首页> 外文会议>Cell culture engineering XV >SITE-SPECIFIC GLYCAN ANALYSIS OF PROTEINS IN CELL CULTURE CONDITIONED MEDIA AND SUB-CELLULAR FRACTIONS BY LC-MS/MS FOR UNDERSTANDING THE IMPACT OF PROCESS CONDITIONS ON N-GLYCOSYLATION
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SITE-SPECIFIC GLYCAN ANALYSIS OF PROTEINS IN CELL CULTURE CONDITIONED MEDIA AND SUB-CELLULAR FRACTIONS BY LC-MS/MS FOR UNDERSTANDING THE IMPACT OF PROCESS CONDITIONS ON N-GLYCOSYLATION

机译:通过LC-MS / MS进行细胞培养条件培养基和亚细胞组分中蛋白质的特定位聚糖分析,以了解过程条件对N-糖基化的影响

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摘要

Protein glycosylation, which involves the attachment of sugar residues to proteins, is an important post-translational modification that can influence the structure, pharmacological activity and stability of therapeutic proteins. The mechanisms by which cells modify and process these sugars therefore needs to be well understood and tightly controlled during protein production to ensure consistent product quality. Typically, glycosylation patterns are determined for the secreted therapeutic protein found in the conditioned media (CM). However, since glycosylation occurs through enzymatic reactions within the cellular endomembrane system, the glycosylation profile of the therapeutic protein in different intracellular compartments can also provide valuable insight into the static and dynamic properties of the cell culture system that impact protein glycosylation. This study focuses on determination of glycosylation patterns in CM and different sub-cellular fractions for three distinct N-glycosylation sites of a therapeutic Fc-fusion protein, by applying the Selected Reaction Monitoring (SRM) approach coupled with liquid chromatography-tandem mass spectrometry (LC-MS/MS). SRM is a rapidly evolving technique for the reliable quantification of low abundance glycopeptides, since it reduces noise and enhances signal intensity by monitoring a select number of predetermined transitions. This mode of analysis was successfully applied for comprehensive site-specific glycan profiling of the therapeutic protein from CM and sub-cellular fractions during CHO cell culture, providing an overview of intermediate and final glycan species formed during the glycosylation process. The distinct glycan distribution patterns for the Fc-fusion protein in CM and different sub-cellular fractions, revealed through this effort, provide a window for understanding the impact of cell culture conditions on the glycosylation pathway, and possibly identify the bottlenecks in generation of glycan species of interest.
机译:蛋白质糖基化涉及糖残基与蛋白质的连接,是重要的翻译后修饰,可影响治疗性蛋白质的结构,药理活性和稳定性。因此,需要在蛋白质生产过程中充分理解和严格控制细胞修饰和加工这些糖的机制,以确保稳定的产品质量。通常,确定条件培养基(CM)中分泌的治疗性蛋白质的糖基化模式。但是,由于糖基化是通过细胞内膜系统内的酶促反应发生的,因此不同细胞内区室中治疗性蛋白质的糖基化特征也可以为影响蛋白质糖基化的细胞培养系统的静态和动态特性提供有价值的见解。这项研究的重点是通过应用选择性反应监测(SRM)方法与液相色谱-串联质谱(结合使用)来确定治疗性Fc融合蛋白的三个不同N-糖基化位点的CM和不同亚细胞部分的糖基化模式( LC-MS / MS)。 SRM是对低丰度糖肽进行可靠定量的一种快速发展的技术,因为它通过监视选定数量的预定跃迁来降低噪音并增强信号强度。这种分析模式已成功应用于CHO细胞培养过程中,来自CM和亚细胞部分的治疗性蛋白质的全面位点特异性聚糖分析,提供了糖基化过程中形成的中间和最终聚糖种类的概述。通过这项工作揭示了CM和不同亚细胞部分中Fc融合蛋白的独特聚糖分布模式,这为了解细胞培养条件对糖基化途径的影响提供了一个窗口,并可能确定聚糖生成的瓶颈感兴趣的物种。

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