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电荷检测质谱法揭示了巨大单克隆抗体聚集体中的构象异质性。

Charge Detection Mass Spectrometry Reveals Conformational Heterogeneity in Megadalton-Sized Monoclonal Antibody Aggregates.

机构信息

Department of Chemistry, University of California, Berkeley, California 94720-1460, United States.

Discovery Biologics, Protein Sciences, Merck & Co., Inc., 213 E Grand Ave., South San Francisco, California 94080, United States.

出版信息

J Am Chem Soc. 2024 Aug 21;146(33):23297-23305. doi: 10.1021/jacs.4c05885. Epub 2024 Aug 7.

Abstract

Aggregation of protein-based therapeutics can occur during development, production, or storage and can lead to loss of efficacy and potential toxicity. Native mass spectrometry of a covalently linked pentameric monoclonal antibody complex with a mass of ∼800 kDa reveals several distinct conformations, smaller complexes, and abundant higher-order aggregates of the pentameric species. Charge detection mass spectrometry (CDMS) reveals individual oligomers up to the pentamer mAb trimer (15 individual mAb molecules; ∼2.4 MDa) whereas intermediate aggregates composed of 6-9 mAb molecules and aggregates larger than the pentameric dimer (1.6 MDa) were not detected/resolved by standard mass spectrometry, size exclusion chromatography (SEC), capillary electrophoresis (CE-SDS), or by mass photometry. Conventional quadrupole time-of-flight mass spectrometry (QTOF MS), mass photometry, SEC, and CE-SDS did not resolve partially or more fully unfolded conformations of each oligomer that were readily identified using CDMS by their significantly higher extents of charging. Trends in the charge-state distributions of individual oligomers provides detailed insight into how the structures of compact and elongated mAb aggregates change as a function of aggregate size. These results demonstrate the advantages of CDMS for obtaining accurate masses and information about the conformations of large antibody aggregates despite extensive overlapping / values. These results open up the ability to investigate structural changes that occur in small, soluble oligomers during the earliest stages of aggregation for antibodies or other proteins.

摘要

蛋白质类治疗药物在开发、生产或储存过程中可能会发生聚集,从而导致疗效丧失和潜在毒性。对连接的五聚体单克隆抗体复合物进行的质荷比 native 质谱分析显示出几种不同的构象、较小的复合物以及五聚体物质的大量丰富的高级聚集体。电荷检测质谱 (CDMS) 可检测到单个低聚物,直至五聚体 mAb 三聚体 (15 个单 mAb 分子; ∼2.4 MDa),而由 6-9 个 mAb 分子组成的中间聚集体和大于五聚体二聚体 (1.6 MDa) 的聚集体则无法通过标准质谱、尺寸排阻色谱 (SEC)、毛细管电泳 (CE-SDS) 或质量光度法检测/分辨。传统的四极杆飞行时间质谱 (QTOF MS)、质量光度法、SEC 和 CE-SDS 均无法分辨每个低聚物的部分或更完全展开的构象,而这些构象可以通过 CDMS 轻松识别,因为它们的荷质比明显更高。单个低聚物的荷质比分布趋势提供了详细的信息,说明紧凑和伸长的 mAb 聚集体的结构如何随聚集体尺寸的变化而变化。这些结果证明了 CDMS 在获得大抗体聚集体的准确质量和构象信息方面的优势,尽管存在广泛的重叠/值。这些结果为研究抗体或其他蛋白质在聚集的最早阶段发生的小可溶性低聚物的结构变化开辟了可能性。

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