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光合作用系统 II 自行车模型中氧气产生的动力学因素。

Kinetic factors in the bicycle model of oxygen evolution by Photosystem II.

机构信息

Biophysics Section, Department of Biology, Moscow State University, Moscow, Russia.

出版信息

Photosynth Res. 1993 Jan;38(3):315-21. doi: 10.1007/BF00046756.

Abstract

Flash-induced oxygen evolution and many related processes in thylakoids of oxygenic organisms are modulated with period four by the S-state transitions associated with the oxygen evolving system of Photosystem II (PS II). To analyze these phenomena, we have interpreted the S-state model on the basis of the charge accumulating activities on both sides of PS II-4 charges on the donor side and 2 charges on the acceptor side. This results in the recognition of two parallel reaction center cycles V and W of PS II function (V.P. Shinkarev and C.A. Wraight (1993) Proc Natl Acad Sci USA 90: 1834-1838). The description of damping of the period four oscillations is here extended to include kinetic sources of misses in both cycles. Such misses arise in reaction centers (RCs) in which back reaction between P(+) and QA (-) occurs before the electron transfer equilibria on the donor and acceptor sides of the RC are reached. These are in addition to misses which are determined by reaction centers (RCs) that are inactive at the time of the flash due to the presence of either P(+) or QA (-) according to the electron transfer equilibria on the donor and acceptor sides of the RC. Using known or estimated values of the equilibrium and rate constants for donor and acceptor side reactions of the RC, this provides a natural and quantitatively reasonable description of the flash number dependence of oxygen evolution and other period four modulated processes of PS II. The estimated miss factors are different for both cycles V and W and are dependent on flash number and pH. Estimates based on existing data show that miss factors of the first type (kinetic) are dominant at low pH, while those of the second type (equilibrium) are dominant at high pH.

摘要

在含氧生物体的类囊体中,闪光诱导的氧气释放和许多相关过程受与光合系统 II(PS II)氧气释放系统相关的 S 态转变以四周期调制。为了分析这些现象,我们根据 PS II-4 电荷在供体侧和 2 个电荷在受体侧上的积累电荷活动,对 S 态模型进行了解释。这导致了 PS II 功能的两个平行反应中心循环 V 和 W 的识别(V.P. Shinkarev 和 C.A. Wraight(1993)Proc Natl Acad Sci USA 90: 1834-1838)。这里将四周期振荡阻尼的描述扩展到包括两个循环中动力学缺失的来源。这些缺失发生在 P(+) 和 QA (-) 之间的反向反应在 RC 供体和受体侧的电子转移平衡达到之前发生的反应中心(RC)中。这些除了由于 RC 供体和受体侧的电子转移平衡,在闪光时由于存在 P(+) 或 QA (-) 而处于非活动状态的 RC 中的缺失之外。使用 RC 供体和受体侧反应的平衡和速率常数的已知或估计值,这为氧气释放和 PS II 的其他四周期调制过程的闪光数依赖性提供了自然且定量合理的描述。对于两个循环 V 和 W,估计的缺失因子不同,并且依赖于闪光数和 pH 值。基于现有数据的估计表明,第一类(动力学)缺失因子在低 pH 值时占主导地位,而第二类(平衡)缺失因子在高 pH 值时占主导地位。

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