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fslE Is Necessary for Siderophore-Mediated Iron Acquisition in Francisella tularensis Schu S4▿

机译:fslE是土拉弗朗西斯菌Schu S4中铁载体介导的铁捕获所必需的

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摘要

Strains of Francisella tularensis secrete a siderophore in response to iron limitation. Siderophore production is dependent on fslA, the first gene in an operon that appears to encode biosynthetic and export functions for the siderophore. Transcription of the operon is induced under conditions of iron limitation. The fsl genes lie adjacent to the fur homolog on the chromosome, and there is a canonical Fur box sequence in the promoter region of fslA. We generated a Δfur mutant of the Schu S4 strain of F. tularensis tularensis and determined that siderophore production was now constitutive and no longer regulated by iron levels. Quantitative reverse transcriptase PCR analysis with RNA from Schu S4 and the mutant strain showed that Fur represses transcription of fslA under iron-replete conditions. We determined that fslE (locus FTT0025 in the Schu S4 genome), located downstream of the siderophore biosynthetic genes, is also under Fur regulation and is transcribed as part of the fslABCDEF operon. We generated a defined in-frame deletion of fslE and found that the mutant was defective for growth under iron limitation. Using a plate-based growth assay, we found that the mutant was able to secrete a siderophore but was defective in utilization of the siderophore. FslE belongs to a family of proteins that has no known homologs outside of the Francisella species, and the fslE gene product has been previously localized to the outer membrane of F. tularensis strains. Our data suggest that FslE may function as the siderophore receptor in F. tularensis.
机译:图拉弗朗西斯菌菌株响应铁的限制分泌铁载体。铁载体的产生取决于fslA,操纵子中的第一个基因似乎编码铁载体的生物合成和输出功能。在铁限制条件下诱导操纵子的转录。 fsl基因与染色体上的Fur同源物相邻,并且在fslA的启动子区域有一个标准的Fur box序列。我们生成了Tularensis tularensis的Schu S4菌株的Δfur突变体,并确定铁载体的生产现在是组成性的,不再受铁水平的调节。用Schu S4和突变株的RNA进行的定量逆转录酶PCR分析表明,在铁充足的条件下,Fur抑制fslA的转录。我们确定位于铁载体生物合成基因下游的fslE(Schu S4基因组中的基因座FTT0025)也处于Fur调节之下,并作为fslABCDEF操纵子的一部分转录。我们产生了一个确定的fslE框内缺失,发现该突变体在铁限制下不能生长。使用基于板的生长测定法,我们发现该突变体能够分泌铁载体,但是在利用铁载体方面存在缺陷。 FslE属于弗朗西斯菌属物种之外没有已知同源物的蛋白质家族,并且fslE基因产物先前已定位于土拉弗朗西斯菌菌株的外膜。我们的数据表明,FslE可能充当图拉菌中的铁载体受体。

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