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首页> 外文期刊>Molecular Microbiology >Manifestation of the Kanagawa phenomenon, the virulence-associated phenotype, of Vibrio parahaemolyticus depends on a particular single base change in the promoter of the thermostable direct haemolysin gene.
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Manifestation of the Kanagawa phenomenon, the virulence-associated phenotype, of Vibrio parahaemolyticus depends on a particular single base change in the promoter of the thermostable direct haemolysin gene.

机译:副溶血性弧菌神奈川现象(与毒力有关的表型)的表现取决于热稳定直接溶血素基因启动子中的特定单碱基变化。

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Thermostable direct haemolysin of Vibrio parahaemolyticus has been shown to be a major virulence factor. The Kanagawa phenomenon (KP), haemolysis induced by this haemolysin on a special blood agar medium, is strongly associated with clinical strains. We have been studying the expressions of various tdh genes encoding this haemolysin to elucidate the significance of the tdh genes possessed by KP-negative strains isolated from patients. We examined the importance of the promoter sequence variation for expression level of the tdh gene in this study. Only the tdh2 gene, one of the two tdh genes (tdh1 and tdh2) present in a KP-positive strain, was previously shown to be responsible for the haemolytic activity of the KP-positive strain. The tdh1- and tdh2-lacZ fusions were used to determine and analyse the promoter sequence by primer extension and site-directed mutagenesis methods. Two bases (positions -24 and -34) within the determined tdh2 promoter sequence were shown to be mostly responsible for the difference in the promoter strength between the tdh2 and tdh1 genes both in Escherichia coli and in V. parahaemolyticus backgrounds. Representative tdh promoters of KP-negative strains are close to the tdh2 promoter; they differ at position -34 but have the same base at position -24 as the tdh2 promoter. We demonstrated that base substitution of the tdh promoters of KP-negative strains only at position -34 is sufficient to increase the expression of these genes to the KP-positive level. Therefore, the tdh genes of KP-negative strains are considered to be potentially important because they can generate a KP-positive subclone by a point mutation in their promoters.
机译:副溶血性弧菌的热稳定直接溶血素已被证明是主要的毒力因子。神奈川现象(KP)是由这种溶血素在特殊的血液琼脂培养基上引起的溶血作用,与临床菌株密切相关。我们已经研究了编码该溶血素的各种tdh基因的表达,以阐明分离自患者的KP阴性菌株所拥有的tdh基因的重要性。在这项研究中,我们研究了启动子序列变异对于tdh基因表达水平的重要性。以前仅显示了存在于KP阳性菌株中的两个tdh基因(tdh1和tdh2)之一的tdh2基因负责KP阳性菌株的溶血活性。使用tdh1-和tdh2-lacZ融合体通过引物延伸和定点诱变方法确定和分析启动子序列。已显示,在确定的tdh2启动子序列中的两个碱基(第-24和-34位)是造成大肠杆菌和副溶血弧菌背景下tdh2和tdh1基因启动子强度差异的主要原因。 KP阴性菌株的代表性tdh启动子接近tdh2启动子;它们在-34位不同,但在-24位具有与tdh2启动子相同的碱基。我们证明了仅在位置-34处KP阴性菌株的tdh启动子的碱基取代足以将这些基因的表达增加到KP阳性水平。因此,KP阴性菌株的tdh基因被认为具有潜在的重要意义,因为它们可以通过启动子中的点突变产生KP阳性亚克隆。

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