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Effective Protective Immunity to Yersinia pestis Infection Conferred by DNA Vaccine Coding for Derivatives of the F1 Capsular Antigen

机译:F1胶囊抗原衍生物的DNA疫苗编码对鼠疫耶尔森氏菌感染的有效保护性免疫。

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Three plasmids expressing derivatives of the Yersinia pestis capsular F1 antigen were evaluated for their potential as DNA vaccines. These included plasmids expressing the full-length F1, F1 devoid of its putative signal peptide (deF1), and F1 fused to the signal-bearing E3 polypeptide of Semliki Forest virus (E3/F1). Expression of these derivatives in transfected HEK293 cells revealed that deF1 is expressed in the cytosol, E3/F1 is targeted to the secretory cisternae, and the nonmodified F1 is rapidly eliminated from the cell. Intramuscular vaccination of mice with these plasmids revealed that the vector expressing deF1 was the most effective in eliciting anti-F1 antibodies. This response was not limited to specific mouse strains or to the mode of DNA administration, though gene gun-mediated vaccination was by far more effective than intramuscular needle injection. Vaccination of mice with deF1 DNA conferred protection against subcutaneous infection with the virulent Y. pestis Kimberley53 strain, even at challenge amounts as high as 4,000 50% lethal doses. Antibodies appear to play a major role in mediating this protection, as demonstrated by passive transfer of anti-deF1 DNA antiserum. Taken together, these observations indicate that a tailored genetic vaccine based on a bacterial protein can be used to confer protection against plague in mice without resorting to regimens involving the use of purified proteins.
机译:评价了三种表达鼠疫耶尔森氏菌荚膜F1抗原衍生物的质粒作为DNA疫苗的潜力。这些包括表达全长F1,不含其推定信号肽(deF1)的F1和融合到Semliki Forest病毒带有信号的E3多肽(E3 / F1)的F1的质粒。这些衍生物在转染的HEK293细胞中的表达表明,deF1在细胞质中表达,E3 / F1靶向分泌的池,并且未修饰的F1从细胞中迅速清除。用这些质粒对小鼠进行肌肉内疫苗接种表明,表达deF1的载体在引发抗F1抗体方面最有效。尽管基因枪介导的疫苗接种远比肌肉内针头注射更为有效,但这种反应不仅限于特定的小鼠品系或DNA施用方式。用deF1 DNA进行的疫苗接种可防止强毒的 Y皮下感染。即使在攻击量高达4,000 50%致死剂量的情况下,也可以使用鼠疫金伯利53菌株。抗体似乎在介导这种保护中起主要作用,如抗deF1 DNA抗血清的被动转移所证明的。综上所述,这些观察结果表明,基于细菌蛋白的定制基因疫苗可用于赋予小鼠抗鼠疫的保护作用,而无需诉诸使用纯化蛋白的方案。

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