Fittipaldi Maria, Steiner Roberto A, Matsushita Michio, Dijkstra Bauke W, Groenen Edgar J J, Huber Martina
Department of Molecular Physics, Huygens Laboratory, Leiden University, Leiden, The Netherlands.
Biophys J. 2003 Dec;85(6):4047-54. doi: 10.1016/S0006-3495(03)74818-8.
An electron-spin-echo-detected, electron-paramagnetic-resonance study has been performed on the type 2 copper site of quercetin 2,3-dioxygenase from Aspergillus japonicus. In the protein, copper is coordinated by three histidine nitrogens and two sulfurs from the inhibitor diethyldithiocarbamate. A single crystal of the protein was studied at 95 GHz and the complete g-tensor determined. The electron-paramagnetic-resonance data are compatible with two orientations of the principal g-axes in the copper center, one of which is preferred on the basis of an analysis of the copper coordination and the d-orbitals that are involved in the unpaired-electron orbital. For this orientation, the principal z-axis of the g-tensor makes an angle of 19 degrees with the Cu-N(His112) bond and the N of His112 may be considered the axial ligand. The singly occupied molecular orbital contains a linear combination of copper dxy and dyz-orbitals, which are antibonding with atomic orbitals of histidine nitrogens and diethyldithiocarbamate sulfurs. The orientation of the g-tensor for the quercetin 2,3-dioxygenase is compared with that for type 1 copper sites.
对来自日本曲霉的槲皮素2,3 -双加氧酶的2型铜位点进行了电子自旋回波检测的电子顺磁共振研究。在该蛋白质中,铜由三个组氨酸氮原子和来自抑制剂二乙基二硫代氨基甲酸盐的两个硫原子配位。在95吉赫兹下研究了该蛋白质的单晶,并确定了完整的g张量。电子顺磁共振数据与铜中心主g轴的两种取向一致,基于对铜配位和参与未成对电子轨道的d轨道的分析,其中一种取向更受青睐。对于这种取向,g张量的主z轴与Cu-N(His112)键成19度角,His112的氮原子可被视为轴向配体。单占据分子轨道包含铜dxy和dyz轨道的线性组合,它们与组氨酸氮原子和二乙基二硫代氨基甲酸盐硫原子的原子轨道形成反键。将槲皮素2,3 -双加氧酶的g张量取向与1型铜位点的进行了比较。