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Antigens of the type-three secretion system of Aeromonas salmonicida subsp. salmonicida prevent protective immunity in rainbow trout

机译:鲑鱼气单胞菌亚种三型分泌系统的抗原。鲑科预防虹鳟鱼的保护性免疫

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摘要

Aeromonas salmonicida subsp. salmonicida is the etiologic agent of furunculosis, a frequent and significant disease of fisheries worldwide. The disease is largely controlled by commercial oil adjuvanted vaccines containing bacterins. However, the mechanisms leading to a protective immune response remain poorly understood. The type-three secretion system (T3SS) plays a central role in virulence of A. salmonicida subsp. salmonicida and thus may have an influence on the immune response of the host. The aim of this study was to evaluate the role of the T3SS antigens in mounting a protective immune response against furunculosis. Rainbow trout were intraperitoneally vaccinated in two independent experiments with bacterins prepared from a wild-type A. salmonicida strain and an isogenic strain carrying a deletion in the T3SS (ΔascV). Fish were challenged with the wt strain eight weeks after vaccination. In both trials, the survival rate of trout vaccinated with the ΔascV strain was significantly higher (23-28%) in comparison to the group vaccinated with the wt strain. High-throughput proteomics analysis of whole bacteria showed the ascV deletion in the mutant strain resulted in lower expression of all the components of the T3SS, several of which have a potential immunosuppressive activity. In a third experiment, fish were vaccinated with recombinant AcrV (homologous to the protective antigen LcrV of Yersinia) or S-layer protein VapA (control). AcrV vaccinated fish were not protected against a challenge while fish vaccinated with VapA were partially protected. The presence of T3SS proteins in the vaccine preparations decreased the level of protection against A. salmonicida infection and that AcrV was not a protective antigen. These results challenge the hypothesis that mounting specific antibodies against T3SS proteins should bring better protection to fish and demonstrate that further investigations are needed to better understand the mechanisms underlying effective immune responses against A. salmonicida infection.
机译:鲑气单胞菌亚种。鲑鱼科是糠fur病的病原体,糠cul病是世界范围内一种常见的严重渔业疾病。该疾病在很大程度上由含有细菌素的商业油佐剂疫苗控制。但是,导致保护性免疫应答的机制仍然知之甚少。三型分泌系统(T3SS)在沙门氏菌亚种的毒力中起核心作用。鲑鱼,因此可能对宿主的免疫反应有影响。这项研究的目的是评估T3SS抗原在引发针对糠un病的保护性免疫应答中的作用。在两个独立的实验中,虹膜鳟鱼腹膜内接种了由野生型沙门氏菌菌株和携带T3SS缺失的等基因菌株(ΔascV)制备的细菌素。疫苗接种八周后,用wt菌株攻击鱼。在这两项试验中,接种了ΔascV菌株的鳟鱼的存活率均比接种了wt菌株的鳟鱼的存活率高得多(23%至28%)。整个细菌的高通量蛋白质组学分析表明,突变菌株中的ascV缺失导致T3SS所有组件的表达降低,其中一些具有潜在的免疫抑制活性。在第三个实验中,用重组AcrV(与耶尔森氏菌的保护性抗原LcrV同源)或S层蛋白VapA(对照)接种鱼。接种AcrV疫苗的鱼没有受到攻击的保护,而接种VapA的鱼受到了部分保护。疫苗制剂中T3SS蛋白的存在降低了针对沙门氏菌感染的保护水平,而AcrV不是保护性抗原。这些结果挑战了以下假设:针对T3SS蛋白的特异性抗体的安装应为鱼类带来更好的保护,并表明需要进一步研究以更好地了解针对沙门氏菌感染的有效免疫反应的机制。

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