Donaire A, Salgado J, Moratal J M
Centro de Estudios Universitarios "San Pablo", Universitat de Valencia, Montcada, Valencia, Spain.
Biochemistry. 1998 Jun 16;37(24):8659-73. doi: 10.1021/bi971974f.
The orientation and the axial, Deltachiax, and rhombic, Deltachirh, components of the magnetic susceptibility tensor anisotropy for the cobalt(II) and nickel(II) derivatives of azurin from Pseudomonas aeruginosa have been determined from 1H NMR data. For both derivatives, the axial geometry of the system determines the orientation of the chi-tensor, whose z-axis forms an angle of 18.6 and 20.1 degrees with the Cu-OGly45 axial bond in the cobalt(II) and nickel(II) derivatives, respectively. For protons close to this axis, large negative pseudocontact shifts are observed, while those close to the NNS plane of the equatorial ligands experience lower and positive pseudocontact shifts for the same distance. Dipolar shifts are larger in the cobalt derivative, not only because of the larger spin number but also due to its intrinsically higher anisotropy. The contact contribution to the hyperfine shifts for the coordinated residues has been evaluated and analyzed in terms of unpaired spin delocalization mechanisms and geometry considerations. The results are extended to other blue copper proteins whose cobalt derivatives have been studied by 1H NMR. The electronic structure and its implications in the redox properties of the native copper proteins are also commented.
通过1H NMR数据确定了铜绿假单胞菌天青蛋白钴(II)和镍(II)衍生物的磁化率张量各向异性的取向以及轴向、Δχ轴和菱形、Δχ菱形分量。对于这两种衍生物,体系的轴向几何结构决定了χ张量的取向,其z轴在钴(II)和镍(II)衍生物中分别与Cu-OGly45轴向键形成18.6度和20.1度的夹角。对于靠近该轴的质子,观察到较大的负伪接触位移,而对于赤道配体的NNS平面附近的质子,在相同距离下经历较低的正伪接触位移。钴衍生物中的偶极位移更大,这不仅是因为自旋数更大,还因其本质上更高的各向异性。已根据未成对自旋离域机制和几何因素评估并分析了配位残基对超精细位移的接触贡献。结果扩展到了其他已通过1H NMR研究其钴衍生物的蓝铜蛋白。还对天然铜蛋白的电子结构及其对氧化还原性质的影响进行了评论。