利用中间向下质谱法和高能量碰撞解离触发电子转移/高能量碰撞解离和紫外光解离增强赖氨酸连接抗体药物共轭物的表征

IF 3 Q3 IMMUNOLOGY Antibodies Pub Date : 2024-04-17 DOI:10.3390/antib13020030
E. Watts, Aarti Bashyal, S. D. Dunham, Christopher M. Crittenden, J. Brodbelt
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引用次数: 0

摘要

随着新型生物治疗药物研发工作的推进,需要越来越先进的串联质谱方法来表征最复杂的分子,包括抗体药物共轭物 (ADC)。赖氨酸连接的 ADC(如曲妥珠单抗-伊莫坦辛(T-DM1))属于异质性最强的生物治疗药物。在这里,我们采用了一种工作流程,将有限的蛋白水解与 HCD 触发的 EThcD 和 UVPD 质谱结合起来,对 T-DM1 中产生的中间向下的大尺寸肽进行表征。共鉴定出 53 个含有效载荷的肽段,其质量从 1.8 kDa 到 16.9 kDa 不等,在 92 个可能的连接位点中明确鉴定出 46 个。此外,还发现了七种含有多种有效载荷的肽。对这些类型的异质肽进行鉴定,是揭示赖氨酸共轭 ADC 组合性质的重要一步。
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Enhanced Characterization of Lysine-Linked Antibody Drug Conjugates Enabled by Middle-Down Mass Spectrometry and Higher-Energy Collisional Dissociation-Triggered Electron-Transfer/Higher-Energy Collisional Dissociation and Ultraviolet Photodissociation
As the development of new biotherapeutics advances, increasingly sophisticated tandem mass spectrometry methods are needed to characterize the most complex molecules, including antibody drug conjugates (ADCs). Lysine-linked ADCs, such as trastuzumab-emtansine (T-DM1), are among the most heterogeneous biotherapeutics. Here, we implement a workflow that combines limited proteolysis with HCD-triggered EThcD and UVPD mass spectrometry for the characterization of the resulting middle-down large-sized peptides of T-DM1. Fifty-three payload-containing peptides were identified, ranging in mass from 1.8 to 16.9 kDa, and leading to the unambiguous identification of 46 out of 92 possible conjugation sites. In addition, seven peptides were identified containing multiple payloads. The characterization of these types of heterogeneous peptides represents an important step in unraveling the combinatorial nature of lysine-conjugated ADCs.
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来源期刊
Antibodies
Antibodies IMMUNOLOGY-
CiteScore
7.10
自引率
6.40%
发文量
68
审稿时长
11 weeks
期刊介绍: Antibodies (ISSN 2073-4468), an international, peer-reviewed open access journal which provides an advanced forum for studies related to antibodies and antigens. It publishes reviews, research articles, communications and short notes. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. Full experimental and/or methodical details must be provided. Electronic files or software regarding the full details of the calculation and experimental procedure - if unable to be published in a normal way - can be deposited as supplementary material. This journal covers all topics related to antibodies and antigens, topics of interest include (but are not limited to): antibody-producing cells (including B cells), antibody structure and function, antibody-antigen interactions, Fc receptors, antibody manufacturing antibody engineering, antibody therapy, immunoassays, antibody diagnosis, tissue antigens, exogenous antigens, endogenous antigens, autoantigens, monoclonal antibodies, natural antibodies, humoral immune responses, immunoregulatory molecules.
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