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将酰化岩藻糖类似物应用于代谢糖工程。

Applying Acylated Fucose Analogues to Metabolic Glycoengineering.

作者信息

Rosenlöcher Julia, Böhrsch Verena, Sacharjat Michael, Blanchard Véronique, Giese Christoph, Sandig Volker, Hackenberger Christian P R, Hinderlich Stephan

机构信息

Laboratory of Biochemistry, Department of Life Sciences and Technology, Beuth University of Applied Sciences Berlin, Seestrasse 64, 13347 Berlin, Germany.

Department of Biology, Chemistry and Pharmacy, Freie Universität Berlin, Takustrasse 3, 14195 Berlin, Germany.

出版信息

Bioengineering (Basel). 2015 Nov 30;2(4):213-234. doi: 10.3390/bioengineering2040213.

Abstract

Manipulations of cell surface glycosylation or glycan decoration of selected proteins hold immense potential for exploring structure-activity relations or increasing glycoprotein quality. Metabolic glycoengineering describes the strategy where exogenously supplied sugar analogues intercept biosynthetic pathways and are incorporated into glycoconjugates. Low membrane permeability, which so far limited the large-scale adaption of this technology, can be addressed by the introduction of acylated monosaccharides. In this work, we investigated tetra--acetylated, -propanoylated and -polyethylene glycol (PEG)ylated fucoses. Concentrations of up to 500 µM had no substantial effects on viability and recombinant glycoprotein production of human embryonic kidney (HEK)-293T cells. Analogues applied to an engineered Chinese hamster ovary (CHO) cell line with blocked fucose synthesis revealed an increase in cell surface and recombinant antibody fucosylation as proved by lectin blotting, mass spectrometry and monosaccharide analysis. Significant fucose incorporation was achieved for tetra--acetylated and -propanoylated fucoses already at 20 µM. Sequential fucosylation of the recombinant glycoprotein, achieved by the application of increasing concentrations of PEGylated fucose up to 70 µM, correlated with a reduced antibody's binding activity in a Fcγ receptor IIIa (FcγRIIIa) binding assay. Our results provide further insights to modulate fucosylation by exploiting the salvage pathway via metabolic glycoengineering.

摘要

对选定蛋白质的细胞表面糖基化或聚糖修饰进行操作,在探索结构 - 活性关系或提高糖蛋白质量方面具有巨大潜力。代谢糖工程描述了一种策略,即外源供应的糖类似物拦截生物合成途径并掺入糖缀合物中。低膜通透性迄今为止限制了该技术的大规模应用,可通过引入酰化单糖来解决。在这项工作中,我们研究了四乙酰化、丙酰化和聚乙二醇(PEG)化的岩藻糖。高达500 µM的浓度对人胚肾(HEK)-293T细胞的活力和重组糖蛋白产量没有实质性影响。应用于岩藻糖合成受阻的工程化中国仓鼠卵巢(CHO)细胞系的类似物,通过凝集素印迹、质谱和单糖分析证明,细胞表面和重组抗体岩藻糖基化增加。对于四乙酰化和丙酰化岩藻糖,在20 µM时就实现了显著的岩藻糖掺入。通过应用高达70 µM的递增浓度的PEG化岩藻糖实现重组糖蛋白的顺序岩藻糖基化,在Fcγ受体IIIa(FcγRIIIa)结合试验中与抗体结合活性降低相关。我们的结果通过代谢糖工程利用补救途径调节岩藻糖基化提供了进一步的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae95/5597091/2984d0bf4160/bioengineering-02-00213-g001.jpg

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