Roberts Sue A, Wildner Gunter F, Grass Gregor, Weichsel Andrzej, Ambrus Attila, Rensing Christopher, Montfort William R
Departments of Biochemistry and Molecular Biophysics and Soil, Water, and Environmental Science, University of Arizona, Tucson, Arizona 85721.
J Biol Chem. 2003 Aug 22;278(34):31958-63. doi: 10.1074/jbc.M302963200. Epub 2003 Jun 6.
CueO, a multicopper oxidase, is part of the copper-regulatory cue operon in Escherichia coli, is expressed under conditions of copper stress and shows enhanced oxidase activity when additional copper is present. The 1.7-A resolution structure of a crystal soaked in CuCl2 reveals a Cu(II) ion bound to the protein 7.5 A from the T1 copper site in a region rich in methionine residues. The trigonal bipyramidal coordination sphere is unusual, containing two methionine sulfur atoms, two aspartate carboxylate oxygen atoms, and a water molecule. Asp-439 both ligates the labile copper and hydrogen-bonds to His-443, which ligates the T1 copper. This arrangement may mediate electron transfer from substrates to the T1 copper. Mutation of residues bound to the labile copper results in loss of oxidase activity and of copper tolerance, confirming a regulatory role for this site. The methionine-rich portion of the protein, which is similar to that of other proteins involved in copper homeostasis, does not display additional copper binding. The type 3 copper atoms of the trinuclear cluster in the structure are bridged by a chloride ion that completes a square planar coordination sphere for the T2 copper atom but does not affect oxidase activity.
CueO是一种多铜氧化酶,是大肠杆菌中铜调节cue操纵子的一部分,在铜胁迫条件下表达,当有额外的铜存在时显示出增强的氧化酶活性。浸泡在氯化铜中的晶体的1.7埃分辨率结构显示,一个铜(II)离子在富含甲硫氨酸残基的区域中与距T1铜位点7.5埃的蛋白质结合。三角双锥配位球不寻常,包含两个甲硫氨酸硫原子、两个天冬氨酸羧基氧原子和一个水分子。天冬氨酸-439既连接不稳定的铜又与组氨酸-443形成氢键后者连接T1铜。这种排列可能介导从底物到T1铜的电子转移。与不稳定铜结合的残基发生突变会导致氧化酶活性和铜耐受性丧失,证实了该位点的调节作用。蛋白质中富含甲硫氨酸的部分与参与铜稳态的其他蛋白质的部分相似,未显示出额外的铜结合。结构中三核簇的3型铜原子由一个氯离子桥接,该氯离子为T2铜原子完成了一个平面正方形配位球,但不影响氧化酶活性。