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Site-selective chemoenzymatic glycoengineering of Fab and Fc glycans of a therapeutic antibody

机译:治疗性抗体的Fab和Fc聚糖的位点选择性化学酶糖工程

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摘要

The N-glycans attached to the Fab and Fc domains play distinct roles in modulating the functions of antibodies. However, posttranslational site-selective modifications of glycans in antibodies and other multiply glycosylated proteins remain a challenging task. Here, we report a chemoenzymatic method that permits independent manipulation of the Fab and Fc N-glycans, using cetuximab as a model therapeutic monoclonal antibody. Taking advantage of the substrate specificity of three endoglycosidases (Endo-S, Endo-S2, and Endo-F3) and their glycosynthase mutants, together with an unexpected substrate site-selectivity of a bacterial α1,6-fucosidase from Lactobacillus casei (AlfC), we were able to synthesize an optimal homogeneous glycoform of cetuximab in which the heterogeneous and immunogenic Fab N-glycans were replaced with a single sialylated N-glycan, and the core-fucosylated Fc N-glycans were remodeled with a nonfucosylated and fully galactosylated N-glycan. The glycoengineered cetuximab demonstrated increased affinity for the FcγIIIa receptor and significantly enhanced antibody-dependent cell-mediated cytotoxicity (ADCC) activity.
机译:连接至Fab和Fc结构域的N-聚糖在调节抗体的功能中起不同的作用。然而,抗体和其他多重糖基化蛋白质中聚糖的翻译后位点选择性修饰仍然是一项艰巨的任务。在这里,我们报告了一种化学酶促方法,该方法允许使用西妥昔单抗作为模型治疗性单克隆抗体,独立控制Fab和Fc N-聚糖。利用三种内切糖苷酶(Endo-S,Endo-S2和Endo-F3)及其糖合酶突变体的底物特异性,以及干酪乳杆菌(AlfC)细菌α1,6-岩藻糖苷酶的意外底物位点选择性,我们能够合成西妥昔单抗的最佳均一糖型,其中异源和免疫原性Fab N-聚糖被单个唾液酸化N-聚糖取代,核心-岩藻糖基化Fc N-聚糖被非岩藻糖基化和完全半乳糖基化的N重塑-聚糖。糖基化西妥昔单抗证明对FcγIIIa受体的亲和力增加,并且抗体依赖性细胞介导的细胞毒性(ADCC)活性大大增强。

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