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首页> 外文期刊>Infection and immunity >The fslE Homolog, FTL_0439 (fupA/B), Mediates Siderophore-Dependent Iron Uptake in Francisella tularensis LVS
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The fslE Homolog, FTL_0439 (fupA/B), Mediates Siderophore-Dependent Iron Uptake in Francisella tularensis LVS

机译:fslE同源物FTL_0439(fupA / B)介导了土拉弗朗西斯菌LVS中铁载体依赖铁的吸收

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The Gram-negative pathogen Francisella tularensis secretes a siderophore to obtain essential iron by a TonB-independent mechanism. The fslABCDE locus, encoding siderophore-related functions, is conserved among different Francisella strains. In the virulent strain Schu S4, fslE is essential for siderophore utilization and for growth under conditions of iron limitation. In contrast, we found that deletion of fslE did not affect siderophore utilization by the attenuated live vaccine strain (LVS). We found that one of the fslE paralogs encoded in the LVS genome, FTL_0439 (fupA/B), was able to partially complement a Schu S4 ΔfslE mutant for siderophore utilization. We generated a deletion of fupA/B in LVS and in the LVS ΔfslE background. The ΔfupA/B mutant showed reduced growth under conditions of iron limitation. It was able to secrete but was unable to utilize siderophore. Mutation of both fupA/B and fslE resulted in a growth defect of greater severity. The ΔfupA/B mutants showed a replication defect in J774.1A cells and decreased virulence following intraperitoneal infection in mice. Complementation of the ΔfupA/B mutation in cis restored the ability to utilize siderophore and concomitantly restored virulence. Our results indicate that fupA/B plays a significant role in the siderophore-mediated iron uptake mechanism of LVS whereas fslE appears to play a secondary role. Variation in iron acquisition mechanisms may contribute to virulence differences between the strains.
机译:革兰氏阴性病原菌 Francisella tularensis 通过不依赖TonB的机制分泌铁载体以获得必需的铁。编码铁载体相关功能的 fslABCDE 位点在不同的 Francisella 菌株中是保守的。在强毒菌株Schu S4中, fslE 对于铁载体的利用和铁限制条件下的生长至关重要。相反,我们发现删除 fslE 不会影响减毒活疫苗株(LVS)对铁载体的利用。我们发现LVS基因组中编码的 fslE 旁系同源物之一 FTL _ 0439 fupA / B )能够部分补充Schu S4Δ fslE 突变体,用于铁载体的利用。我们在LVS和LVSΔ fslE 背景中生成了 fupA / B 的删除。在铁限制条件下,Δ fupA / B 突变体显示出生长减少。它能够分泌,但不能利用铁载体。 fupA / B fslE 的突变都会导致严重程度更高的生长缺陷。 Δ fupA / B 突变体在小鼠的腹膜内感染后在J774.1A细胞中显示出复制缺陷,并降低了毒力。对 cis 中的Δ fupA / B 突变的补充恢复了利用铁载体的能力,并同时恢复了毒力。我们的结果表明, fupA / B 在铁载体介导的LVS铁吸收机制中起重要作用,而 fslE 似乎起次要作用。铁获取机制的变化可能导致菌株之间的毒力差异。

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