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Expression of Helicobacter pylori TonB Protein in Transgenic Arabidopsis thaliana : toward production of vaccine antigens in plants

机译:幽门螺杆菌TonB蛋白在转基因拟南芥中的表达:植物中疫苗抗原的产生

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摘要

Background: The aim of this study was to produce a recombinant version of the highly antigenic Helicobacter pylori TonB (iron-dependent siderophore transporter protein HP1341) in transgenic plants as a candidate oral vaccine antigen. Materials and Methods: Using Agrobacterium-mediated gene transfer, we introduced three different constructs of the tonB gene into the genome of the model plant Arabidopsis thaliana. We investigated transgene insertion by PCR, produced TonB antibodies for analysis of the production of the recombinant protein in plants, verified the identity of the protein produced by mass spectrometry analysis, and analyzed the number of genetic inserts in the plants by Southern blotting. Results: Three different constructs of the expression cassette (full-length tonB, tonB truncated in the 5' end removing the codons for a transmembrane helix, and the latter construct with codons for the endoplasmic reticulum SEKDEL retention signal added to the 3' end) were used to find the most effective way to express the TonB antigen. Production of TonB protein was detected in plants transformed with each of the constructs, confirmed by both Western blotting and mass spectrometry analysis. No considerable differences in protein expression from the three different constructs were observed. The protein concentration in the plants was at least 0.05% of the total soluble proteins. Conclusions: The Helicobacter pylori TonB protein can be produced in Arabidopsis thaliana plants in a form that is recognizable by rabbit anti-TonB antiserum. These TonB-expressing plants are highly suitable for animal studies of oral adminstration as a route for immunization against Helicobacter infections.
机译:背景:本研究的目的是在转基因植物中产生高抗原性幽门螺杆菌TonB(铁依赖性铁载体转运蛋白HP1341)的重组形式,作为候选口服疫苗抗原。材料和方法:通过农杆菌介导的基因转移,我们将tonB基因的三种不同构建体引入到拟南芥模型植物的基因组中。我们研究了通过PCR进行的转基因插入,产生的TonB抗体,用于分析植物中重组蛋白的产生,通过质谱分析验证了产生的蛋白的身份,并通过Southern印迹分析了植物中遗传插入物的数量。结果:表达盒的三种不同构建体(全长tonB,在5'端被截短的tonB去除了跨膜螺旋的密码子,而后一种在3'端添加了具有内质网SEKDEL保留信号的密码子的构建体)被用来寻找表达TonB抗原的最有效方法。通过蛋白质印迹和质谱分析证实了在用每种构建体转化的植物中检测到TonB蛋白的产生。没有观察到来自三种不同构建体的蛋白质表达的显着差异。植物中的蛋白质浓度至少为总可溶性蛋白质的0.05%。结论:幽门螺杆菌TonB蛋白可以在拟南芥植物中产生,其形式可被兔抗TonB抗血清识别。这些表达TonB的植物非常适合动物口服研究,作为抵抗幽门螺杆菌感染的免疫途径。

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