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首页> 外文期刊>Chemistry & biology >Site-specific glycosylation of an aglycosylated human IgG1-Fc antibody protein generates neoglycoproteins with enhanced function
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Site-specific glycosylation of an aglycosylated human IgG1-Fc antibody protein generates neoglycoproteins with enhanced function

机译:无糖基化的人IgG1-Fc抗体蛋白的位点特异性糖基化产生功能增强的新糖蛋白

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摘要

A range of well-defined IgG glycoforms was prepared by employing a combination of synthetic carbohydrate chemistry and genetic engineering. The key aspect of this methodology is the coupling of thioaldoses with cysteine-containing proteins to give disulfide-linked neoglycoproteins. This technology was applied to the synthesis of a series of synthetic N-glycan thioaldoses which were coupled to an aglycosylated IgG1-Fc fragment, engineered to have Cys-297 in place of glycan-linked Asn (Deltah-Fc N297C). Analysis of the resulting Fc neoglycoproteins by mass spectrometry and trypsin digestion showed that the saccharides were site-selectively incorporated at Cys-297 to full occupancy without affecting other Fc protein disulfides. The neoglycoproteins were tested for their ability to interact with human FcgammaRI by inhibiting superoxide production by gamma-interferon-stimulated U937 cells. The neoglycoproteins displayed enhanced superoxide inhibition relative to aglycosylated Deltah-Fc N297C, where increased glycan size correlated positively with increased inhibition. [References: 42]
机译:通过使用合成碳水化合物化学和基因工程相结合的方法,制备了一系列定义明确的IgG糖型。该方法的关键方面是将硫代醛糖与含半胱氨酸的蛋白质偶联,生成二硫键连接的新糖蛋白。这项技术被用于合成一系列合成的N-聚糖硫代醛糖,这些糖与无糖基化的IgG1-Fc片段偶联,经工程改造以具有Cys-297取代与聚糖连接的Asn(Deltah-Fc N297C)。通过质谱法和胰蛋白酶消化对所得的Fc新糖蛋白的分析表明,糖在Cys-297位点选择性地掺入至完全占据,而不影响其他Fc蛋白二硫化物。通过抑制γ-干扰素刺激的U937细胞产生的过氧化物来测试新糖蛋白与人FcgRI相互作用的能力。相对于无糖基化的Deltah-Fc N297C,新糖蛋白显示出增强的超氧化物抑制作用,其中增加的聚糖大小与增加的抑制作用呈正相关。 [参考:42]

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