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On the mechanism of photosynthetic oxidation of water in a dimeric oxygen-evolving complex of chloroplasts photosystem II

机译:叶绿体光系统的二聚体析氧复合物中水的光合作用氧化机理II

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Based on the analysis of the molecular organization and properties of an isolated oxygen-evolving complex of photosystem II of plant chloroplasts, a mechanism of water oxidation and oxygen release during photosynthesis was proposed. It is suggested that the photolysis of water occurs in a dimeric oxygen-evolving complex consisting of two core complexes. In the region of contact of these complexes, a hydrophobic boiler is formed where the conditions for screening and stabilization of Z-linanded manganese cations accumulating positive charges for the oxidation of water molecules are created. A prerequisite to the photolysis of water is the formation of a binuclear [Mn~(3+)-OH...Oh-Mn~(3+)] hydroxyl-manganese associate, which appears in the dimeric oxygen-evolving complex after the first two light flashes as a result of photohydrolysis of photochemically oxidized Z-liganded manganese cations. The process is accompanied by the release of the first water protons to the medium. The photosynthetic oxidation of water hydroxyls occurs at the stage and is considered as synchronous detachment of four electrons from two bound OH-groups of the associate upon photooxidation of Mn~(3+) cations to Mn~(4+) cations after two subsequent light flashes. This process is accompanied by the disproprotionation of electron density and the formation of a bone between oxygen atoms of hydroxyls followed by the evolution of molecular oxygen and protons, and regeneration of two starting Mn~(2+) cations and the primary state of the system.
机译:在分析植物叶绿体光系统II分离的析氧复合物的分子组织和性质的基础上,提出了光合作用过程中水氧化和氧释放的机理。建议水的光解发生在由两个核心络合物组成的二聚体析氧络合物中。在这些络合物的接触区域中,形成了疏水性的“锅炉”,在此形成了筛选和稳定Z-锰酸锰阳离子的条件,该阳离子积累了用于水分子氧化的正电荷。水光解的先决条件是形成双核[Mn〜(3 +)-OH ... Oh-Mn〜(3+)]羟基锰缔合体,该双核[Mn〜(3 +)-OH ... Oh-Mn〜(3+)]由于光化学氧化的Z配位的锰阳离子的光水解作用,前两次闪烁。该过程伴随着第一批水质子释放到介质中。水羟基的光合氧化发生在该阶段,并且被认为是四次电子从Mn〜(3+)阳离子光氧化为Mn〜(4+)阳离子后从缔合体的两个结合的OH基同步脱离。闪烁。该过程伴随着电子密度的歧化和羟基的氧原子之间骨骼的形成,随后是分子氧和质子的演化,以及两个起始Mn〜(2+)阳离子的再生和系统的主要状态。

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