Deglycosylated RBD produced in Pichia pastoris as a low-cost sera COVID-19 diagnosis tool and a vaccine candidate.

IF 3.4 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Glycobiology Pub Date : 2024-03-19 DOI:10.1093/glycob/cwad089
Tommy Idrovo-Hidalgo, María F Pignataro, Luis M Bredeston, Fernanda Elias, María G Herrera, María F Pavan, Sabrina Foscaldi, Mayra Suireszcz, Natalia B Fernández, Diana E Wetzler, Carlos H Paván, Patricio O Craig, Ernesto A Roman, Lucas A M Ruberto, Diego G Noseda, Lorena I Ibañez, Cecilia Czibener, Juan E Ugalde, Alejandro D Nadra, Javier Santos, Cecilia D'Alessio
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Abstract

During the COVID-19 outbreak, numerous tools including protein-based vaccines have been developed. The methylotrophic yeast Pichia pastoris (synonymous to Komagataella phaffii) is an eukaryotic cost-effective and scalable system for recombinant protein production, with the advantages of an efficient secretion system and the protein folding assistance of the secretory pathway of eukaryotic cells. In a previous work, we compared the expression of SARS-CoV-2 Spike Receptor Binding Domain in P. pastoris with that in human cells. Although the size and glycosylation pattern was different between them, their protein structural and conformational features were indistinguishable. Nevertheless, since high mannose glycan extensions in proteins expressed by yeast may be the cause of a nonspecific immune recognition, we deglycosylated RBD in native conditions. This resulted in a highly pure, homogenous, properly folded and monomeric stable protein. This was confirmed by circular dichroism and tryptophan fluorescence spectra and by SEC-HPLC, which were similar to those of RBD proteins produced in yeast or human cells. Deglycosylated RBD was obtained at high yields in a single step, and it was efficient in distinguishing between SARS-CoV-2-negative and positive sera from patients. Moreover, when the deglycosylated variant was used as an immunogen, it elicited a humoral immune response ten times greater than the glycosylated form, producing antibodies with enhanced neutralizing power and eliciting a more robust cellular response. The proposed approach may be used to produce at a low cost, many antigens that require glycosylation to fold and express, but do not require glycans for recognition purposes.

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毕赤酵母生产的去糖基化RBD是一种低成本的血清新冠肺炎诊断工具和候选疫苗。
在新冠肺炎爆发期间,开发了包括蛋白质疫苗在内的许多工具。甲基营养酵母毕赤酵母(Komagataella phaffii的同义词)是一种用于重组蛋白质生产的具有成本效益和可扩展性的真核生物系统,具有高效分泌系统和真核细胞分泌途径的蛋白质折叠辅助的优点。在之前的一项工作中,我们比较了严重急性呼吸系统综合征冠状病毒2型刺突受体结合域(RBD)在巴斯德毕赤酵母(yRBD)中的表达与在人类细胞中的表达。尽管它们的大小和糖基化模式不同,但它们的蛋白质结构和构象特征无法区分。然而,由于酵母表达的蛋白质中的高甘露糖聚糖延伸可能是非特异性免疫识别的原因,我们在天然条件下对RBD进行了去糖基化。这产生了高纯度、同质、适当折叠和单体稳定的蛋白质。圆二色性和色氨酸荧光光谱以及SEC-HPLC证实了这一点,它们与人类细胞中产生的yRBD和RBD相似。脱糖基化RBD在一步中以高产率获得,它可以有效区分患者的严重急性呼吸系统综合征冠状病毒2型阴性和阳性血清。此外,当去糖基化变体用作免疫原时,它引发的体液免疫反应是糖基化形式的十倍,产生的抗体具有增强的中和能力,并引发更强大的细胞反应。所提出的方法可用于以低成本生产许多抗原,这些抗原需要糖基化来折叠和表达,但不需要聚糖用于识别目的。
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来源期刊
Glycobiology
Glycobiology 生物-生化与分子生物学
CiteScore
7.50
自引率
4.70%
发文量
73
审稿时长
3 months
期刊介绍: Established as the leading journal in the field, Glycobiology provides a unique forum dedicated to research into the biological functions of glycans, including glycoproteins, glycolipids, proteoglycans and free oligosaccharides, and on proteins that specifically interact with glycans (including lectins, glycosyltransferases, and glycosidases). Glycobiology is essential reading for researchers in biomedicine, basic science, and the biotechnology industries. By providing a single forum, the journal aims to improve communication between glycobiologists working in different disciplines and to increase the overall visibility of the field.
期刊最新文献
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