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首页> 外文期刊>Photosynthesis Research: An International Journal >Computational insights into the O(2)-evolving complex of photosystem II.
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Computational insights into the O(2)-evolving complex of photosystem II.

机译:对光系统II的O(2)演化复合体的计算洞察力。

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摘要

Mechanistic investigations of the water-splitting reaction of the oxygen-evolving complex (OEC) of photosystem II (PSII) are fundamentally informed by structural studies. Many physical techniques have provided important insights into the OEC structure and function, including X-ray diffraction (XRD) and extended X-ray absorption fine structure (EXAFS) spectroscopy as well as mass spectrometry (MS), electron paramagnetic resonance (EPR) spectroscopy, and Fourier transform infrared spectroscopy applied in conjunction with mutagenesis studies. However, experimental studies have yet to yield consensus as to the exact configuration of the catalytic metal cluster and its ligation scheme. Computational modeling studies, including density functional (DFT) theory combined with quantum mechanics/molecular mechanics (QM/MM) hybrid methods for explicitly including the influence of the surrounding protein, have proposed chemically satisfactory models of the fully ligated OEC within PSII that are maximally consistent with experimental results. The inorganic core of these models is similar to the crystallographic model upon which they were based, but comprises important modifications due to structural refinement, hydration, and proteinaceous ligation which improve agreement with a wide range of experimental data. The computational models are useful for rationalizing spectroscopic and crystallographic results and for building a complete structure-based mechanism of water-splitting in PSII as described by the intermediate oxidation states of the OEC. This review summarizes these recent advances in QM/MM modeling of PSII within the context of recent experimental studies.
机译:结构研究从根本上指导了光系统II(PSII)的析氧复合物(OEC)的水分解反应的机理研究。许多物理技术提供了对OEC结构和功能的重要见解,包括X射线衍射(XRD)和扩展X射线吸收精细结构(EXAFS)光谱以及质谱(MS),电子顺磁共振(EPR)光谱,以及与诱变研究结合应用的傅立叶变换红外光谱。但是,实验研究尚未就催化金属簇的确切构型及其连接方案达成共识。计算建模研究,包括密度泛函(DFT)理论与量子力学/分子力学(QM / MM)混合方法相结合,以明确包括周围蛋白质的影响,提出了PSII中完全连接的OEC的化学令人满意的模型,该模型最大程度地与实验结果一致。这些模型的无机核与它们所基于的晶体学模型相似,但是由于结构上的细化,水合和蛋白质连接而进行了重要的修饰,从而改善了与广泛的实验数据的一致性。该计算模型可用于合理化光谱和晶体学结果,以及用于建立由OEC的中间氧化态描述的PSII中水分解的完整基于结构的机理。这篇综述总结了在最近的实验研究的背景下,PSII的QM / MM建模方面的这些最新进展。

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