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Structural changes correlated with magnetic spin state isomorphism in the S2 state of the Mn4CaO5 cluster in the oxygen-evolving complex of photosystem II

机译:与光系统​​II释氧复合物中Mn4CaO5团簇的S2状态的磁自旋态同构相关的结构变化

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摘要

The Mn4CaO5 cluster in photosystem II catalyzes the four-electron redox reaction of water oxidation in natural photosynthesis. This catalytic reaction cycles through four intermediate states (Si, i = 0 to 4), involving changes in the redox state of the four Mn atoms in the cluster. Recent studies suggest the presence and importance of isomorphous structures within the same redox/intermediate S-state. It is highly likely that geometric and electronic structural flexibility play a role in the catalytic mechanism. Among the catalytic intermediates that have been identified experimentally thus far, there is clear evidence of such isomorphism in the S2 state, with a high-spin (5/2) (HS) and a low spin (1/2) (LS) form, identified and characterized by their distinct electron paramagnetic resonance (EPR spectroscopy) signals. We studied these two S2 isomers with Mn extended X-ray absorption fine structure (EXAFS) and absorption and emission spectroscopy (XANES/XES) to characterize the structural and electronic structural properties. The geometric and electronic structure of the HS and LS S2 states are different as determined using Mn EXAFS and XANES/XES, respectively. The Mn K-edge XANES and XES for the HS form are different from the LS and indicate a slightly lower positive charge on the Mn atoms compared to the LS form. Based on the EXAFS results which are clearly different, we propose possible structural differences between the two spin states. Such structural and magnetic redox-isomers if present at room temperature, will likely play a role in the mechanism for water-exchange/oxidation in photosynthesis.
机译:光系统II中的Mn4CaO5簇催化自然光合作用中水氧化的四电子氧化还原反应。该催化反应循环通过四个中间状态(Si,i = 0至4),涉及簇中四个Mn原子的氧化还原状态的变化。最近的研究表明在同一个氧化还原/中间S状态中同构结构的存在和重要性。几何和电子结构的灵活性很可能在催化机理中起作用。到目前为止,在实验上已经确定的催化中间体中,有明显的证据表明,S2状态存在这种同构,具有高自旋(5/2)(HS)和低自旋(1/2)(LS)形式通过其独特的电子顺磁共振(EPR光谱)信号进行识别和表征。我们研究了这两个具有Mn扩展X射线吸收精细结构(EXAFS)和吸收和发射光谱(XANES / XES)的S2异构体,以表征结构和电子结构性质。分别使用Mn EXAFS和XANES / XES确定的HS和LS S2状态的几何和电子结构是不同的。 HS形式的Mn K边缘XANES和XES与LS不同,表示与LS形式相比,Mn原子上的正电荷略低。根据明显不同的EXAFS结果,我们提出两种自旋状态之间可能存在的结构差异。如果在室温下存在,则这种结构和磁性氧化还原异构体很可能在光合作用中的水交换/氧化机理中起作用。

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