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Characterization of the Siderophore of Francisella tularensis and Role of fslA in Siderophore Production

机译:图拉弗朗西斯菌的铁载体的表征和fslA在铁载体生产中的作用

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摘要

We determined that LVS and Schu S4 strains of the human pathogen Francisella tularensis express a siderophore when grown under iron-limiting conditions. We purified this siderophore by conventional column chromatography and high-pressure liquid chromatography and used mass spectrometric analysis to demonstrate that it is structurally similar to the polycarboxylate siderophore rhizoferrin. The siderophore promoted the growth of LVS and Schu S4 strains in iron-limiting media. We identified a potential siderophore biosynthetic gene cluster encoded by fslABCD in the F. tularensis genome. The first gene in the cluster, fslA, encodes a member of the superfamily of nonribosomal peptide synthetase-independent siderophore synthetases (NIS synthetases) characterized by the aerobactin synthetases IucA and IucC. We determined that fslA is transcribed as part of an operon with downstream gene fslB and that the expression of the locus is induced by iron starvation. A targeted in-frame nonpolar deletion of fslA in LVS resulted in the loss of siderophore expression and in a reduced ability of F. tularensis to grow under conditions of iron limitation. Siderophore activity and the ability to grow under iron limitation could be regained by introducing the fslA+ gene on a complementing plasmid. Our results suggest that the fslA-dependent siderophore is important for survival of F. tularensis in an iron-deficient environment.
机译:我们确定了人类病原体弗朗西斯拉图利斯的LVS和Schu S4菌株在限铁条件下生长时表达铁载体。我们通过常规柱色谱法和高压液相色谱法纯化了该铁载体,并使用质谱分析法证明了其结构与聚羧酸盐铁载体根铁蛋白相似。铁载体促进了LVS和Schu S4菌株在铁限制培养基中的生长。我们鉴定了潜在的铁载体生物合成基因簇,由fslABCD编码在图拉菌中。簇中的第一个基因fslA编码非核糖体肽合成酶非依赖性铁载体合成酶(NIS合成)的超家族成员,其特征是航空细菌素合成酶IucA和IucC。我们确定fslA作为下游基因fslB的操纵子的一部分被转录,并且该基因座的表达是由铁饥饿引起的。 LVS中fslA的有针对性的框内非极性缺失导致铁载体表达的丧失,并降低了铁限制条件下土拉弗朗西斯(F. tularensis)的生长能力。通过在互补质粒上导入fslA + 基因,可以恢复铁载体的活性和铁限制下的生长能力。我们的结果表明,fslA依赖的铁载体对于铁缺乏环境中的图莱劳斯藻的存活很重要。

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