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首页> 外文期刊>Microbiology >Periplasmic proteins encoded by VCA0261–0260 and VC2216 genes together with copA and cueR products are required for copper tolerance but not for virulence in Vibrio cholerae
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Periplasmic proteins encoded by VCA0261–0260 and VC2216 genes together with copA and cueR products are required for copper tolerance but not for virulence in Vibrio cholerae

机译:VCA0261–0260和VC2216基因编码的周质蛋白以及copA和cueR产物是铜耐受性所必需的,而不是霍乱弧菌的毒性所必需的

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The bacterial pathogen Vibrio cholerae requires colonizination of the human small intestine to cause cholera. The anaerobic and slightly acidic conditions predominating there enhance toxicity of low copper concentrations and create a selective environment for bacteria with evolved detoxifying mechanisms. We reported previously that the VCA0260, VCA0261 and VC2216 gene products were synthesized only in V. cholerae grown in microaerobiosis or anaerobiosis. Here we show that ORFs VCA0261 and VCA0260 are actually combined into a single gene encoding a 18.7 kDa protein. Bioinformatic analyses linked this protein and the VC2216 gene product to copper tolerance. Following the approach of predict-mutate and test, we describe for the first time, to our knowledge, the copper tolerance systems operating in V. cholerae. Copper susceptibility analyses of mutants in VCA0261–0260, VC2216 or in the putative copper-tolerance-related VC2215 (copA ATPase) and VC0974 (cueR), under aerobic and anaerobic growth, revealed that CopA represents the main tolerance system under both conditions. The VC2216-encoded periplasmic protein contributes to resistance only under anaerobiosis in a CopA-functional background. The locus tag VCA0261–0260 encodes a copper-inducible, CueR-dependent, periplasmic protein, which mediates tolerance in aerobiosis, but under anaerobiosis its role is only evident in CopA knock-out mutants. None of the genes involved in copper homeostasis were required for V. cholerae virulence or colonization in the mouse model. We conclude that copper tolerance in V. cholerae, which lacks orthologues of the periplasmic copper tolerance proteins CueO, CusCFBA and CueP, involves CopA and CueR proteins along with the periplasmic Cot (VCA0261–0260) and CopG (VC2216) V. cholerae homologues.
机译:细菌病原性霍乱弧菌需要人类小肠的殖民化才能引起霍乱。在此占主导地位的厌氧和弱酸性条件增强了低浓度铜的毒性,并为具有进化的解毒机理的细菌创造了选择性环境。我们以前曾报道过,VCA0260,VCA0261和VC2216基因产物仅在微需氧或厌氧菌生长的霍乱弧菌中合成。在这里,我们显示ORF VCA0261和VCA0260实际上被组合成编码18.7 kDa蛋白的单个基因。生物信息学分析将该蛋白和VC2216基因产物与铜耐受性相关。遵循预测变异和测试的方法,据我们所知,我们首次描述了在霍乱弧菌中运行的铜耐性系统。在有氧和无氧生长下,VCA0261-0260,VC2216或推定的铜耐受性相关的VC2215(copA ATPase)和VC0974(cueR)中突变体的铜敏感性分析表明,CopA代表了两种条件下的主要耐受系统。 VC2216-编码的周质蛋白仅在CopA功能背景下的厌氧菌作用下才产生抗性。位点标签VCA0261-0260编码铜诱导的CueR依赖性周质蛋白,介导对好氧生物的耐受性,但在无氧生物中,其作用仅在CopA基因敲除突变体中明显。在小鼠模型中,霍乱弧菌的毒力或定植均不需要参与铜稳态的基因。我们得出的结论是,霍乱弧菌的铜耐受性缺乏周质铜耐受蛋白CueO,CusCFBA和CueP的直向同源物,涉及到CopA和CueR蛋白以及周质Cot(VCA0261-0260)和CopG(VC2216)霍乱弧菌同源物。

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