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首页> 外文期刊>Photosynthesis Research >Reconstitution of the water-oxidizing complex in manganese-depleted photosystem II preparations using synthetic Mn complexes: a fluorine-19 NMR study of the reconstitution process
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Reconstitution of the water-oxidizing complex in manganese-depleted photosystem II preparations using synthetic Mn complexes: a fluorine-19 NMR study of the reconstitution process

机译:使用合成锰配合物重构贫锰光系统II制剂中的水氧化配合物:重构过程的氟19 NMR研究

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摘要

Reconstitution of Mn-depleted photosystem II (PSII) particles was examined with synthetic trinuclear Mn complexes of newly developed tripod ligands. Rates of the electron transfer and oxygen evolution were up to 74–86 and 52–56% of those measured in native PSII. These values are higher than those for the PSII reconstituted by MnCl2. The role of the tripod ligands during the reconstitution process was examined by 19F NMR. Due to the high NMR sensitivity of the 19F nucleus and the low abundance of fluorine atoms in natural PSII, it was possible to selectively observe the fluorine atoms on the tripod ligand. It was shown that the tripod ligands were released from the Mn complex after the reconstitution. We propose that the primary step in the reconstitution process is the prebinding of the Mn complex to the hydrophobic part of the PSII particle.
机译:用新开发的三脚架配体的合成三核Mn配合物检查了Mn耗竭的光系统II(PSII)颗粒的重构。在天然PSII中测得的电子转移和氧释放速率分别为74-86和52-56%。这些值高于用MnCl 2 重构的PSII的值。通过 19 F NMR检验了三脚架配体在重构过程中的作用。由于 19 原子核的NMR敏感性高,而天然PSII中氟原子的丰度低,因此可以有选择地观察三脚架配体上的氟原子。结果表明,三脚架配体在重构后从Mn配合物中释放出来。我们建议在重建过程中的第一步是将锰配合物预结合到PSII颗粒的疏水部分。

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