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Thin film voltammetry of spinach photosystem II. Proton-gated electron transfer involving the Mn-4 cluster

机译:菠菜光系统的薄膜伏安法II。涉及Mn-4团簇的质子门电子转移

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Thin film voltammetry was used to obtain direct, reversible, electron-transfer peaks between electrodes and the spinach photosystem II (PS II) reaction center in lipid films for the first time. Three well-defined pairs of reduction-oxidation peaks were found using cyclic and square wave voltammetry at 4 degrees C at pH 7.5, reflecting direct, reversible electron transfer involving cofactors of PS II. These peaks were assigned to the oxygen-evolving complex (OEC) tetramanganese cluster (E-m = 0.2 V vs NHE), quinones (E-m = -0.29 V), and pheophytin (E-m = -0.72 V). PS II that was depleted of the OEC did not give the peak at 0.2 V. Observed E-m values, especially for the OEC, may be influenced by protein-lipid interactions and electrode double-layer effects. Voltammetry at pH 6 and at pH 7.5 with a time window of > 100 ms revealed that the manganese cluster oxidation is gated by slow deprotonation of a reduced form. Additional rapid protonation/deprotonation steps are also involved in the electrochemical reduction-oxidation pathways.
机译:薄膜伏安法首次用于在脂质膜中的电极与菠菜光系统II(PS II)反应中心之间获得直接,可逆的电子转移峰。使用循环伏安法和方波伏安法在4摄氏度,pH 7.5下发现了三对明确定义的还原-氧化峰,反映了涉及PS II辅因子的直接可逆电子转移。这些峰被指定为放氧络合物(OEC)四锰簇(E-m = 0.2 V对NHE),醌(E-m = -0.29 V)和脱镁叶绿素(E-m = -0.72 V)。耗尽OEC的PS II在0.2 V处未出现峰。观察到的E-m值(尤其是OEC)可能受蛋白质-脂质相互作用和电极双层效应的影响。在pH值为6和pH值为7.5且时间窗口> 100 ms的伏安法表明,锰簇的氧化作用是通过还原形式的缓慢去质子化来实现的。额外的快速质子化/去质子化步骤也涉及电化学还原-氧化途径。

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