Cherrier Mickaël V, Martin Lydie, Cavazza Christine, Jacquamet Lilian, Lemaire David, Gaillard Jacques, Fontecilla-Camps Juan C
Laboratoire de Cristallographie et de Cristallogenèse des Protéines and Laboratoire de Spectroscopie de Masse des Protéines, Institut de Biologie Structurale J.P. Ebel (CEA-CNRS-UJF), 41 rue Jules Horowitz, 38027 Grenoble Cedex 1, France.
J Am Chem Soc. 2005 Jul 20;127(28):10075-82. doi: 10.1021/ja0518530.
Because nickel is both essential and toxic to a great variety of organisms, its detection and transport is highly regulated. In Escherichia coli and other related Gram-negative bacteria, high affinity nickel transport depends on proteins expressed by the nik operon. A central actor of this process is the periplasmic NikA transport protein. A previous structural report has proposed that nickel binds to NikA as a pentahydrate species. However, both stereochemical considerations and X-ray absorption spectroscopic results are incompatible with that interpretation. Here, we report the 1.8 A resolution structure of NikA and show that it binds FeEDTA(H2O)- with very high affinity. In addition, we provide crystallographic evidence that a metal-EDTA complex was also bound to the previously reported NikA structure. Our observations strongly suggest that nickel transport in E. coli requires the binding of this metal ion to a metallophore that bears significant resemblance to EDTA. They also provide a basis for the potential use of NikA in the bioremediation of toxic transition metals and the design of artificial metalloenzymes.
由于镍对多种生物体而言既是必需的又是有毒的,其检测与转运受到高度调控。在大肠杆菌及其他相关革兰氏阴性菌中,高亲和力镍转运依赖于nik操纵子表达的蛋白质。此过程的核心是周质NikA转运蛋白。先前的结构报告提出镍以五水合物形式与NikA结合。然而,立体化学考量和X射线吸收光谱结果均与该解释不相符。在此,我们报告了NikA的1.8埃分辨率结构,并表明它以非常高的亲和力结合FeEDTA(H₂O)⁻。此外,我们提供了晶体学证据,证明一种金属-EDTA复合物也与先前报道的NikA结构结合。我们的观察结果强烈表明,大肠杆菌中的镍转运需要这种金属离子与一种与EDTA有显著相似性的金属载体结合。它们还为NikA在有毒过渡金属生物修复及人工金属酶设计中的潜在应用提供了基础。