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Production and characterization of an orally immunogenic Plasmodium antigen in plants using a virus-based expression system

机译:基于病毒表达系统的植物口服免疫原性疟原虫的生产与表征

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Increasing numbers of plant-made vaccines and pharmaceuticals are entering the late stage of product development and commercialization. Despite the theoretical benefits of such production, expression of parasite antigens in plants, particularly those from Plasmodium, the causative parasites for malaria, have achieved only limited success. We have previously shown that stable transformation of tobacco plants with a plant-codon optimized form of the Plasmodium yoelii merozoite surface protein 4/5 (PyMSP4/5) gene resulted in PyMSP4/5 expression of up to approximately 0.25% of total soluble protein. In this report, we describe the rapid expression of PyMSP4/5 in Nicotiana benthamiana leaves using the deconstructed tobacco mosaic virus-based magnICON expression system. PyMSP4/5 yields of up to 10% TSP or 1-2 mg/g of fresh weight were consistently achieved. Characterization of the recombinant plant-made PyMSP4/5 indicates that it is structurally similar to PyMSP4/5 expressed by Escherichia coli. It is notable that the plant-made PyMSP4/5 protein retained its immunogenicity following long-term storage at ambient temperature within freeze-dried leaves. With assistance from a mucosal adjuvant the PyMSP4/5-containing leaves induced PyMSP4/5-specific antibodies when delivered orally to naive mice or mice primed by a DNA vaccine. This study provides evidence that immunogenic Plasmodium antigens can be produced in large quantities in plants using the magnICON viral vector system.
机译:越来越多的植物制造的疫苗和药品正在进入产品开发和商业化的晚期阶段。尽管这种生产的理论益处,但植物中寄生虫抗原的表达,特别是来自疟原虫,疟疾的致病寄生虫的表达已经取得有限的成功。我们之前已经表明,具有植物密码子优化形式的植物密码子优化形式的植物密码子的稳定变换,导致PymSP4 / 5的表达高达约0.25%的总可溶性蛋白质。在本报告中,我们描述了使用基于Deconstrical的烟草马赛克病毒的巨大表达系统,描述了尼古利亚纳·宾亚叶片的Pymsp4 / 5的快速表达。 Pymsp4 / 5始终达到高达10%Tsp或1-2mg / g的产量。重组植物制造的PymSP4 / 5的表征表明它是结构上类似于大肠杆菌表达的Pymsp4 / 5。值得注意的是,在冷冻干燥的叶片内的环境温度下长期储存后,植物所制作的Pymsp4 / 5蛋白保留其免疫原性。伴随着粘膜佐剂的辅助,当通过DNA疫苗施加的野鼠或小鼠递送时,含有PymSP4 / 5的含有PymSP4 / 5特异性抗体。本研究提供了用巨锰病毒载体系统在植物中大量生产免疫原性疟原虫抗原的证据。

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