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Removal of a C-terminal serine residue proximal to the inter-chain disulfide bond of a human IgG1 lambda light chain mediates enhanced antibody stability and antibody dependent cell-mediated cytotoxicity

丝氨酸 免疫球蛋白轻链 半胱氨酸 细胞毒性 抗体 化学 单克隆抗体 抗体依赖性细胞介导的细胞毒性 生物化学 生物物理学 体外 生物 免疫学
作者
Yang Shen,Lin Zeng,Aiping Zhu,Tim Blanc,Dipa Patel,Anthony L. Pennello,Amtul Bari,Stanley S. Ng,Kris Persaud,Yun Kang,Paul Balderes,David Surguladze,Sagit Hindi,Qinwei Zhou,Dale L. Ludwig,M D Snavely
出处
期刊:mAbs [Landes Bioscience]
卷期号:5 (3): 418-431 被引量:17
标识
DOI:10.4161/mabs.24291
摘要

Optimization of biophysical properties is a critical success factor for the developability of monoclonal antibodies with potential therapeutic applications. The inter-domain disulfide bond between light chain (Lc) and heavy chain (Hc) in human IgG1 lends structural support for antibody scaffold stability, optimal antigen binding, and normal Fc function. Recently, human IgG1λ has been suggested to exhibit significantly greater susceptibility to reduction of the inter Lc-Hc disulfide bond relative to the same disulfide bond in human IgG1κ. To understand the molecular basis for this observed difference in stability, the sequence and structure of human IgG1λ and human IgG1κ were compared. Based on this Lc comparison, three single mutations were made in the λ Lc proximal to the cysteine residue, which forms a disulfide bond with the Hc. We determined that deletion of S214 (dS) improved resistance of the association between Lc and Hc to thermal stress. In addition, deletion of this terminal serine from the Lc of IgG1λ provided further benefit, including an increase in stability at elevated pH, increased yield from transient transfection, and improved in vitro antibody dependent cell-mediated cytotoxicity (ADCC). These observations support the conclusion that the presence of the terminal serine of the λ Lc creates a weaker inter-chain disulfide bond between the Lc and Hc, leading to slightly reduced stability and a potential compromise in IgG1λ function. Our data from a human IgG1λ provide a basis for further investigation of the effects of deleting terminal serine from λLc on the stability and function of other human IgG1λ antibodies.
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