Glycan engineering reveals interrelated effects of terminal galactose and core fucose on antibody‐dependent cell‐mediated cytotoxicity

抗体依赖性细胞介导的细胞毒性 岩藻糖 聚糖 糖基化 抗体 效应器 化学 碎片结晶区 细胞毒性 半乳糖 岩藻糖基化 生物化学 体外 生物 受体 免疫学 糖蛋白
作者
Qingchun Zhang,Marisa K. Joubert,Alla Polozova,Ronandro De Guzman,Kamala Lakamsani,Francis Kinderman,Dong Xiang,A. Said El Shami,Nahira Miscalichi,Gregory C. Flynn,Scott Kuhns
出处
期刊:Biotechnology Progress [American Chemical Society]
卷期号:36 (6) 被引量:12
标识
DOI:10.1002/btpr.3045
摘要

Abstract Antibody‐dependent cell‐mediated cytotoxicity (ADCC) has been identified as one of the potentially critical effector functions underlying the clinical efficacy of some therapeutic immunoglobin G1 (IgG1) antibodies. It has been well established that higher levels of afucosylated N‐linked glycan structures on the Fc region enhance the IgG binding affinity to the FcγIIIa receptor and lead to increased ADCC activity. However, whether terminal galactosylation of an IgG1 impacts its ADCC activity is less understood. Here, we used a new strategy for glycan enrichment and remodeling to study the impact of terminal galactose on ADCC activity for therapeutic IgG1s. Our results indicate that the degree of influence of terminal galactose on in vitro ADCC activity depends on the presence or absence of the core fucose, which is typically linked to the first N‐acetyl glucosamine residue of an N‐linked glycosylation core structure. Specifically, terminal galactose on afucosylated IgG1 mAbs enhanced ADCC activity with impact coefficients (ADCC%/Gal%) more than 20, but had minimal influence on ADCC activity on fucosylated structures with impact coefficient in the range of 0.1–0.2. Knowledge gained here can be used to guide product and process development activities for biotherapeutic antibodies that require effector function for efficacy, and also highlight the complexity in modulating the immune response through N‐linked glycosylation of antibodies.
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