化学
结合
抗体-药物偶联物
抗体
计算生物学
抗原
突变
组合化学
单克隆抗体
药品
生物化学
免疫学
药理学
突变
基因
数学分析
生物
医学
数学
作者
Sayumi Yamazoe,Jason M. Hogan,Sean M. West,Xiaodi Deng,Srikanth Kotapati,Xiang Shao,Patrick G. Holder,Vandana Lamba,Mary Huber,Qiang Cong,Sanjeev Gangwar,Chetana Rao,Gavin Dollinger,Arvind Rajpal,Pavel Strop
标识
DOI:10.1021/acs.bioconjchem.0c00146
摘要
Antibody–drug conjugates (ADCs) are a therapeutic modality that traditionally enable the targeted delivery of highly potent cytotoxic agents to specific cells such as tumor cells. More recently, antibodies have been used to deliver molecules such as antibiotics, antigens, and adjuvants to bacteria or specific immune cell subsets. Site-directed mutagenesis of proteins permits more precise control over the site and stoichiometry of their conjugation, giving rise to homogeneous chemically defined ADCs. Identification of favorable sites for conjugation in antibodies is essential as reaction efficiency and product stability are influenced by the tertiary structure of immunoglobulin G (IgG). Current methods to evaluate potential conjugation sites are time-consuming and labor intensive, involving multistep processes for individually produced reactions. Here, we describe a highly efficient method for identification of conjugatable genetic variants by analyzing pooled ADC libraries using mass spectrometry. This approach provides a versatile platform to rapidly uncover new conjugation sites for site-specific ADCs.
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