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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Reinvestigation of the method used to map the electronic structure of blue copper proteins by NMR relaxation
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Reinvestigation of the method used to map the electronic structure of blue copper proteins by NMR relaxation

机译:重新研究通过NMR弛豫法绘制蓝铜蛋白电子结构的方法

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A previous method for mapping the electron spin distribution in blue copper proteins by paramagnetic nuclear magnetic resonance (NMR) relaxation (Hansen DF, Led JJ, 2004, J Am Chem Soc 126:1247-1253) suggested that the blue copper site of plastocyanin from Anabaena variabilis (A.v.) is less covalent than those found for other plastocyanins by other experimental methods, such as X-ray absorption spectroscopy. Here, a detailed spectroscopic study revealed that the electronic structure of A.v. plastocyanin is similar to those of other plastocyanins. Therefore, the NMR approach was reinvestigated using a more accurate geometric structure as the basis for the mapping, in contrast to the previous approach, as well as a more complete spin distribution model including Gaussian-type natural atomic orbitals instead of Slater-type hydrogen-like atomic orbitals. The refinement results in a good agreement between the electron spin density derived from paramagnetic NMR and the electronic structure description obtained by the other experimental methods. The refined approach was evaluated against density functional theory (DFT) calculations on a model complex of the metal site of plastocyanin in the crystal phase. In general, the agreement between the experimental paramagnetic relaxation rates and the corresponding rates obtained by the DFT calculations is good. Small deviations are attributed to minor differences between the solution structure and the crystal structure outside the first coordination sphere. Overall, the refined approach provides a complementary experimental method for determining the electronic structure of paramagnetic metalloproteins, provided that an accurate geometric structure is available.
机译:先前通过顺磁核磁共振(NMR)弛豫绘制蓝铜蛋白中电子自旋分布的图谱的方法(Hansen DF,Led JJ,2004,J Am Chem Soc 126:1247-1253)建议从通过其他实验方法(例如X射线吸收光谱法)发现的异色鱼腥藻(Av)的共价低于其他质体蓝素。在这里,详细的光谱研究表明A.v的电子结构质体蓝蛋白类似于其他质体蓝蛋白。因此,与以前的方法相比,对NMR方法进行了重新研究,使用的是更精确的几何结构作为作图的基础,以及更完整的自旋分布模型,包括高斯型自然原子轨道而不是Slater型氢原子。像原子轨道。通过精炼,顺磁NMR产生的电子自旋密度与通过其他实验方法获得的电子结构描述之间具有良好的一致性。改进的方法是根据密度泛函理论(DFT)计算对结晶相中质体蓝素金属位点的模型络合物进行评估的。通常,实验顺磁弛豫速率与通过DFT计算获得的相应速率之间的一致性很好。小偏差归因于在第一配位球之外的溶液结构和晶体结构之间的微小差异。总体而言,只要可以使用精确的几何结构,经过改进的方法就可以确定顺磁性金属蛋白的电子结构,从而为实验提供了一种补充方法。

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