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在CHO和HEK细胞系中表达的新型冠状病毒刺突蛋白的糖谱比较

Glycoprofile Comparison of the SARS-CoV-2 Spike Proteins Expressed in CHO and HEK Cell Lines.

作者信息

Wright Helen L, Evans Caroline, Jackson Philip J, James David C, Tee Kang Lan, Wong Tuck Seng, Dickman Mark J, Pandhal Jagroop

机构信息

School of Chemical, Materials and Biological Engineering, University of Sheffield, Mappin St., Sheffield, S1 3JD, UK.

School of Biosciences, University of Sheffield, Western Bank, Sheffield, S10 2TN, UK.

出版信息

Mol Biotechnol. 2024 Oct 1. doi: 10.1007/s12033-024-01288-2.

Abstract

Coronavirus SARS-CoV-2 spike protein remains a key focus of research due to a continued need for diagnostic and therapeutic tools to monitor and respond to new variants. Glycosylation of the spike protein is critical for the protein's functions in viral attachment and host cell entry. For scalable and cost-effective production of the spike protein, expression system-driven divergence in glycosylation patterns on recombinant spike proteins needs to be fully understood. This study assessed the N-glycosylation profiles of a full-length trimeric spike protein expressed in either Human Embryonic Kidney (HEK Expi293F) or Chinese Hamster Ovary (CHO-S) cells. Glycopeptide analysis was performed using a tandem mass spectrometry workflow and BioPharma incorporating HEK and CHO glycan databases for protein characterisation. The results outline important differences in the variety and types of N-glycan generated by the two cell lines across the 22 known N-glycosylation sites of the spike protein. A notable increase in terminal sialylation, as well as the presence of the potentially immunogenic N-glycolylneuraminic acid at a functionally key N-glycosylation site, was observed in the CHO-S derived spike protein. With the potential for the relatively vast and more complex CHO glycan repertoire (182 glycans relative to 39 human glycans) to produce functional implications with CHO-S expressed spike protein, this study adds valuable knowledge to aid Quality by Design approaches and enable Multi Attribute Monitoring of specific N-glycosylation sites for proteoform analyses. This can further inform antigen development with future variants in order to devise updated diagnostic tests and therapeutic vaccine designs.

摘要

由于持续需要诊断和治疗工具来监测和应对新冠病毒新变种,新冠病毒SARS-CoV-2刺突蛋白仍然是研究的重点。刺突蛋白的糖基化对于该蛋白在病毒附着和宿主细胞进入过程中的功能至关重要。为了可扩展且经济高效地生产刺突蛋白,需要充分了解重组刺突蛋白上表达系统驱动的糖基化模式差异。本研究评估了在人胚肾(HEK Expi293F)细胞或中国仓鼠卵巢(CHO-S)细胞中表达的全长三聚体刺突蛋白的N-糖基化谱。使用串联质谱工作流程和结合了HEK和CHO聚糖数据库的BioPharma进行糖肽分析,以进行蛋白质表征。结果概述了两种细胞系在刺突蛋白22个已知N-糖基化位点上产生的N-聚糖种类和类型的重要差异。在CHO-S来源的刺突蛋白中,观察到末端唾液酸化显著增加,以及在一个功能关键的N-糖基化位点存在潜在免疫原性的N-羟乙酰神经氨酸。鉴于相对庞大且更复杂的CHO聚糖库(相对于39种人类聚糖有182种聚糖)可能对CHO-S表达的刺突蛋白产生功能影响,本研究增加了有价值的知识,有助于质量源于设计的方法,并能够对特定N-糖基化位点进行多属性监测以进行蛋白变体分析。这可以进一步为未来变种的抗原开发提供信息,以便设计更新的诊断测试和治疗性疫苗设计。

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