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首页> 外文期刊>Infection and immunity >The toxR Gene of Vibrio(Listonella) anguillarum Controls Expression of the Major Outer Membrane Proteins but Not Virulence in a Natural Host Model
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The toxR Gene of Vibrio(Listonella) anguillarum Controls Expression of the Major Outer Membrane Proteins but Not Virulence in a Natural Host Model

机译:鳗弧菌的toxR基因控制自然宿主模型中主要外膜蛋白的表达但不控制毒力

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To examine the hypothesis that the ancestral role of thetoxR gene in the family Vibrionaceae is control of the expression of outer membrane protein (OMP)-encoding genes for adaptation to environmental change, we investigated the role of thetoxR gene in Vibrio anguillarum, an important fish pathogen. The toxR gene of V. angullarum (Va-toxR) was cloned from strain PT-87050 isolated from diseased ayu (Plecoglossus altivelis), and the sequence was analyzed. The toxR sequence was 63 to 51% identical to those reported for other species of the familyVibrionaceae. Distribution of the Va-toxR gene sequence in V. anguillarum strains of various serotypes was confirmed by using DNA probe and PCR methods. An isogenictoxR mutant of V. anguillarum PT-24, isolated from diseased ayu, was constructed by using an allelic exchange method. The wild-type strain and the toxR mutant did not differ in the ability to produce a protease(s) and a hemolysin(s) or in pathogenicity for ayu when examined by the intramuscular injection and immersion methods. A 35-kDa major OMP was not produced by the toxR mutant. However, a 46-kDa OMP was hardly detected in the wild-type strain but was produced as the major OMP by the toxR mutant. For the toxR mutant, the MICs of two β-lactam antibiotics were higher and the minimum bactericidal concentration of sodium dodecyl sulfate was lower than for the wild-type strain. Analysis of the N-terminal amino acid sequences of the 35- and 46-kDa OMPs indicated that these proteins are the porin-like OMPs and are related to the toxR-regulated major OMPs of the family Vibrionaceae. The results indicate that the toxR gene is not involved in virulence expression inV. anguillarum PT-24 and that toxRregulation of major OMPs is universal in the familyVibrionaceae. These results support the hypothesis that the ancestral role of the toxR gene is regulation of OMP gene expression and that only in some Vibrio species has ToxR been appropriated for the regulation of a virulence gene(s).
机译:要检查假说, toxR 基因在弧菌科中的祖先作用是控制外膜蛋白(OMP)编码基因的表达,以适应环境变化,我们调查了 toxR 基因在重要鱼类病原体鳗弧菌中的作用。 V的 toxR 基因。从患病a鱼(Plecoglossus altivelis )分离的PT-87050菌株中克隆了Angullarum (Va- toxR ),并对其序列进行了分析。 toxR 序列与弧菌科其他物种报道的序列具有63%到51%的同源性。 Va- toxR 基因序列在 V中的分布。通过DNA探针和PCR方法确定了不同血清型的安圭拉菌。一个 V的同基因 toxR 突变体。通过等位基因交换法构建了从患病的大鱼中分离的鳗guPT-24。当通过肌内注射和浸没方法检查时,野生型菌株和 toxR 突变体在产生蛋白酶和溶血素的能力或对阿育草的致病性方面没有差异。 toxR 突变体未产生35kDa的主要OMP。然而,在野生型菌株中几乎未检测到46kDa的OMP,但由 toxR 突变体作为主要OMP产生。对于 toxR 突变体,两种β-内酰胺类抗生素的MIC均高于野生型菌株,而十二烷基硫酸钠的最低杀菌浓度却较低。对35 kDa和46 kDa OMPs N末端氨基酸序列的分析表明,这些蛋白是孔蛋白样OMP,并且与 toxR 调控的家族主要OMP相关。 >弧菌科。结果表明 toxR 基因与 V中的毒力表达无关。安圭拉菌 PT-24和 toxR 对主要OMP的调控在弧菌科中普遍存在。这些结果支持以下假设: toxR 基因的祖先作用是调节OMP基因的表达,并且只有在某些 Vibrio 物种中,ToxR才适用于毒力的调节。基因。

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