Larsson S, Källebring B, Wittung P, Malmström B G
Department of Physical Chemistry University of Technology, Göteborg, Sweden.
Proc Natl Acad Sci U S A. 1995 Aug 1;92(16):7167-71. doi: 10.1073/pnas.92.16.7167.
The electronic structure and spectrum of several models of the binuclear metal site in soluble CuA domains of cytochrome-c oxidase have been calculated by the use of an extended version of the complete neglect of differential overlap/spectroscopic method. The experimental spectra have two strong transitions of nearly equal intensity around 500 nm and a near-IR transition close to 800 nm. The model that best reproduces these features consists of a dimer of two blue (type 1) copper centers, in which each Cu atom replaces the missing imidazole on the other Cu atom. Thus, both Cu atoms have one cysteine sulfur atom and one imidazole nitrogen atom as ligands, and there are no bridging ligands but a direct Cu-Cu bond. According to the calculations, the two strong bands in the visible region originate from exciton coupling of the dipoles of the two copper monomers, and the near-IR band is a charge-transfer transition between the two Cu atoms. The known amino acid sequence has been used to construct a molecular model of the CuA site by the use of a template and energy minimization. In this model, the two ligand cysteine residues are in one turn of an alpha-helix, whereas one ligand histidine is in a loop following this helix and the other one is in a beta-strand.
利用完全忽略微分重叠/光谱方法的扩展版本,计算了细胞色素c氧化酶可溶性CuA结构域中双核金属位点几种模型的电子结构和光谱。实验光谱在500nm左右有两个强度几乎相等的强跃迁,以及在800nm附近有一个近红外跃迁。最能重现这些特征的模型由两个蓝色(1型)铜中心的二聚体组成,其中每个铜原子取代另一个铜原子上缺失的咪唑。因此,两个铜原子都有一个半胱氨酸硫原子和一个咪唑氮原子作为配体,没有桥连配体,但有一个直接的铜-铜键。根据计算,可见区域的两个强带源于两个铜单体偶极子的激子耦合,近红外带是两个铜原子之间的电荷转移跃迁。已知的氨基酸序列已被用于通过模板和能量最小化构建CuA位点的分子模型。在这个模型中,两个配体半胱氨酸残基在一个α-螺旋的一圈中,而一个配体组氨酸在该螺旋之后的一个环中,另一个在β-链中。