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An unusual crystal structure of ferric-enterobactin bound FepB suggests novel functions of FepB in microbial iron uptake

机译:铁-肠杆菌素结合的FepB的异常晶体结构表明FepB在微生物吸收铁中的新功能

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摘要

Iron acquisition by siderophores is critical for the survival of most bacteria. Enterobactin is a kind of catechol siderophore that exhibits the highest affinity to iron atoms secreted by E. coli and several other species of Enterobacteriaceae. The periplasmic binding protein (PBP) FepB can transport ferricenterobactin (Fe-Ent) from the outer membrane to the membrane-associated ATP-binding cassette transport system in E. coli. To elucidate this process, we solved the crystal structure of FepB in complex with Fe-Ent at a resolution of 1.8 angstrom. Consistent with previously reported NMR results, our crystal structure shows that, similar to the other type III PBPs, the FepB structure was folded with separated globular N-and C-termini linked by a long alpha-helix. Additionally, the structure showed that the Fe-Ent bound to the cleft between the N- and C-terminal domains. Exceptionally, FepB differs from the other known siderophore binding PBPs in that it forms a trimer by capturing four Fe-Ents that can each contribute to FepB trimerization. Dynamic light-scattering experiments are consistent with the structural observations and indicate that FepB forms a trimer in a Fe-Ent-dependent manner. (C) 2016 Elsevier Inc. All rights reserved.
机译:铁载体对铁的吸收对于大多数细菌的生存至关重要。肠杆菌素是一种邻苯二酚铁载体,对大肠杆菌和肠杆菌科的其他物种分泌的铁原子具有最高的亲和力。周质结合蛋白(PBP)FepB可以从外部膜向细胞内的膜相关的ATP结合盒转运系统转运亚铁中动蛋白(Fe-Ent)。为了阐明这一过程,我们以1.8埃的分辨率解决了FepEnt与Fe-Ent配合物的晶体结构。与先前报道的NMR结果一致,我们的晶体结构表明,与其他III型PBP相似,FepB结构折叠时,分离的球状N和C末端由长的α螺旋连接。另外,该结构表明Fe-Ent结合在N和C末端域之间的裂缝上。例外地,FepB与其他已知的铁载体结合PBP的不同之处在于,它通过捕获四个各自可促进FepB三聚化的Fe-Ents形成三聚体。动态光散射实验与结构观察结果一致,表明FepB以Fe-Ent依赖性方式形成三聚体。 (C)2016 Elsevier Inc.保留所有权利。

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