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Interpretation of nuclear resonant vibrational spectra of rubredoxin using a combined quantum mechanics and molecular mechanics approach

机译:量子力学和分子力学相结合的方法解释鲁贝多辛的核共振振动光谱

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摘要

Nuclear resonant vibrational spectra of the reduced and oxidized form of a mutant of rubredoxin from Pyrococcus abyssii were measured and are compared with simulated spectra that were calculated by a combined quantum mechanics (QM) and molecular mechanics (MM) method. Density functional theory was used for the QM level. Calculations were performed for different models of rubredoxin. Realistic spectra were simulated with reduced models that include at least the iron center, the four cysteins coordinating it, and the residues connected to the cysteins together with a QM layer that comprises the first two coordination shells of the iron center. Larger QM layers did not lead to significant changes of the simulated spectra.
机译:测量了来自深红热球菌的氧化还原酶突变体的还原和氧化形式的核共振光谱,并与通过组合量子力学(QM)和分子力学(MM)方法计算的模拟光谱进行了比较。密度泛函理论用于QM级别。针对不同模型的鲁贝多辛进行了计算。用简化的模型模拟了真实的光谱,这些模型至少包括铁中心,四个与它结合的半胱氨酸,与半胱氨酸相连的残基以及包括铁中心的前两个配位壳的QM层。较大的QM层不会导致模拟光谱发生明显变化。

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