Salgado J, Jiménez H R, Donaire A, Moratal J M
Department of Inorganic Chemistry, University of Valencia, Burjassot, Spain.
Eur J Biochem. 1995 Jul 15;231(2):358-69. doi: 10.1111/j.1432-1033.1995.tb20708.x.
Substitution of copper by cobalt in blue copper proteins gives a paramagnetic metalloderivative suitable for paramagnetic NMR studies. A thorough analysis of the 1H-NMR spectrum of Pseudomonas aeruginosa Co(II)-azurin is presented here. All the observable contact-shifted signals as well as many other paramagnetic signals from protons placed up to about 1.0 nm around the metal center, including some residues belonging to functionally important parts of the protein like the hydrophobic patch and the His35 region, have been assigned. The results obtained permit the detection and study of structural variations like those originated by the His35 ionization, and allow us to draw a feasible picture of the metal coordination site. Contact-shifted signals correspond to the same five residues which are found in the coordination sphere of the native Cu(II)-azurin, i.e. His46, His117, Cys112, Met121 and Gly45. Among them, the histidine residues present a pattern of resonances typical for histidines coordinated to cobalt in other cobalt protein derivatives, and the cysteine signals clearly indicate a strong interaction with the paramagnetic Co(II) ion. In contrast, the Met121 signals indicate a weak but still existent contact interaction with the metal center. On the other hand, the very weak copper ligand, Gly45, appears here as clearly coordinated to cobalt. Results are consistent with a distorted tetrahedral metal site with the cobalt deviated from the N2S plane towards the Gly45 O axial position and weakly interacting with the Met121 sulfur.
在蓝色铜蛋白中用钴取代铜可得到一种适用于顺磁核磁共振研究的顺磁性金属衍生物。本文对铜绿假单胞菌钴(II)-天青蛋白的1H-NMR谱进行了全面分析。已对所有可观测到的接触位移信号以及金属中心周围约1.0纳米范围内质子产生的许多其他顺磁信号进行了归属,其中包括属于蛋白质功能重要部分(如疏水补丁和His35区域)的一些残基。所获得的结果有助于检测和研究结构变化,如由His35电离引起的结构变化,并使我们能够描绘出金属配位位点的可行图像。接触位移信号对应于天然铜(II)-天青蛋白配位球中发现的相同五个残基,即His46、His117、Cys112、Met121和Gly45。其中,组氨酸残基呈现出与其他钴蛋白衍生物中与钴配位的组氨酸典型的共振模式,半胱氨酸信号清楚地表明与顺磁性钴(II)离子有强烈相互作用。相比之下,Met121信号表明与金属中心有微弱但仍然存在的接触相互作用。另一方面,非常弱的铜配体Gly45在这里显示出明显与钴配位。结果与一个扭曲的四面体金属位点一致,钴偏离N2S平面朝向Gly45的O轴向位置,并与Met121的硫有弱相互作用。