Efficient Preparation of Site-Specific Antibody–Drug Conjugates Using Cysteine Insertion

半胱氨酸 抗体 化学 突变 生物化学 细胞毒性 体外 分子生物学 生物 突变体 免疫学 基因
作者
Nazzareno Dimasi,Ryan Fleming,Haihong Zhong,Binyam Bezabeh,Krista Kinneer,R. James Christie,Christine Fazenbaker,Herren Wu,Changshou Gao
出处
期刊:Molecular Pharmaceutics [American Chemical Society]
卷期号:14 (5): 1501-1516 被引量:70
标识
DOI:10.1021/acs.molpharmaceut.6b00995
摘要

Antibody–drug conjugates (ADCs) are a class of biopharmaceuticals that combine the specificity of antibodies with the high-potency of cytotoxic drugs. Engineering cysteine residues in the antibodies using mutagenesis is a common method to prepare site-specific ADCs. With this approach, solvent accessible amino acids in the antibody have been selected for substitution with cysteine for conjugating maleimide-bearing cytotoxic drugs, resulting in homogeneous and stable site-specific ADCs. Here we describe a cysteine engineering approach based on the insertion of cysteines before and after selected sites in the antibody, which can be used for site-specific preparation of ADCs. Cysteine-inserted antibodies have expression level and monomeric content similar to the native antibodies. Conjugation to a pyrrolobenzodiazepine dimer (SG3249) resulted in comparable efficiency of site-specific conjugation between cysteine-inserted and cysteine-substituted antibodies. Cysteine-inserted ADCs were shown to have biophysical properties, FcRn, and antigen binding affinity similar to the cysteine-substituted ADCs. These ADCs were comparable for serum stability to the ADCs prepared using cysteine-mutagenesis and had selective and potent cytotoxicity against human prostate cancer cells. Two of the cysteine-inserted variants abolish binding of the resulting ADCs to FcγRs in vitro, thereby potentially preventing non-target mediated uptake of the ADCs by cells of the innate immune system that express FcγRs, which may result in mitigating off-target toxicities. A selected cysteine-inserted ADC demonstrated potent dose-dependent anti-tumor activity in a xenograph tumor mouse model of human breast adenocarcinoma expressing the oncofetal antigen 5T4.
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