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首页> 外文期刊>Infection and immunity >Fur-Regulated Iron Uptake System of Edwardsiella ictaluri and Its Influence on Pathogenesis and Immunogenicity in the Catfish Host
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Fur-Regulated Iron Uptake System of Edwardsiella ictaluri and Its Influence on Pathogenesis and Immunogenicity in the Catfish Host

机译:ic鱼爱德华氏菌的毛皮调节铁摄取系统及其对the鱼寄主发病机理和免疫原性的影响

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The ability of bacterial pathogens to take up iron from the host during infection is necessary for their multiplication within the host. However, host high-affinity iron binding proteins limit levels of free iron in fluids and tissues. To overcome this deficiency of iron during infection, bacterial pathogens have developed iron uptake systems that are upregulated in the absence of iron, typically tightly controlled by the ferric uptake regulator (Fur) protein. The iron uptake system of Edwardsiella ictaluri, a host-restricted pathogen of channel catfish (Ictalurus punctatus) and the main pathogen of this fish in aquaculture, is unknown. Here we describe the E. ictaluri Fur protein, the iron uptake machinery controlled by Fur, and the effects of fur gene deletion on virulence and immunogenicity in the fish host. Analysis of the E. ictaluri Fur protein shows that it lacks the N-terminal region found in the majority of pathogen-encoded Fur proteins. However, it is fully functional in regulated genes encoding iron uptake proteins. E. ictaluri grown under iron-limited conditions upregulates an outer membrane protein (HemR) that shows heme-hemoglobin transport activity and is tightly regulated by Fur. In vivo studies showed that an E. ictaluri Δfur mutant is attenuated and immune protective in zebrafish (Danio rerio) and catfish (Ictalurus punctatus), triggering systemic immunity. We conclude that an E. ictaluri Δfur mutant could be an effective component of an immersion-oral vaccine for the catfish industry.
机译:细菌病原体在感染过程中从宿主吸收铁的能力是其在宿主中繁殖所必需的。但是,宿主高亲和力的铁结合蛋白会限制体液和组织中的游离铁水平。为了克服感染期间铁的这种不足,细菌病原体已经开发出铁吸收系统,该系统在缺铁的情况下会被上调,通常由铁吸收调节剂(Fur)蛋白质严格控制。尚不知道爱德华氏菌的铁吸收系统,它是channel鱼(Ictalurus punctatus)的寄主限制性病原体,也是该鱼在水产养殖中的主要病原体。在这里,我们描述了E. ictaluri Fur蛋白,Fur控制的铁吸收机制以及Fur基因缺失对鱼类宿主毒力和免疫原性的影响。 E. ictaluri Fur蛋白的分析表明,它缺乏大多数病原体编码的Fur蛋白中发现的N端区域。但是,它在编码铁摄取蛋白的调节基因中具有完全的功能。在铁受限的条件下生长的E. ictaluri上调外膜蛋白(HemR),该蛋白显示出血红素-血红蛋白的转运活性,并受到Fur的严格调控。体内研究表明,在斑马鱼(Danio rerio)和cat鱼(Ictalurus punctatus)中,E。ictaluriΔfur突变体减毒并具有免疫保护作用,从而触发了全身免疫。我们得出的结论是,E。ictaluriΔfur突变体可能是industry鱼工业浸入口疫苗的有效成分。

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