptide mapping identified a small difference in one of the heavy chain peptides (H4) in acidic 2 and further mass analysis identified this difference as Asn55 deamidation. However, the amount of Asn55 deamidation in acidic 2 could account for only half of the species present in this peak. Lys-C limited digest followed by CEX separated several unique peaks in the acidic peak 2 including two pre Fab peaks (LCC1 and LCC2). Whole protein mass analysis suggested that both LCC1 and LCC2 were potentially deamidated species. Subsequent peptide mapping with MS/MS determined that LCC1 contained isoAsp55 and LCC2 contained Asp55. Combining LCC1 and LCC2 CEX peak areas could account for nearly all of the species present in acidic peak 2. Subsequent detailed sequence analysis combined with molecular modeling identified Asn55 and its surrounding residues are responsible for the different CEX behavior and instability of mAb1 following forced degradation at high pH. Overall, the combinatorial approach used in this study proved to be a powerful tool to understand the unique charge variant and stability profile of a monoclonal antibody.

摘要

单克隆抗体 1 的独特阳离子交换色谱(CEX)荷质比变异体特征是通过质谱分析、有限的赖氨酸 C 酶切,然后进行 CEX 分离和结构分析相结合得到的。在 CEX 方法开发过程中,单克隆抗体 1 表现出一些意外现象,包括一个独特的谱图,包含两种主要物质(酸性 2 和主要物质),并且在主要物质稳定性研究过程中表现出显著的不稳定性。减少的赖氨酸 C 肽图分析确定了酸性 2 中的一个重链肽(H4)存在微小差异,进一步的质量分析确定了这种差异是天冬酰胺 55 脱酰胺。然而,酸性 2 中存在的天冬酰胺 55 脱酰胺量仅能解释该峰中存在的一半物质。赖氨酸 C 酶切限制后,CEX 分离出酸性峰 2 中的几个独特峰,包括两个前 Fab 峰(LCC1 和 LCC2)。全蛋白质量分析表明,LCC1 和 LCC2 都是潜在的脱酰胺物质。随后的 MS/MS 肽图分析确定 LCC1 含有异天冬氨酸 55,LCC2 含有天冬氨酸 55。结合 LCC1 和 LCC2 的 CEX 峰面积几乎可以解释酸性峰 2 中存在的所有物质。随后的详细序列分析结合分子建模确定,天冬酰胺 55 及其周围残基是导致单克隆抗体 1 在高 pH 值下强制降解后 CEX 行为和不稳定性不同的原因。总的来说,该研究中使用的组合方法被证明是一种理解单克隆抗体独特电荷变异体和稳定性特征的有力工具。

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