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通过糖基工程化 GDP-岩藻糖生物合成途径调节 IgG1 免疫效应功能。

Modulation of IgG1 immunoeffector function by glycoengineering of the GDP-fucose biosynthesis pathway.

机构信息

Bioprocess Research and Development, Eli Lilly and Company, Indianapolis, Indiana.

Biotechnology Discovery Research, Lilly Research Laboratories, Eli Lilly and Company, Lilly Corporate Center, Indianapolis, Indiana.

出版信息

Biotechnol Bioeng. 2018 Mar;115(3):705-718. doi: 10.1002/bit.26496. Epub 2017 Dec 1.

Abstract

Cross-linking of the Fcγ receptors expressed on the surface of hematopoietic cells by IgG immune complexes triggers the activation of key immune effector mechanisms, including antibody-dependent cell mediated cytotoxicity (ADCC). A conserved N-glycan positioned at the N-terminal region of the IgG C 2 domain is critical in maintaining the quaternary structure of the molecule for Fcγ receptor engagement. The removal of a single core fucose residue from the N-glycan results in a considerable increase in affinity for FcγRIIIa leading to an enhanced receptor-mediated immunoeffector function. The enhanced potency of the molecule translates into a number of distinct advantages in the development of IgG antibodies for cancer therapy. In an effort to significantly increase the potency of an anti-CD20, IgG1 molecule, we selectively targeted the de novo GDP-fucose biosynthesis pathway of the host CHO cell line to generate >80% afucosylated IgG1 resulting in enhanced FcγRIIIa binding (13-fold) and in vitro ADCC cell-based activity (11-fold). In addition, this effective glycoengineering strategy also allowed for the utilization of the alternate GDP-fucose salvage pathway to provide a fast and efficient mechanism to manipulate the N-glycan fucosylation level to modulate IgG immune effector function.

摘要

IgG 免疫复合物在表面表达的造血细胞的 Fcγ 受体交联触发关键免疫效应机制的激活,包括抗体依赖性细胞介导的细胞毒性(ADCC)。位于 IgG C2 结构域 N 末端的保守 N-聚糖对于维持分子与 FcγR 结合的四级结构至关重要。从 N-聚糖中去除一个核心岩藻糖残基会导致对 FcγRIIIa 的亲和力显著增加,从而增强受体介导的免疫效应功能。该分子的增强效力转化为在癌症治疗中开发 IgG 抗体的许多明显优势。为了显著提高抗 CD20、IgG1 分子的效力,我们选择性地靶向宿主 CHO 细胞系的从头 GDP-岩藻糖生物合成途径,生成>80%的去岩藻糖 IgG1,从而增强 FcγRIIIa 结合(13 倍)和体外 ADCC 细胞活性(11 倍)。此外,这种有效的糖基工程策略还允许利用替代的 GDP-岩藻糖补救途径提供快速有效的机制来操纵 N-聚糖岩藻糖基化水平以调节 IgG 免疫效应功能。

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