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Immunogenicity of a recombinant coronavirus spike glycoprotein expressed in transgenic plants

机译:转基因植物中表达的重组冠状病毒刺突糖蛋白的免疫原性

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摘要

Recently, it has been demonstrated that plants offer the possibility of producing low cost subunit vaccines that can be either parenterally or orally administered. Here we review data we obtained on the immunological response elicited by two recombinant versions of the glycoprotein S from the swine transmissible gastroenteritis coronavirus (TGEV) expressed in transgenic plants. Arabidopsis or potato plants were genetically transformed with cDNAs constructs encoding the N-terminal domain (aa residues 1–750) or the full-length glycoprotein S of TGEV, responsible for the neutralizing antibody induction against the virus, under the control of the cauliflower mosaic virus 35S (CaMV 35S) promoter. Genomic DNA and mRNA analysis of leave extracts from transformed plants demonstrated the incorporation of the foreign cDNA into the plant genomes as well as their transcription. Expression of recombinant polypeptides was observed in most transgenic plants by ELISA using specific antibodies. Mice immunized either parenterally with leave extracts from transgenic arabidopsis plants or, more interestingly, fed with potato tubers, developed antibodies that specifically reacted with TGEV in ELISA, immunoprecipitated the glycoprotein S and in some cases neutralized the virus infectivity. From the above results, we conclude that transgenic plants expressing glycoprotein S polypeptides may be potentially used as a source of recombinant antigen for vaccine production.
机译:近来,已经证明植物提供了生产可以肠胃外或口服施用的低成本亚单位疫苗的可能性。在这里,我们回顾了我们从猪传染性胃肠炎冠状病毒(TGEV)中表达的两种重组糖蛋白S重组形式引发的免疫应答获得的数据。在菜花花叶病的控制下,用编码N端结构域(aa残基1–750)或TGEV全长糖蛋白S的cDNA构建体对拟南芥或马铃薯植株进行遗传转化。病毒35S(CaMV 35S)启动子。转化植物叶片提取物的基因组DNA和mRNA分析表明,外源cDNA已整合到植物基因组中以及它们的转录。使用特异性抗体通过ELISA在大多数转基因植物中观察到重组多肽的表达。用转基因拟南芥植物的叶子提取物进行肠胃外免疫的小鼠,或者更有趣的是,用马铃薯块茎喂养的小鼠,开发了与TGEV在ELISA中特异性反应的抗体,免疫沉淀了糖蛋白S,在某些情况下中和了病毒的感染性。从以上结果,我们得出结论,表达糖蛋白S多肽的转基因植物可能被潜在地用作疫苗生产的重组抗原的来源。

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