van Pouderoyen G, Andrew C R, Loehr T M, Sanders-Loehr J, Mazumdar S, Hill H A, Canters G W
Leiden Institute of Chemistry, Gorlaeus Laboratories, Leiden University, The Netherlands.
Biochemistry. 1996 Feb 6;35(5):1397-407. doi: 10.1021/bi951604w.
The spectroscopic and mechanistic properties of the Cu-containing active site of azurin from Pseudomonas aeruginosa were investigated by the construction of a mutant in which one of the ligands of the metal, His46, was replaced by a glycine. Although the mutation creates a hole in the interior of the protein, the 3D structure of the protein does not change to any appreciable extent. However, the spectroscopic (optical, resonance Raman, EPR) properties of the mutant protein are strongly affected by the mutation. In the presence of external ligands, the properties of the original wild-type protein are restored to a smaller or larger extent, depending on the ligand. It is concluded that the hole created by the mutation, even though it is completely buried inside the protein, can be filled by external ligands, often resulting in the creation of a mixture of so-called type-1 and type-2 copper sites. Also, the redox properties (midpoint potential, kinetics of reduction/oxidation) appeared to be strongly affected by the mutation and the presence of external ligands. The results are compared with previous results obtained on the mutant His117Gly.
通过构建一个突变体来研究铜绿假单胞菌天青蛋白含铜活性位点的光谱和机理性质,在该突变体中金属的一个配体His46被甘氨酸取代。尽管该突变在蛋白质内部产生了一个空洞,但蛋白质的三维结构并没有发生明显变化。然而,突变蛋白的光谱(光学、共振拉曼、电子顺磁共振)性质受到突变的强烈影响。在存在外部配体的情况下,原始野生型蛋白的性质会或多或少地恢复,这取决于配体。得出的结论是,由突变产生的空洞,即使它完全埋藏在蛋白质内部,也可以被外部配体填充,这通常会导致产生所谓的1型和2型铜位点的混合物。此外,氧化还原性质(中点电位、还原/氧化动力学)似乎也受到突变和外部配体存在的强烈影响。将这些结果与之前在His117Gly突变体上获得的结果进行了比较。