首页> 外文期刊>Clinical and vaccine immunology: CVI >Adhesion protein ApfA of Actinobacillus pleuropneumoniae is required for pathogenesis and is a potential target for vaccine development.
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Adhesion protein ApfA of Actinobacillus pleuropneumoniae is required for pathogenesis and is a potential target for vaccine development.

机译:肌动杆菌的粘附蛋白APFA是发病机理所必需的,并且是疫苗发育的潜在靶标。

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Actinobacillus pleuropneumoniae is the etiologic agent of porcine pleuropneumonia, which causes serious economic losses in the pig farming industry worldwide. Due to a lack of knowledge of its virulence factors and a lack of effective vaccines able to confer cross-serotype protection, it is difficult to place this disease under control. By analyzing its genome sequences, we found that type IV fimbrial subunit protein ApfA is highly conserved among different serotypes of A. pleuropneumoniae. Our study shows that ApfA is an adhesin since its expression was greatly upregulated (135-fold) upon contact with host cells, while its deletion mutant attenuated its capability of adhesion. The inactivation of apfA dramatically reduced the ability of A. pleuropneumoniae to colonize mouse lung, suggesting that apfA is a virulence factor. Purified recombinant ApfA elicited an elevated humoral immune response and conferred robust protection against challenges with A. pleuropneumoniae serovar 1 strain 4074 and serovar 7 strain WF83 in mice. Importantly, the anti-ApfA serum conferred significant protection against both serovar 1 and serovar 7 in mice. These studies indicate that ApfA promotes virulence through attachment to host cells, and its immunogenicity renders it a promising novel subunit vaccine candidate against infection with A. pleuropneumoniae.
机译:肌动杆菌是猪胸膜胸膜的病因学代理,它在全球猪养殖行业造成了严重的经济损失。由于缺乏对其毒力因素的了解以及缺乏能够赋予跨色谱保护的有效疫苗,因此很难控制这种疾病。通过分析其基因组序列,我们发现IV型纤维化亚基蛋白APFA在胸膜炎曲霉的不同血清型中高度保守。我们的研究表明,APFA是一种粘附素,因为它的表达在与宿主细胞接触后大大上调(135倍),而其缺失突变体会衰减其粘附能力。 APFA的灭活大大降低了胸膜炎曲霉的肺部肺肺癌的能力,这表明APFA是毒力因子。纯化的重组APFA引起了升高的体液免疫反应,并赋予了针对小鼠曲霉曲霉1菌株1菌株1菌株和小鼠血清7菌株WF83的挑战的强大保护。重要的是,抗APFA血清对小鼠的血清1和Serovar 7均具有明显的保护。这些研究表明,APFA通过附着在宿主细胞上促进毒力,其免疫原性使其成为一种有希望的新型亚基疫苗候选候选者,以抵抗胸膜炎曲霉的感染。

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