Karpefors M, Slutter C E, Fee J A, Aasa R, Källebring B, Larsson S, Vänngård T
Department of Biochemistry and Biophysics, Göteborg University, Sweden.
Biophys J. 1996 Nov;71(5):2823-9. doi: 10.1016/S0006-3495(96)79478-X.
The electron paramagnetic resonance (EPR) spectrum of the binuclear CuA center in the water-soluble subunit II fragment from cytochrome ba3 of Thermus thermophilus was recorded at 3.93, 9.45, and 34.03 GHz, and the EPR parameters were determined by computer simulations. The frequency and M1 dependence of the linewidth was discussed in terms of g strain superimposed on a correlation between the A and g values. The g values were found to be gx = 1.996, gy = 2.011, gz = 2.187, and the two Cu ions contribute nearly equally to the hyperfine structure, with magnitude of Ax magnitude of approximately 15 G, magnitude of Ay magnitude = 29 G, and magnitude of Az magnitude of = 28.5 G (65Cu). Theoretical CNDO/S calculations, based on the x-ray structure of the Paracoccus denitrificans enzyme, yield a singly occupied antibonding orbital in which each Cu is pi*-bonded to one S and sigma*-bonded to the other. In contrast to the equal spin distribution suggested by the EPR simulations, the calculated contributions from the Cu ions differ by a factor of 2. However, only small changes in the ligand geometry are needed to reproduce the experimental results.
嗜热栖热菌细胞色素ba3水溶性亚基II片段中双核CuA中心的电子顺磁共振(EPR)光谱是在3.93、9.45和34.03 GHz下记录的,EPR参数通过计算机模拟确定。根据叠加在A值和g值相关性上的g应变讨论了线宽的频率和M1依赖性。发现g值为gx = 1.996,gy = 2.011,gz = 2.187,并且两个铜离子对超精细结构的贡献几乎相等,Ax的大小约为15 G,Ay的大小 = 29 G,Az的大小 = 28.5 G(65Cu)。基于反硝化副球菌酶的x射线结构进行理论CNDO/S计算,得到一个单占据反键轨道,其中每个铜与一个硫形成π键,与另一个硫形成σ键。与EPR模拟表明的自旋分布相等相反,计算出的铜离子贡献相差2倍。然而,只需对配体几何结构进行微小改变就能重现实验结果。