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氧释放光系统 II 核心复合物减少 680(+)。

P680(+) reduction in oxygen-evolving Photosystem II core complexes.

机构信息

School of Physics, University of Sydney, 2006, NSW, Australia.

出版信息

Photosynth Res. 1996 Sep;49(3):209-21. doi: 10.1007/BF00034782.

Abstract

The kinetics of P680(+) reduction in oxygen-evolving spinach Photosystem II (PS II) core particles were studied using both repetitive and single-flash 830 nm transient absorption. From measurements on samples in which PS II turnover is blocked, we estimate radical-pair lifetimes of 2 ns and 19 ns. Nanosecond single-flash measurements indicate decay times of 7 ns, 40 ns and 95 ns. Both the longer 40 ns and 95 ns components relate to the normal S-state controlled Yz → P680(+) electron transfer dynamics. Our analysis indicates the existence of a 7 ns component which provides evidence for an additional process associated with modified interactions involving the water-splitting catalytic site. Corresponding microsecond measurements show decay times of 4 μs and 90 μs with the possibility of a small component with a decay time of 20-40 μs. The precise origin of the 4 μs component remains uncertain but appears to be associated with the water-splitting center or its binding site while the 90 μs component is assigned to P680(+)-QA (-) recombination. An amplitude and kinetic analysis of the flash dependence data gives results that are consistent with the current model of the oxygen-evolving complex.

摘要

使用重复和单次闪光 830nm 瞬态吸收技术研究了放氧型菠菜 PS II 核心颗粒中 P680(+)的还原动力学。在 PS II 周转被阻断的样品的测量中,我们估计自由基对的寿命为 2ns 和 19ns。纳秒级单次闪光测量表明,衰减时间分别为 7ns、40ns 和 95ns。40ns 和 95ns 的两个更长的组件都与正常 S 态控制的 Yz→P680(+)电子转移动力学有关。我们的分析表明存在一个 7ns 的组件,这为与涉及水分解催化位点的修饰相互作用有关的附加过程提供了证据。相应的微秒测量显示,衰减时间分别为 4μs 和 90μs,可能存在一个衰减时间为 20-40μs 的小组件。4μs 组件的确切来源仍不确定,但似乎与水分解中心或其结合位点有关,而 90μs 组件则被分配给 P680(+)-QA(-)复合。对闪光依赖数据的幅度和动力学分析得到的结果与放氧复合物的现行模型一致。

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