Newton S M, Allen J S, Cao Z, Qi Z, Jiang X, Sprencel C, Igo J D, Foster S B, Payne M A, Klebba P E
Department of Chemistry and Biochemistry, University of Oklahoma, Norman, OK 73019, USA.
Proc Natl Acad Sci U S A. 1997 Apr 29;94(9):4560-5. doi: 10.1073/pnas.94.9.4560.
Siderophores and colicins enter bacterial cells through TonB-dependent outer membrane proteins. Using site-directed substitution mutagenesis, we studied ligand recognition by a prototypic Escherichia coli siderophore receptor, FepA, that binds the iron chelate ferric enterobactin and colicins B and D. These genetic experiments identified a common binding site for two of the three ligands, containing multiple positive charges, within cell surface residues of FepA. Elimination of single residues in this region did not impair the adsorption or transport of ferric enterobactin, but double mutagenesis in the charge cluster identified amino acids (Arg-286 and Arg-316) that participate in siderophore binding and function in FepA-mediated killing by colicins B and D. Ferric enterobactin binding, furthermore, prevented covalent modification of FepA within this domain by either a fluorescent probe or an arginine-specific reagent, corroborating the involvement of this site in ligand recognition. These results identify, for the first time, residues in a TonB-dependent outer membrane protein that participate in ligand binding. They also explain the competition between ferric enterobactin and the colicins on the bacterial cell surface: all three ligands interact with the same arginine residues within FepA during their penetration through the outer membrane.
铁载体和大肠杆菌素通过依赖TonB的外膜蛋白进入细菌细胞。我们利用定点置换诱变技术,研究了原型大肠杆菌铁载体受体FepA的配体识别情况,该受体可结合铁螯合物肠杆菌素以及大肠杆菌素B和D。这些遗传学实验在FepA的细胞表面残基中确定了三种配体中两种配体的一个共同结合位点,该位点含有多个正电荷。消除该区域中的单个残基不会损害肠杆菌素铁的吸附或转运,但在电荷簇中进行双诱变确定了参与铁载体结合的氨基酸(精氨酸-286和精氨酸-316),它们在大肠杆菌素B和D介导的FepA杀伤作用中发挥作用。此外,肠杆菌素铁的结合可防止该结构域内的FepA被荧光探针或精氨酸特异性试剂进行共价修饰,这证实了该位点参与配体识别。这些结果首次确定了依赖TonB的外膜蛋白中参与配体结合的残基。它们还解释了肠杆菌素铁与大肠杆菌素在细菌细胞表面的竞争:所有三种配体在穿过外膜时都与FepA内相同的精氨酸残基相互作用。