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鉴定能够诱导抗胸膜肺炎放线杆菌攻毒保护性免疫的 ApxIIA 外毒素中的抗原决定簇。

Characterization of antigenic determinants in ApxIIA exotoxin capable of inducing protective immunity to Actinobacillus pleuropneumoniae challenge.

机构信息

Department of Molecular Biology and the Institute for Molecular Biology and Genetics, Chonbuk National University, Korea.

出版信息

Immunol Invest. 2011;40(5):465-80. doi: 10.3109/08820139.2011.558151. Epub 2011 Mar 22.

Abstract

Actinobacillus pleuropneumoniae is the causative agent of porcine pleuropneumonia. Among the virulence factors of the pathogen, ApxIIA, a bacterial exotoxin, is expressed by many serotypes and presents a plausible target for vaccine development. We characterized the region within ApxIIA that induces a protective immune response against bacterial infection using mouse challenge model. Recombinant proteins spanning the length of ApxIIA were produced and antiserum to the full-length ApxIIA was induced in mice. This antiserum recognized fragments #2, #3 and #5 with high binding specificity, but showed poor recognition for fragments #1 and #4. Of the antisera induced in mice by injection of each fragments, only the antiserum to fragment #4 failed to efficiently recognize the full-length antigen, although the individual antisera recognized their cognate antigens with almost equal efficiency. The protective potency of the immunogenic proteins against a challenge injection of bacteria in vivo correlated well with the antibody titer. Fragment #5 induced the highest level of protective activity, comparable to that by the full-length protein. These results support the use of fragment #5 to produce a vaccine against A. pleuropneumoniae challenge, since the small antigen peptide is easier to handle than is the full-length protein and can be expressed efficiently in heterologous expression systems.

摘要

副猪嗜血杆菌是猪传染性胸膜肺炎的病原体。在病原体的毒力因子中,细菌外毒素 ApxIIA 由许多血清型表达,是疫苗开发的合理靶点。我们使用小鼠攻毒模型来描述诱导针对细菌感染的保护性免疫反应的 ApxIIA 区域。我们制备了跨越 ApxIIA 全长的重组蛋白,并在小鼠中诱导了针对全长 ApxIIA 的抗血清。该抗血清与片段 #2、#3 和 #5 具有高度结合特异性,但与片段 #1 和 #4 的识别能力较差。用每个片段注射诱导的小鼠抗血清中,只有针对片段 #4 的抗血清不能有效地识别全长抗原,尽管各抗血清对其同源抗原的识别效率几乎相等。免疫原性蛋白在体内对抗细菌攻毒的保护效力与抗体滴度密切相关。片段 #5 诱导的保护活性最高,与全长蛋白相当。这些结果支持使用片段 #5 来生产针对副猪嗜血杆菌攻毒的疫苗,因为与全长蛋白相比,小抗原肽更容易处理,并且可以在异源表达系统中高效表达。

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