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Application of Lectin Array Technology for Biobetter Characterization: Its Correlation with FcγRIII Binding and ADCC

机译:凝集素阵列技术在生物表征中的应用:与FcγRIII结合和ADCC的相关性

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摘要

Lectin microarray technology was applied to compare the glycosylation pattern of the monoclonal antibody MB311 expressed in SP2.0 cells to an antibody-dependent cellular cytotoxic effector function (ADCC)-optimized variant (MB314). MB314 was generated by a plant expression system that uses genetically modified moss protoplasts (Physcomitrella patens) to generate a de-fucosylated version of MB311. In contrast to MB311, no or very low interactions of MB314 with lectins Aspergillus oryzae l-fucose (AOL), Pisum sativum agglutinin (PSA), Lens culinaris agglutinin (LCA), and Aleuria aurantia lectin (AAL) were observed. These lectins are specific for mono-/biantennary N-glycans containing a core fucose residue. Importantly, this fucose indicative lectin-binding pattern correlated with increased MB314 binding to CD16 (FcγRIII; receptor for the constant region of an antibody)—whose affinity is mediated through core fucosylation—and stronger ADCC. In summary, these results demonstrate that lectin microarrays are useful orthogonal methods during antibody development and for characterization.
机译:应用凝集素微阵列技术将SP2.0细胞中表达的单克隆抗体MB311的糖基化模式与抗体依赖性细胞毒效应功能(ADCC)优化变体(MB314)进行比较。 MB314由植物表达系统生成,该系统使用转基因的苔藓原生质体(Physcomitrella patens)来生成岩藻糖基化形式的MB311。与MB311相比,未观察到MB314与凝集素米曲霉l-岩藻糖(AOL),豌豆(Pisum sativum)凝集素(PSA),扁豆凝集素(LCA)和小叶鸢尾凝集素(AAL)之间的相互作用或相互作用极低。这些凝集素对含有核心岩藻糖残基的单/双年度N-聚糖具有特异性。重要的是,这种岩藻糖指示性凝集素结合模式与MB314与CD16(FcγRIII;抗体恒定区的受体)的结合增加(其亲和力通过核心岩藻糖基化介导)和更强的ADCC有关。总之,这些结果表明,凝集素微阵列是抗体开发过程中和表征过程中有用的正交方法。

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