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Ingestion of bacteria overproducing DnaK attenuates Vibrio infection of Artemia franciscana larvae

机译:摄入过量产生DnaK的细菌减弱了卤虫(artemia franciscana)幼虫的弧菌感染

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摘要

Feeding of bacterially encapsulated heat shock proteins (Hsps) to invertebrates is a novel way to limit Vibrio infection. As an example, ingestion of Escherichia coli overproducing prokaryotic Hsps significantly improves survival of gnotobiotically cultured Artemia larvae upon challenge with pathogenic Vibrio campbellii. The relationship between Hsp accumulation and enhanced resistance to infection may involve DnaK, the prokaryotic equivalent to Hsp70, a major molecular chaperone in eukaryotic cells. In support of this proposal, heat-stressed bacterial strains LVS 2 (Bacillus sp.), LVS 3 (Aeromonas hydrophila), LVS 8 (Vibrio sp.), GR 8 (Cytophaga sp.), and GR 10 (Roseobacter sp.) were shown in this work to be more effective than nonheated bacteria in protecting gnotobiotic Artemia larvae against V. campbellii challenge. Immunoprobing of Western blots and quantification by enzyme-linked immunosorbent assay revealed that the amount of DnaK in bacteria and their ability to enhance larval resistance to infection by V. campbellii are correlated. Although the function of DnaK is uncertain, it may improve tolerance to V. campbellii via immune stimulation, a possibility of significance from a fundamental perspective and also because it could be applied in aquaculture, a major method of food production.
机译:将细菌封装的热激蛋白(Hsps)喂给无脊椎动物是限制弧菌感染的一种新方法。举例来说,摄入致病性过高的原核Hsps大肠杆菌可显着提高致病性坎贝尔弧菌攻击后经致病菌培养的卤虫幼虫的存活率。 Hsp积累与增强的抗感染性之间的关系可能涉及DnaK,DnaK是与Hsp70(真核细胞中的主要分子伴侣)等效的原核生物。为了支持该提议,使用了热应激细菌菌株LVS 2(芽孢杆菌),LVS 3(嗜水气单胞菌),LVS 8(弧菌),GR 8(食藻属)和GR 10(玫瑰杆菌)。在这项工作中显示,在保护gnotobiotic卤虫幼虫免受坎贝氏弧菌攻击方面,比未加热的细菌更有效。免疫印迹的免疫印迹和酶联免疫吸附测定的定量分析表明,细菌中DnaK的量与它们增强对坎伯弧菌感染的幼虫抗性的能力有关。尽管DnaK的功能尚不确定,但它可能通过免疫刺激提高对坎氏弧菌的耐受性,这从根本上讲具有重要意义,并且因为它可用于水产养殖(一种主要的食品生产方法)。

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