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首页> 外文期刊>Biochemistry >Bromide does not bind to the Mn4Ca complex in its S-1 state in Cl--depleted and br(-)-reconstituted oxygen-evolving photosystem II: Evidence from X-ray absorption spectroscopy at the BrK-edge
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Bromide does not bind to the Mn4Ca complex in its S-1 state in Cl--depleted and br(-)-reconstituted oxygen-evolving photosystem II: Evidence from X-ray absorption spectroscopy at the BrK-edge

机译:在Cl - 耗尽和Br( - ) - 重构的氧化光系统II中的其S-1状态下,溴化物不会与Mn4Ca复合物结合:来自Brk-Edge的X射线吸收光谱的证据

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摘要

Chloride is an important cofactor in photosynthetic water oxidation. It can be replaced by bromide with retention of the oxygen-evolving activity of photosystem II ( PSII). Binding of bromide to the Mn4Ca complex of PSII in its dark-stable S-1 state was studied by X-ray absorption spectroscopy ( XAS) at the Br K-edge in Cl--depleted and Br--substituted PSII membrane particles from spinach. The XAS spectra exclude the presence of metal ions in the first and second coordination spheres of Br-. EXAFS analysis provided tentative evidence of at least one metal ion, which may be manganese or calcium, at a distance of similar to 5 angstrom to Br-. The native Cl- ion may bind at a similar distance. Accordingly, water oxidation may not require binding of a halide directly to the metal ions of the Mn complex in its S-1 state.
机译:氯化物是光合水氧化的重要辅助因子。 它可以通过溴化物替换,保留照相系统II(PSII)的氧不变活性。 通过Cl - 耗尽的和Br - 取代的PSII膜颗粒的X射线吸收光谱(XAs)研究了溴化铋与SIII的MN4CA复合物的MN4CA复合物。来自菠菜的Br-in - 取代的Psii膜颗粒的Br k边缘 。 XAS光谱排除了BR-的第一和第二协调球中的金属离子存在。 EXAFS分析提供了至少一种金属离子的暂定证据,该金属离子可以是锰或钙,在与5埃与BR中相似的距离。 天然Cl-离子可以在类似的距离中粘合。 因此,水氧化可能不需要将卤素直接与其S-1状态中Mn络合物的金属离子的结合。

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