首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Highly efficient photoactivation of Mn-depleted photosystem II by imidazole-liganded manganese complexes
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Highly efficient photoactivation of Mn-depleted photosystem II by imidazole-liganded manganese complexes

机译:咪唑配位的锰配合物对缺锰光系统II的高效光活化

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摘要

The oxygen-evolving complex (OEC) of Mn-depleted photosystem II (PSII) can be reconstituted in the presence of exogenous Mn or a Mn complex under weak illumination, a process called photoactivation. Synthetic Mn complexes could provide a powerful system to analyze the assembly of the OEC. In this work, four mononuclear Mn complexes, [(terpy)(2)Mn-II(OOCH3)]center dot 2H(2)O (where terpy is 2,2':6',2"-terpyridine), Mn-II(bzimpy)(2), Mn-II(bp)(2)(CH3CH2OH)(2) [where bzimpy is 2,6-bis(2-benzimidazol-2-yl)pyridine] and [Mn-III(HL)(L)(py)(CH3OH)]CH3OH (where py is pyridine) were used in photoactivation experiments. Measurements of the photoreduction of 2,6-dichorophenolindophenol and oxygen evolution demonstrate that photoactivation is more efficient when Mn complexes are used instead of MnCl2 in reconstructed PSII preparations. The most efficient recoveries of oxygen evolution and electron transport activities are obtained from a complex, [Mn-III(HL)(L)(py)(CH3OH)]CH3OH, that contains both imidazole and phenol groups. Its recovery of the rate of oxygen evolution is as high as 79% even in the absence of the 33-kDa peptide. The imidazole ligands of the Mn complex probably accelerate P-680(center dot+) reduction and consequently facilitate the process of photoactivation. Also, the strong intermolecular hydrogen bond probably facilitates interaction with the Mn-depleted PSII via reorganization of the hydrogen-bonding network, and therefore promotes the recovery of oxygen evolution and electron transport activities.
机译:Mn耗尽的光系统II(PSII)的放氧复合物(OEC)可以在外源Mn或弱光照射下的Mn络合物存在下进行重建,这一过程称为光活化。合成锰配合物可以提供强大的系统来分析OEC的组装。在这项工作中,四个单核Mn络合物[[(terpy)(2)Mn-II(OOCH3)]中心点2H(2)O(其中terpy是2,2':6',2“-叔吡啶),Mn- II(bzimpy)(2),Mn-II(bp)(2)(CH3CH2OH)(2)[其中bzimpy是2,6-双(2-苯并咪唑-2-基)吡啶]和[Mn-III(HL )(L)(py)(CH3OH)] CH3OH(其中py是吡啶)用于光活化实验。测量2,6-二氯酚吲哚酚的光还原反应和析出氧表明,使用Mn配合物代替Mn络合物时光活化更有效重组PSII制剂中的MnCl2。从含有咪唑和酚基团的[Mn-III(HL)(L)(py)(py)(CH3OH)] CH3OH络合物中获得最有效的氧气释放和电子传输活性回收率。即使不存在33-kDa肽,其氧释放速率的恢复率也高达79%,Mn配合物的咪唑配体可能会加速P-680(中心点+)的还原,从而促进光活化过程。也,强大的分子间氢键可能通过氢键网络的重组促进与贫锰的PSII的相互作用,从而促进氧释放和电子传输活性的恢复。

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