Sharma K D, Loehr T M, Sanders-Loehr J, Husain M, Davidson V L
Department of Chemical and Biological Sciences, Oregon Graduate Center, Beaverton 97006-1999.
J Biol Chem. 1988 Mar 5;263(7):3303-6.
The copper binding site of amicyanin from Paracoccus denitrificans has been examined by resonance Raman spectroscopy. The pattern of vibrational modes is clearly similar to those of the blue copper proteins azurin and plastocyanin. Intense resonance-enhanced peaks are observed at 377, 392, and 430 cm-1 as well as weaker overtones and combination bands in the high frequency region. Most of the peaks below 500 cm-1 shift 0.5-1.5 cm-1 to lower energy when the protein is exposed to D2O. Based on the pattern of conserved amino acids, the axial type EPR spectrum, and the resonance Raman spectrum, it is proposed that the copper binding site in amicyanin contains a Cu(II) ion in a distorted trigonal planar geometry with one cysteine and two histidine ligands and an axial methionine ligand at a considerably longer distance. Furthermore, the presence of multiple intense Raman peaks in the 400 cm-1 region which are sensitive to deuterium substitution leads to the conclusion that the Cu-S stretch is coupled with internal ligand vibrational modes and that the sulfur of the cysteine ligand is likely to be hydrogen-bonded to the polypeptide backbone.
利用共振拉曼光谱对反硝化副球菌中氨腈蓝蛋白的铜结合位点进行了研究。其振动模式与蓝铜蛋白天青蛋白和质体蓝素的振动模式明显相似。在377、392和430 cm-1处观察到强烈的共振增强峰,以及高频区域较弱的泛音和组合带。当蛋白质暴露于D2O时,大多数低于500 cm-1的峰向较低能量方向移动0.5 - 1.5 cm-1。基于保守氨基酸模式、轴向型电子顺磁共振谱和共振拉曼光谱,推测氨腈蓝蛋白中的铜结合位点包含一个处于扭曲三角平面几何结构的Cu(II)离子,有一个半胱氨酸和两个组氨酸配体,以及一个距离相当长的轴向甲硫氨酸配体。此外,在400 cm-1区域存在多个对氘取代敏感的强烈拉曼峰,这表明Cu-S伸缩振动与内部配体振动模式耦合,并且半胱氨酸配体的硫可能与多肽主链形成氢键。