首页> 外文OA文献 >Theoretical Study of the Electrostatic and Steric Effects on the Spectroscopic Characteristics of the Metal-Ligand Unit of Heme Proteins. 2. C-O Vibrational Frequencies, 17O Isotropic Chemical Shifts, and Nuclear Quadrupole Coupling Constants
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Theoretical Study of the Electrostatic and Steric Effects on the Spectroscopic Characteristics of the Metal-Ligand Unit of Heme Proteins. 2. C-O Vibrational Frequencies, 17O Isotropic Chemical Shifts, and Nuclear Quadrupole Coupling Constants

机译:血红素蛋白金属-配体单元的静电和立体效应对光谱特征的理论研究。 2. C-O振动频率,17O各向同性化学位移和核四极耦合常数

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摘要

The quantum chemical calculations, vibronic theory of activation, and London-Pople approach are used to study the dependence of the C-O vibrational frequency, 17O isotropic chemical shift, and nuclear quadrupole coupling constant on the distortion of the porphyrin ring and geometry of the CO coordination, changes in the iron-carbon and iron-imidazole distances, magnitude of the iron displacement out of the porphyrin plane, and presence of the charged groups in the heme environment. It is shown that only the electrostatic interactions can cause the variation of all these parameters experimentally observed in different heme proteins, and the heme distortions could modulate this variation. The correlations between the theoretically calculated parameters are shown to be close to the experimentally observed ones. The study of the effect of the electric field of the distal histidine shows that the presence of the four C-O vibrational bands in the infrared absorption spectra of the carbon monoxide complexes of different myoglobins and hemoglobins can be caused by the different orientations of the different tautomeric forms of the distal histidine. The dependence of the 17O isotropic chemical shift and nuclear quadrupole coupling constant on pH and the distal histidine substitution can be also explained from the same point of view.
机译:使用量子化学计算,激活的振动学理论和London-Pople方法研究了CO振动频率,17O各向同性化学位移和核四极偶合常数对卟啉环畸变和CO配位几何的依赖性,铁-碳和铁-咪唑距离的变化,铁从卟啉平面中位移的幅度以及血红素环境中带电基团的存在。结果表明,只有静电相互作用才能引起在不同血红素蛋白中实验观察到的所有这些参数的变化,而血红素变形可以调节这种变化。理论上计算出的参数之间的相关性被证明接近于实验观察到的参数。对组氨酸末梢电场影响的研究表明,不同互变异构体形式的不同取向可能导致不同肌球蛋白和血红蛋白的一氧化碳配合物的红外吸收光谱中存在四个CO振动带。组氨酸的远端。也可以从同一角度解释17O各向同性化学位移和核四极偶合常数对pH值和远端组氨酸取代的依赖性。

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