首页> 外文期刊>Journal of the American Chemical Society >Water Activity Regulates the Q_A~- to Q_B Electron Transfer in Photosynthetic Reaction Centers from Rhodobacter sphaeroides
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Water Activity Regulates the Q_A~- to Q_B Electron Transfer in Photosynthetic Reaction Centers from Rhodobacter sphaeroides

机译:水分活度调节球形红球菌光合作用中心的Q_A〜-Q_B电子转移。

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We report on the effects of water activity and surrounding viscosity on electron transfer reactions taking place within a membrane protein: the reaction center (RC) from the photosynthetic bacterium Rhodobacter sphaeroides. We measured the kinetics of charge recombination between the primary photoxidized donor (P~+) and the reduced quinone acceptors. Water activity (a_w) and viscosity (η) have been tuned by changing the concentration of cosolutes (trehalose, sucrose, glucose, and glycerol) and the temperature. The temperature dependence of the rate of charge recombination between the reduced primary quinone, Q_A~-, and P~+ was found to be unaffected by the presence of cosolutes. At variance, the kinetics of charge recombination between the reduced secondary quinone (Q_B~-) and P~+ was found to be severely influenced by the presence of cosolutes and by the temperature. Results collected over a wide η-range (2 orders of magnitude) demonstrate that the rate of P~+Q_B~- recombination is uncorrelated to the solution viscosity. The kinetics of P~+Q_B-~ recombination depends on the P~+Q_A~Q_B ←→ P~+Q_AQ_B~- equilibrium constant. Accordingly, the dependence of the interquinone electron transfer equilibrium constant on T and a_w has been explained by assuming that the transfer of one electron from Q_A~- to Qb is associated with the release of about three water molecules by the RC. This implies that the interquinone electron transfer involves at least two RC substates differing in the stoichiometry of interacting water molecules.
机译:我们报道了水活度和周围粘度对在膜蛋白内发生的电子转移反应的影响:从光合细菌球形球形红细菌的反应中心(RC)。我们测量了主要的光氧化供体(P〜+)和还原的醌受体之间的电荷复合动力学。通过改变固溶体(海藻糖,蔗糖,葡萄糖和甘油)的浓度和温度来调节水活度(a_w)和粘度(η)。发现还原的伯醌Q_A〜-和P〜+之间的电荷复合速率的温度依赖性不受固溶体的影响。在变化下,发现还原的仲醌(Q_B〜-)和P〜+之间的电荷重组动力学受到固溶体的存在和温度的严重影响。在较宽的η范围(2个数量级)上收集的结果表明,P〜+ Q_B〜-的重组速率与溶液粘度无关。 P〜+ Q_B-〜重组的动力学取决于P〜+ Q_A〜Q_B←→P〜+ Q_AQ_B〜-平衡常数。因此,通过假设一个电子从Q_A〜-到Qb的转移与RC释放大约三个水分子有关,已经解释了对醌电子转移平衡常数对T和a_w的依赖性。这意味着对醌电子转移涉及至少两个在相互作用的水分子的化学计量上不同的RC亚状态。

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