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使用 FPOP-LC-MS/MS 揭示单克隆抗体的长程构象变化。

Long-Range Conformational Changes in Monoclonal Antibodies Revealed Using FPOP-LC-MS/MS.

机构信息

Astbury Centre for Structural Molecular Biology and School of Molecular and Cellular Biology, Faculty of Biological Sciences , University of Leeds , Leeds , LS2 9JT , U.K.

Analytical Sciences, BioPharmaceutical Development, BioPharmaceuticals R&D , AstraZeneca , Granta Park , Cambridge , CB21 6GH , U.K.

出版信息

Anal Chem. 2019 Dec 3;91(23):15163-15170. doi: 10.1021/acs.analchem.9b03958. Epub 2019 Nov 13.

Abstract

Differences in conformational dynamics between two full-length monoclonal antibodies have been probed in detail using Fast Photochemical Oxidation of Proteins (FPOP) followed by proteolysis and LC-ESI-MS/MS analyses. FPOP uses hydroxyl radical labeling to probe the surface-accessible regions of proteins and has the advantage that the resulting covalent modifications are irreversible, thus permitting optimal downstream analysis. Despite the two monoclonal antibodies (mAbs) differing by only three amino acids in the heavy chain complementarity determining regions (CDRs), one mAb, MEDI1912-WFL, has been shown to undergo reversible self-association at high concentrations and exhibited poor pharmacokinetic properties in vivo, properties which are markedly improved in the variant, MEDI1912-STT. Identifying the differences in oxidative labeling between the two antibodies at residue level revealed long-range effects which provide a key insight into their conformational differences. Specifically, the amino acid mutations in the CDR region of the heavy chain resulted in significantly different labeling patterns at the interfaces of the C-C1 and C1-C2 domains, with the nonaggregating variant undergoing up to four times more labeling in this region than the aggregation prone variant, thus suggesting a change in the structure and orientation of the C-C1 interface. The wealth of FPOP and LC-MS data obtained enabled the study of the LC elution properties of FPOP-oxidized peptides. Some oxidized amino acids, specifically histidine and lysine, were noted to have unique effects on the retention time of the peptide, offering the promise of using such an analysis as an aid to MS/MS in assigning oxidation sites.

摘要

使用快速光解蛋白氧化(FPOP)结合蛋白水解和 LC-ESI-MS/MS 分析,详细研究了两种全长单克隆抗体之间构象动力学的差异。FPOP 使用羟基自由基标记来探测蛋白质的表面可及区域,其优点是产生的共价修饰是不可逆的,从而允许进行最佳的下游分析。尽管两种单克隆抗体(mAb)在重链互补决定区(CDR)中仅相差三个氨基酸,但一种 mAb,MEDI1912-WFL,已被证明在高浓度下可发生可逆的自缔合,并且在体内表现出较差的药代动力学特性,而变体 MEDI1912-STT 则显著改善了这些特性。鉴定出两种抗体在残基水平上的氧化标记差异揭示了长程效应,这为它们的构象差异提供了关键的见解。具体而言,重链 CDR 区域的氨基酸突变导致 C-C1 和 C1-C2 结构域界面处的标记模式明显不同,非聚集变体在此区域的标记次数比易聚集变体多四倍,这表明 C-C1 界面的结构和取向发生了变化。获得的 FPOP 和 LC-MS 数据的丰富性使我们能够研究 FPOP 氧化肽的 LC 洗脱特性。一些氧化氨基酸,特别是组氨酸和赖氨酸,被注意到对肽的保留时间有独特的影响,这为使用这种分析作为 MS/MS 分配氧化位点的辅助手段提供了希望。

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