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Electron spin density on the axial His ligand of high-spin and low-spin Nitrophorin 2 probed by heteronuclear NMR spectroscopy

机译:通过异核NmR光谱上的轴向他高自旋和低自旋Nitrophorin 2探测的配体电子自旋密度

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摘要

The electronic structure of heme proteins is exquisitely tuned by the interaction of the iron center with the axial ligands. NMR studies of paramagnetic heme systems have been focused on the heme signals, but signals from the axial ligands have been rather difficult to detect and assign. We report an extensive assignment of the 1H, 13C and 15N resonances of the axial His ligand in the NO-carrying protein nitrophorin 2 (NP2) in the paramagnetic high-spin and low-spin forms, as well as in the diamagnetic NO complex. We find that the high-spin protein has σ spin delocalization to all atoms in the axial His57, which decreases in size as the number of bonds between Fe(III) and the atom in question increase, except that within the His57 imidazole ring the contact shifts are a balance between positive σ and negative π contributions. In contrast, the low-spin protein has π spin delocalization to all atoms of the imidazole ring. Our strategy, adequately combined with a selective residue labeling scheme, represents a straightforward characterization of the electron spin density in heme axial ligands.
机译:铁中心与轴向配体的相互作用可精确调节血红素蛋白的电子结构。顺磁性血红素系统的NMR研究集中在血红素信号上,但是来自轴向配体的信号却很难检测和分配。我们报道了携带NO的蛋白质硝基蛋白2中轴向His配体的 1 H, 13 C和 15 N共振的广泛分配(NP2)呈顺磁性高旋和低旋形式,以及抗磁性NO配合物。我们发现,高自旋蛋白在轴向His57的所有原子上都有σ自旋离域,这随Fe(III)与所讨论原子之间的键数增加而尺寸减小,除了在His57咪唑环内的接触位移是正σ贡献与负π贡献之间的平衡。相反,低自旋蛋白具有π自旋离域到咪唑环的所有原子。我们的策略与选择性残基标记方案充分结合,代表了血红素轴向配体中电子自旋密度的简单表征。

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