首页> 美国卫生研究院文献>Journal of Bacteriology >The ssbL Gene Harbored by the ColV Plasmid of an Escherichia coli Neonatal Meningitis Strain Is an Auxiliary Virulence Factor Boosting the Production of Siderophores through the Shikimate Pathway
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The ssbL Gene Harbored by the ColV Plasmid of an Escherichia coli Neonatal Meningitis Strain Is an Auxiliary Virulence Factor Boosting the Production of Siderophores through the Shikimate Pathway

机译:大肠杆菌新生儿脑膜炎毒株的ColV质粒所携带的ssbL基因是辅助毒力因子可通过Shikimate途径促进铁载体的产生

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摘要

The ability to capture iron is a challenge for most bacteria. The neonatal meningitis Escherichia coli strain S88 possesses several iron uptake systems, notably including siderophores. Transcriptional analysis of the ColV plasmid pS88 has shown strong induction of a previously undescribed gene with low identity to three E. coli chromosomal genes encoding phospho-2-dehydro-3-deoxyheptonate aldolases involved in aromatic amino acid and catecholate/phenolate siderophore biosynthesis through the shikimate pathway. Here, we investigated the role of this gene, ssbLp (ssbL carried on the plasmid), in siderophore biosynthesis and, consequently, in S88 virulence. We constructed an S88 mutant designated S88 ΔssbLp, which exhibited reduced growth under low-iron conditions compared to the wild-type strain. Liquid chromatography-mass spectroscopy analysis of culture supernatants showed that the mutant secreted significantly smaller amounts of enterobactin, salmochelin SX, and yersiniabactin than the wild-type strain. The mutant was also less virulent in a neonatal rat sepsis model, with significantly lower bacteremia and mortality. Supplementation with chorismate, the final product of the shikimate pathway, restored the wild-type phenotype in vitro. In a collection of human extraintestinal E. coli isolates, we found that ssbL was present only in strains harboring the iro locus, encoding salmochelins, and was located either on the chromosome or on plasmids. Acquisition of the iro locus has been accompanied by acquisition of the auxiliary gene ssbL, which boosts the metabolic pathway essential for catecholate/phenolate siderophore biosynthesis and could represent potential therapeutic targets.
机译:捕获铁的能力是大多数细菌的挑战。新生儿脑膜炎大肠杆菌菌株S88具有几种铁吸收系统,特别是铁载体。对ColV质粒pS88的转录分析表明,与3种大肠杆菌染色体基因(具有芳香族氨基酸和儿茶酚/酚盐铁载体生物合成相关的磷酸2-脱氢3-脱氧庚酸醛缩酶编码的3个大肠杆菌染色体基因)具有很强的同源性。 iki草通路。在这里,我们研究了该基因ssbLp(质粒上携带的ssbL)在铁载体生物合成中以及因此在S88毒力中的作用。我们构建了一个名为S88ΔssbLp的S88突变体,与野生型菌株相比,该突变体在低铁条件下的生长减少。培养物上清液的液相色谱-质谱分析表明,该突变体与野生型菌株相比,分泌的肠杆菌素,沙门氏菌素SX和耶尔西菌素的量明显减少。该突变体在新生鼠脓毒症模型中的毒性也较低,具有明显更低的菌血症和死亡率。补充the草酸酯是,草酸酯途径的最终产物,可在体外恢复野生型表型。在人类肠外大肠杆菌分离物的集合中,我们发现ssbL仅存在于带有iro基因座,编码salmochelins的菌株中,并且位于染色体或质粒上。 iro基因位点的获得伴随着辅助基因ssbL的获得,它增强了儿茶酚/酚盐铁载体生物合成所必需的代谢途径,并可能代表潜在的治疗靶点。

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