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Construction of a recombinant attenuated Salmonella typhimurium DNA vaccine carrying Helicobacter pylori hpaA

机译:幽门螺杆菌hpaA重组减毒鼠伤寒沙门氏菌DNA疫苗的构建

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摘要

AIM: To construct a recombinant attenuated Salmonella typhimurium DNA vaccine carrying Helicobacter pylori hpaA gene and to detect its immunogenicity.METHODS: Genomic DNA of the standard H pylori strain 17 874 was isolated as the template, hpaA gene fragment was amplified by polymerase chain reaction (PCR) and cloned into pUCmT vector. DNA sequence of the amplified hpaA gene was assayed, then cloned into the eukaryotic expression vector pIRES through enzyme digestion and ligation reactions. The recombinant plasmid was used to transform competent Escherichia coli DH5α, and the positive clones were screened by PCR and restriction enzyme digestion. Then, the recombinant pIRES-hpaA was used to transform LB5000 and the recombinant plasmid isolated from LB5000 was finally used to transform SL7207. After that, the recombinant strain was grown in vitro repeatedly. In order to identify the immunogenicity of the vaccine in vitro, the recombinant pIRES-hpaA was transfected to COS-7 cells using LipofectamineTM2000, the immunogenicity of expressed HpaA protein was detected with SDS-PAGE and Western blot.RESULTS: The 750-base pair hpaA gene fragment was amplified from the genomic DNA and was consistent with the sequence of H pylori hpaA by sequence analysis. It was confirmed by PCR and restriction enzyme digestion that H pylori hpaA gene was inserted into the eukaryotic expression vector pIRES and a stable recombinant live attenuated Salmonella typhimurium DNA vaccine carrying H pylori hpaA gene was successfully constructed and the specific strip of HpaA expressed by pIRES-hpaA was detected through Western blot.CONCLUSION: The recombinant attenuated Salmonella typhimurium DNA vaccine strain expressing HpaA protein with immunogenicity can be constructed and it may be helpful for further investigating the immune action of DNA vaccine in vivo.
机译:目的:构建携带幽门螺杆菌hpaA基因的减毒鼠伤寒沙门氏菌DNA减毒重组疫苗,并检测其免疫原性。方法:以标准幽门螺杆菌17 874株的基因组DNA为模板,通过聚合酶链反应扩增hpaA基因片段。 PCR)并克隆到pUCmT载体中。测定扩增的hpaA基因的DNA序列,然后通过酶消化和连接反应克隆到真核表达载体pIRES中。该重组质粒用于转化感受态大肠杆菌DH5α,并通过PCR和限制性内切酶消化筛选出阳性克隆。然后,将重组pIRES-hpaA用于转化LB5000,并且从LB5000分离的重组质粒最终用于转化SL7207。之后,重组菌株在体外重复生长。为了鉴定该疫苗的免疫原性,用LipofectamineTM2000将重组pIRES-hpaA转染COS-7细胞,用SDS-PAGE和Western blot检测表达的HpaA蛋白的免疫原性。结果:750个碱基对从基因组DNA中扩增出hpaA基因片段,并通过序列分析与幽门螺杆菌hpaA的序列一致。通过PCR和限制性内切酶消化证实,已将幽门螺杆菌hpaA基因插入真核表达载体pIRES中,成功构建了稳定的携带幽门螺杆菌hpaA基因的重组减毒鼠伤寒沙门氏菌DNA疫苗,并通过pIRES-表达了HpaA的特异性条带。结论:构建了具有免疫原性的表达HpaA蛋白的重组减毒鼠伤寒沙门氏菌DNA疫苗株,为进一步研究DNA疫苗的体内免疫作用提供了可能。

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