Département de Microbiologie Fondamentale, Université de Lausanne, CH-1015 Lausanne, Switzerland.
Microbiology (Reading). 2012 May;158(Pt 5):1317-1324. doi: 10.1099/mic.0.057430-0. Epub 2012 Feb 16.
Iron uptake and transcriptional regulation by the enantiomeric siderophores pyochelin (Pch) and enantio-pyochelin (EPch) of Pseudomonas aeruginosa and Pseudomonas fluorescens, respectively, are stereospecific processes. The iron-loaded forms of Pch (ferriPch) and of EPch (ferriEPch) are recognized stereospecifically (i) at the outer membrane by the siderophore receptors FptA in P. aeruginosa and FetA in P. fluorescens and (ii) in the cytoplasm by the two AraC-type regulators PchR, which are activated by their cognate siderophore. Here, stereospecific siderophore recognition is shown to occur at the inner membrane also. In P. aeruginosa, translocation of ferriPch across the inner membrane is carried out by the single-subunit siderophore transporter FptX. In contrast, the uptake of ferriEPch into the cytoplasm of P. fluorescens was found to involve a classical periplasmic binding protein-dependent ABC transporter (FetCDE), which is encoded by the fetABCDEF operon. Expression of a translational fetA-gfp fusion was repressed by ferric ions, and activated by the cognate siderophore bound to PchR, thus resembling the analogous regulation of the P. aeruginosa ferriPch transport operon fptABCX. The inner-membrane transporters FetCDE and FptX were expressed in combination with either of the two siderophore receptors FetA and FptA in a siderophore-negative P. aeruginosa mutant deleted for the fptABCX operon. Growth tests conducted under iron limitation with ferriPch or ferriEPch as the iron source revealed that FptX was able to transport ferriPch as well as ferriEPch, whereas FetCDE specifically transported ferriEPch. Thus, stereospecific siderophore recognition occurs at the inner membrane by the FetCDE transporter.
铜绿假单胞菌和荧光假单胞菌分别通过对映体螯合剂吡咯并[2,1-f][1,10] phenanthroline(Pch)和对映体吡咯并[2,1-f][1,10] phenanthroline(EPch)摄取铁并进行转录调控,这是立体特异性过程。Pch(ferriPch)和 EPch(ferriEPch)的铁负载形式(i)通过铜绿假单胞菌的外膜上的 siderophore 受体 FptA 和荧光假单胞菌的 FetA 特异性识别,(ii)在细胞质中由两个 AraC 型调节剂 PchR 识别,这两个调节剂被其同源的 siderophore 激活。这里,也显示了立体特异性 siderophore 识别发生在内膜上。在铜绿假单胞菌中,ferriPch 穿过内膜的转运由单个亚基 siderophore 转运蛋白 FptX 完成。相比之下,发现荧光假单胞菌细胞质中 ferriEPch 的摄取涉及到一个经典的周质结合蛋白依赖的 ABC 转运体(FetCDE),该转运体由 fetABCDEF 操纵子编码。翻译 fetA-gfp 融合的表达受铁离子抑制,并被与 PchR 结合的同源 siderophore 激活,因此类似于铜绿假单胞菌 ferriPch 转运操纵子 fptABCX 的类似调控。在 siderophore 阴性铜绿假单胞菌突变体中,表达内膜转运蛋白 FetCDE 和 FptX,该突变体缺失了 fptABCX 操纵子,与两个 siderophore 受体 FetA 和 FptA 中的任何一个组合。在铁限制条件下进行的生长试验表明,用 ferriPch 或 ferriEPch 作为铁源时,FptX 既能转运 ferriPch,也能转运 ferriEPch,而 FetCDE 则特异性地转运 ferriEPch。因此,立体特异性 siderophore 识别发生在 FetCDE 转运蛋白的内膜上。