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Compartmental Glycosylation Flux Analysis

机译:隔间糖基化通量分析

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摘要

N-linked glycosylation is a critical quality attribute of therapeutic monoclonal antibodies (mAbs) – an important class of biologics. In this work, we developed compartmental Glycosylation Flux Analysis (cGFA) to enable a more accurate representation of the cell’s Golgi apparatus (GA), where protein glycosylation takes place, in the analysis of intracellular fluxes of glycosylation reactions. The application of one-compartment and two-compartment cGFA to a Chinese hamster ovary cell culture production of immunoglobulin G demonstrated the insufficiency of modeling the GA as one well-mixed compartment. The two-compartment cGFA was able to, not only fit the data significantly better than the one-compartment cGFA, but also accurately predict the localization of enzyme in the GA cisternae. Information on glycosylation alterations during cell cultivation, as provided by the cGFA, may lead to a better understanding of how different cell culture parameters control the N-linked glycosylation which would enable a more precise glycoengineering of therapeutic mAbs.
机译:N-连接的糖基化是治疗性单克隆抗体(MAB)的关键质量属性 - 一类重要的生物学。在这项工作中,我们开发了分区糖基化通量分析(CGFA),以便在分析糖基化反应的细胞内通量的分析中进行细胞的Golgi装置(GA)的更准确地表示细胞的Golgi装置(Ga),其中发生蛋白质糖基化。单室和两个隔室CGFA的应用对免疫球蛋白G的中国仓鼠卵巢细胞培养产生证明了GA作为一个良好混合隔室建模的不足。两个隔室CGFA能够,不仅比单室CGFA更好地符合数据,而且还准确地预测了Ga Cisternae中酶的定位。 CGFA提供的细胞培养过程中糖基化改变的信息可能导致更好地了解不同细胞培养参数如何控制N-连接的糖基化,这将能够更精确的治疗性mAb的糖化。

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