Greenwald Jason, Nader Mirella, Celia Hervé, Gruffaz Christelle, Geoffroy Valérie, Meyer Jean-Marie, Schalk Isabelle J, Pattus Franc
Laboratoire de Biologie Structurale des Membranes, UMR7175, Ecole Supérieure de Biotechnologie de Strasbourg, Bd Sébastien Brant, BP10413, 67412 Illkirch, France.
Mol Microbiol. 2009 Jun;72(5):1246-59. doi: 10.1111/j.1365-2958.2009.06721.x.
The first step in the specific uptake of iron via siderophores in Gram-negative bacteria is the recognition and binding of a ferric siderophore by its cognate receptor. We investigated the molecular basis of this event through structural and biochemical approaches. FpvA, the pyoverdine-Fe transporter from Pseudomonas aeruginosa ATCC 15692 (PAO1 strain), is able to transport ferric-pyoverdines originating from other species, whereas most fluorescent pseudomonads are only able to use the one they produce among the more than 100 known different pyoverdines. We solved the structure of FpvA bound to non-cognate pyoverdines of high- or low-affinity and found a close correlation between receptor-ligand structure and the measured affinities. The structure of the first amino acid residues of the pyoverdine chain distinguished the high- and low-affinity binders while the C-terminal portion of the pyoverdines, often cyclic, does not appear to contribute extensively to the interaction between the siderophore and its transporter. The specificity of the ferric-pyoverdine binding site of FpvA is conferred by the structural elements common to all ferric-pyoverdines, i.e. the chromophore, iron, and its chelating groups.
革兰氏阴性菌通过铁载体特异性摄取铁的第一步是其同源受体识别并结合三价铁载体。我们通过结构和生化方法研究了这一过程的分子基础。来自铜绿假单胞菌ATCC 15692(PAO1菌株)的绿脓菌素 - 铁转运蛋白FpvA能够转运源自其他物种的三价铁绿脓菌素,而大多数荧光假单胞菌仅能利用它们所产生的100多种已知不同绿脓菌素中的一种。我们解析了与高亲和力或低亲和力非同源绿脓菌素结合的FpvA的结构,并发现受体 - 配体结构与测得的亲和力之间存在密切关联。绿脓菌素链第一个氨基酸残基的结构区分了高亲和力和低亲和力结合物,而绿脓菌素的C末端部分(通常是环状的)似乎对铁载体与其转运蛋白之间的相互作用贡献不大。FpvA的三价铁绿脓菌素结合位点的特异性由所有三价铁绿脓菌素共有的结构元件赋予,即发色团、铁及其螯合基团。