Ecker D J, Matzanke B F, Raymond K N
J Bacteriol. 1986 Aug;167(2):666-73. doi: 10.1128/jb.167.2.666-673.1986.
The specificity of the outer membrane protein receptor for ferric enterobactin transport in Escherichia coli and the mechanism of enterobactin-mediated transport of ferric ions across the outer membrane have been studied. Transport kinetic and inhibition studies with ferric enterobactin and synthetic structural analogs have mapped the parts of the molecule important for receptor binding. The ferric complex of the synthetic structural analog of enterobactin, 1,3,5-N,N',N''-tris-(2,3-dihydroxybenzoyl)triaminomethylbenzene (MECAM), was transported with the same maximum velocity as was ferric enterobactin. A double-label transport assay with [59Fe, 3H]MECAM showed that the ligand and the metal are transported across the outer membrane at an identical rate. Under the growth conditions used, large fractions of the transported complexes were available for exchange across the outer membrane when a large excess of extracellular complex was added to the cell suspension; at least 60% of the internalized [59Fe]enterobactin exchanged with extracellular [55Fe]enterobactin. Internalized [59Fe, 3H]MECAM was released from the cell as the intact complex when either unlabeled Fe-MECAM or Fe-enterobactin was added extracellularly. The results suggest a mechanism of active transport of unmodified coordination complex across the outer membrane with possible accumulation in the periplasm.
对大肠杆菌中肠杆菌素铁转运外膜蛋白受体的特异性以及肠杆菌素介导的铁离子跨外膜转运机制进行了研究。使用肠杆菌素铁和合成结构类似物进行的转运动力学和抑制研究已确定了分子中对受体结合重要的部分。肠杆菌素合成结构类似物1,3,5-N,N',N''-三(2,3-二羟基苯甲酰基)三氨基甲基苯(MECAM)的铁配合物以与肠杆菌素铁相同的最大速度进行转运。用[59Fe, 3H]MECAM进行的双标记转运试验表明,配体和金属以相同的速率跨外膜转运。在所使用的生长条件下,当向细胞悬液中加入大量过量的细胞外配合物时,大部分转运的配合物可用于跨外膜交换;至少60%内化的[59Fe]肠杆菌素与细胞外[55Fe]肠杆菌素发生交换。当细胞外加入未标记的铁-MECAM或铁-肠杆菌素时,内化的[59Fe, 3H]MECAM作为完整的配合物从细胞中释放出来。结果表明,未修饰的配位配合物跨外膜进行主动转运的机制,可能在周质中积累。