UMR 7242 Biotechnologie et Signalisation Cellulaire, Université de Strasbourg-CNRS, Irebs-ESBS, Boulevard Sébastien Brant, 67412 Illkirch, France.
J Am Chem Soc. 2011 Oct 19;133(41):16503-9. doi: 10.1021/ja205504z. Epub 2011 Sep 23.
Pyochelin (Pch) and enantiopyochelin (EPch) are enantiomeric siderophores, with three chiral centers, produced under iron limitation conditions by Pseudomonas aeruginosa and Pseudomonas fluorescens , respectively. After iron chelation in the extracellular medium, Pch-Fe and EPch-Fe are recognized and transported by their specific outer-membrane transporters: FptA in P. aeruginosa and FetA in P. fluorescens . Structural analysis of FetA-EPch-Fe and FptA-Pch-Fe, combined with mutagenesis and docking studies revealed the structural basis of the stereospecific recognition of these enantiomers by their respective transporters. Whereas FetA and FptA have a low sequence identity but high structural homology, the Pch and EPch binding pockets do not share any structural homology, but display similar physicochemical properties. The stereospecific recognition of both enantiomers by their corresponding transporters is imposed by the configuration of the siderophore's C4'' and C2'' chiral centers. This recognition involves specific hydrogen bonds between the Arg91 guanidinium group and EPch-Fe for FetA and between the Leu117-Leu116 main chain and Pch-Fe for FptA. FetA and FptA are the first membrane receptors to be structurally described with opposite binding enantioselectivities for their ligands, giving insights into the structural basis of their enantiospecificity.
吡咯并并咯啉(Pch)和对映吡咯并咯啉(EPch)是两种对映体的铁载体,分别由铜绿假单胞菌和荧光假单胞菌在铁限制条件下产生,各具有三个手性中心。在细胞外介质中螯合铁后,Pch-Fe 和 EPch-Fe 被其特定的外膜转运蛋白识别和转运:铜绿假单胞菌中的 FptA 和荧光假单胞菌中的 FetA。对 FetA-EPch-Fe 和 FptA-Pch-Fe 的结构分析,结合突变和对接研究,揭示了这些对映异构体被其各自转运蛋白立体特异性识别的结构基础。尽管 FetA 和 FptA 具有低序列同一性但具有高度结构同源性,但 Pch 和 EPch 的结合口袋没有任何结构同源性,但显示出相似的物理化学性质。其相应转运蛋白对两种对映体的立体特异性识别是由铁载体的 C4''和 C2''手性中心的构型决定的。这种识别涉及 FetA 中 Arg91 胍基与 EPch-Fe 之间的特定氢键,以及 FptA 中 Leu117-Leu116 主链与 Pch-Fe 之间的特定氢键。FetA 和 FptA 是第一个被结构描述的膜受体,其配体具有相反的结合对映选择性,为它们的对映选择性提供了结构基础。