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Excitation Energy Transfer and Charge Separation in Photosystem II Membranes Revisited

机译:再谈光系统II膜中的激发能转移和电荷分离

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摘要

We have performed time-resolved fluorescence measurements on photosystem II (PSII) containing membranes (BBY particles) from spinach with open reaction centers. The decay kinetics can be fitted with two main decay components with an average decay time of 150 ps. Comparison with recent kinetic exciton annihilation data on the major light-harvesting complex of PSII (LHCII) suggests that excitation diffusion within the antenna contributes significantly to the overall charge separation time in PSII, which disagrees with previously proposed trap-limited models. To establish to which extent excitation diffusion contributes to the overall charge separation time, we propose a simple coarse-grained method, based on the supramolecular organization of PSII and LHCII in grana membranes, to model the energy migration and charge separation processes in PSII simultaneously in a transparent way. All simulations have in common that the charge separation is fast and nearly irreversible, corresponding to a significant drop in free energy upon primary charge separation, and that in PSII membranes energy migration imposes a larger kinetic barrier for the overall process than primary charge separation.
机译:我们已经对含有开放反应中心菠菜的膜(BBY颗粒)的光系统II(PSII)进行了时间分辨荧光测量。衰减动力学可以配备两个主要衰减分量,平均衰减时间为150 ps。与最近对PSII(LHCII)的主要光捕获复合体的动力学激子an灭数据的比较表明,天线内的激发扩散对PSII中的总电荷分离时间有重要贡献,这与先前提出的陷阱限制模型不同。为了确定激发扩散对总电荷分离时间的贡献程度,我们基于颗粒膜中PSII和LHCII的超分子组织,提出了一种简单的粗粒度方法,以同时模拟PSII中的能量迁移和电荷分离过程。透明的方式。所有模拟的共同点是,电荷分离是快速且几乎不可逆的,这对应于一次电荷分离时自由能的显着下降,并且在PSII膜中,能量迁移对整个过程施加的动力障碍大于一次电荷分离。

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