Co-expression of human sialyltransferase improves N-glycosylation in Leishmania tarentolae and optimizes the production of humanized therapeutic glycoprotein IFN-beta

IF 4.1 2区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Journal of biotechnology Pub Date : 2024-08-04 DOI:10.1016/j.jbiotec.2024.08.002
Renato Lima Senra , Higor Sette Pereira , Luana Maria Pacheco Schittino , Patrícia Pereira Fontes , Tatiana Aparecida de Oliveira , Andrea de Oliveira Barros Ribon , Juliana Lopes Rangel Fietto , Liza Figueiredo Felicori Vilela , Jacqueline Araújo Fiúza , Tiago Antônio de Oliveira Mendes
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Abstract

The production of therapeutic glycoproteins is primarily expensive due to the necessity of culturing mammalian cells. These systems often require complex and costly culture media and typically yield low amounts of protein. Leishmania tarentolae, a non-pathogenic protozoan to mammals, has emerged as a cost-effective alternative system for heterologous glycoprotein expression due to its suitability for large-scale production using low-cost culture media, and its ability to perform mammalian-like post-translational modifications, including glycosylation. Nevertheless, differences in the carbohydrate residues at the end of N-glycan chains are observed in Leishmania compared to mammalian cells due to the absence of biosynthetic enzymes in Leishmania that are required for the incorporation of terminal sialic acid. In this study, a genetically optimized L. tarentolae cell line was engineered for the production of recombinant interferon-β (IFN-β) featuring a complete mammalian N-glycosylation profile. Genomic and metabolomic analyses revealed that heterologous expression of the sialyltransferase enzyme and cultivation in a medium containing sialic acid were sufficient to generate mammalian-like protein N-glycosylation. N-glycan mass spectrometry analysis demonstrated a glycosylation pattern compatible with the incorporation of sialic acid into the glycan structure. In vitro IFN-β activity indicated that the expressed protein exhibited reduced inflammatory effects compared to IFN-beta produced by other platforms, such as bacteria, non-optimized L. tarentolae, and mammalian cells.

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人唾液酸转移酶的共同表达提高了透明带状利什曼原虫的 N-糖化作用,并优化了人源化治疗性糖蛋白 IFN-BETA 的生产。
由于必须培养哺乳动物细胞,治疗性糖蛋白的生产成本十分昂贵。这些系统通常需要复杂而昂贵的培养基,而且蛋白质产量通常很低。对哺乳动物非致病性的原生动物--透明利什曼原虫(Leishmania tarentolae),由于适合使用低成本培养基进行大规模生产,并能进行类似哺乳动物的翻译后修饰(包括糖基化),已成为一种具有成本效益的异源糖蛋白表达替代系统。然而,与哺乳动物细胞相比,利什曼原虫 N-聚糖链末端的碳水化合物残基有所不同,这是因为利什曼原虫体内缺乏合成末端硅酸所需的生物合成酶。在这项研究中,我们设计了一种基因优化的L. tarentolae细胞系,用于生产具有完整哺乳动物N-糖基化特征的重组干扰素-β(IFN-β)。基因组和代谢组分析表明,通过异源表达硅酰基转移酶并在含有硅酸的培养基中培养,足以产生类似哺乳动物的蛋白质 N-糖基化。N-糖质谱分析表明,糖基化模式与将硅烷基酸纳入聚糖结构相一致。体外 IFN-β 活性表明,与其他平台(如细菌、非优化的透明梭状芽孢杆菌和哺乳动物细胞)产生的 IFN-beta 相比,表达的蛋白具有较低的炎症效应。
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来源期刊
Journal of biotechnology
Journal of biotechnology 工程技术-生物工程与应用微生物
CiteScore
8.90
自引率
2.40%
发文量
190
审稿时长
45 days
期刊介绍: The Journal of Biotechnology has an open access mirror journal, the Journal of Biotechnology: X, sharing the same aims and scope, editorial team, submission system and rigorous peer review. The Journal provides a medium for the rapid publication of both full-length articles and short communications on novel and innovative aspects of biotechnology. The Journal will accept papers ranging from genetic or molecular biological positions to those covering biochemical, chemical or bioprocess engineering aspects as well as computer application of new software concepts, provided that in each case the material is directly relevant to biotechnological systems. Papers presenting information of a multidisciplinary nature that would not be suitable for publication in a journal devoted to a single discipline, are particularly welcome.
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