半胱氨酸
单克隆抗体
抗体
突变
生物化学
重组DNA
化学
定点突变
分子生物学
结合位点
抗原
氨基酸
效应器
连接器
突变体
生物
酶
基因
遗传学
操作系统
计算机科学
作者
A. Bruce Lyons,David J. King,Raymond J. Owens,Geoffrey Yarranton,Andrew T. Millican,Nigel Whittle,John R. Adair
标识
DOI:10.1093/protein/3.8.703
摘要
Many diagnostic and therapeutic applications of monoclonal antibodies require the covalent linking of effector or reporter molecules to the immunoglobulin polypeptides. Existing methods generally involve the non-selective modification of amino acid side chains, producing one or more randomly distributed attachment sites. This results in heterogeneous labelling of the antibody molecules and often to a decrease in antigen-binding due to the modification of residues close to the antigen-binding site. We report a novel strategy for site-specifically labelling antibodies through surface cysteine residues. Examination of molecular structures was used to identify amino acids of the CH1 domain of the IgG heavy chain that were accessible to solvent but not to larger molecules. Site-directed mutagenesis was used to substitute cysteine residues at these positions in the heavy chain of a mouse/human chimaeric version of the tumour-binding monoclonal antibody, B72.3. Expression of the modified antibody genes in mammalian cells yielded correctly assembled proteins that had thiol groups in pre-determined positions and showed no loss of antigen-binding activity. One of the mutants was used to demonstrate the site-specific attachment of a radio-iodinated ligand to the chimaeric B72.3 antibody.
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