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首页> 外文期刊>Molecular physics >Theoretical modelling of biomolecular systems I. Large-scale QM/MM calculations of hydrogen-bonding networks of the oxygen evolving complex of photosystem II
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Theoretical modelling of biomolecular systems I. Large-scale QM/MM calculations of hydrogen-bonding networks of the oxygen evolving complex of photosystem II

机译:生物分子系统的理论模型I.光系统氧演化复合物氢键网络的大规模QM / MM计算II

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Quantum mechanical (QM)/molecular mechanics (MM) calculations by the use of a large-scale QM model (QM Model V) have been performed to elucidate hydrogen-bonding networks and proton wires for proton release pathways (PRP) of water oxidation reaction in the oxygen evolving complex (OEC) of photosystem II (PSII). Full geometry optimisations of PRP by the QM/MM model have been carried out starting from the geometry of heavy atoms determined by the recent high-resolution X-ray diffraction (XRD) experiment of PSII refined to 1.9 angstrom resolution. Computational results by the QM/MM calculations have elucidated the hydrogen-bonding O center dot center dot center dot O(N) and O center dot center dot center dot H distances and O(N)-H center dot center dot center dot O angles in PRP, together with the Cl-O(N) and Cl center dot center dot center dot H distances and O(N)-H center dot center dot center dot Cl angles for chloride anions. The optimised hydrogen-bonding networks are well consistent with the XRD results and available experiments such as extended X-ray absorption fine structure, showing the reliability of channel structures of OEC of PSII revealed by the XRD experiment. The QM/MM computations have elucidated possible roles of chloride anions in the OEC of PSII. The QM/MM computational results have provided useful information for understanding and explanation of accumulated mutation experiments of key amino acid residues in the OEC of PSII. Implications of the present results are discussed in relation to three steps for theoretical modelling of water oxidation in the OEC of PSII and bio-inspired working hypotheses for developments of artificial water oxidation systems by use of 3d transition-metal complexes.
机译:已经通过使用大规模QM模型(QM模型V)进行了量子力学(QM)/分子力学(MM)计算,以阐明氢键合网络和质子线用于水氧化反应的质子释放途径(PRP)在光系统II(PSII)的析氧复合物中(OEC)。从最近通过精制到1.9埃分辨率的PSII的高分辨率X射线衍射(XRD)实验确定的重原子的几何形状开始,通过QM / MM模型对PRP进行了完整的几何优化。通过QM / MM计算得出的计算结果阐明了氢键键O中心点中心点中心点O(N)和O中心点中心点中心点H距离和O(N)-H中心点中心点中心点O角在PRP中,连同氯离子的Cl-O(N)和Cl中心点中心点中心点H距离以及O(N)-H中心点中心点中心点Cl角。优化的氢键网络与XRD结果和现有的实验(如扩展的X射线吸收精细结构)非常吻合,表明XII实验揭示了PSII的OEC通道结构的可靠性。 QM / MM计算阐明了氯阴离子在PSII的OEC中的可能作用。 QM / MM计算结果为理解和解释PSII OEC中关键氨基酸残基的累积突变实验提供了有用的信息。本结果的含义与PSII的OEC中水氧化的理论建模的三个步骤以及使用3d过渡金属配合物开发人工水氧化系统的生物启发性工作假说有关。

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