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首页> 外文期刊>Aquaculture >Regulation system of serine protease production in Vibrio vulnificus strain NCIMB 2137, a metalloprotease-gene negative strain isolated from a diseased eel
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Regulation system of serine protease production in Vibrio vulnificus strain NCIMB 2137, a metalloprotease-gene negative strain isolated from a diseased eel

机译:NCIMB 2137弧菌弧菌菌株中丝氨酸蛋白酶产生的调控系统,该菌株是从患病鳗鱼中分离出的一种金属蛋白酶基因阴性菌株

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Vibrio vulnificus is a ubiquitous estuarine microorganism but causes fatal systemic infections in cultured eels or shrimps, as well as in immunocompromised humans. An extracellular metalloprotease has been reported to be a potential virulence factor of the bacterium; however, a few strains isolated from a diseased eel or shrimp were recently found to produce a serine protease termed VvsA. In the present study, we first clarified the regulatory characteristics of the VvsA production in V. vulnificus strain NCIMB 2137, a metalloprotease-gene negative strain isolated from a diseased eel. V. vulnificus coordinates expression of virulence genes in response to the bacterial cell density, which is termed quorum sensing (QS) and is mediated by the small diffusible molecule called autoinducer 2 (AI-2). When cultivated at 26 degrees C, the vvsA expression was closely related with expression of the luxS gene encoding the synthase of the AI-2 precursor LuxS. Both VvsA and AI-2 were sufficiently secreted at early stationary phase of the bacterial growth. In contrast, when cultivated at 37 degrees C, far less amounts of the AI-2 and VvsA were produced even at the stationary phase. Disruption of the luxS gene was found to decrease significantly the vvsA expression and VvsA production. Disruption of luxO encoding the central response regulator of the QS circuit caused an increase in the vvsA expression and VvsA production at the logarithmic growth phase. These findings indicate that VvsA production is positively regulated by the V. vulnificus LuxS-dependent QS system, which operated more effectively at 26 degrees C than at 37 degrees C
机译:创伤弧菌是一种普遍存在的河口微生物,但会在养殖鳗鱼或虾以及免疫功能低下的人类中引起致命的全身感染。据报道细胞外金属蛋白酶是细菌的潜在毒力因子。然而,最近发现从患病的鳗鱼或虾中分离出的一些菌株可产生称为VvsA的丝氨酸蛋白酶。在本研究中,我们首先阐明了创伤弧菌NCIMB 2137(一种从患病鳗鱼中分离出的金属蛋白酶基因阴性菌株)中VvsA产生的调控特征。 V. vulnificus响应细菌细胞密度来协调毒力基因的表达,这被称为群体感应(QS),并由称为自动诱导物2(AI-2)的可扩散小分子介导。当在26摄氏度下培养时,vvsA的表达与编码AI-2前体LuxS的合酶的luxS基因的表达密切相关。在细菌生长的早期静止期,VvsA和AI-2都被充分分泌。相反,当在37摄氏度下培养时,即使在固定相下也产生的AI-2和VvsA的量要少得多。发现luxS基因的破坏显着降低了vvsA表达和VvsA产生。编码QS电路的中央响应调节器的luxO的破坏导致对数生长期的vvsA表达和VvsA产量增加。这些发现表明,VvsA的生产受到了创伤弧菌依赖于LuxS的QS系统的正向调节,该系统在26摄氏度下比在37摄氏度下更有效地运行

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