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在光照、PsbO 耗尽的光系统 II 制剂中,四聚体 Mn 簇迅速降解。

Rapid degradation of the tetrameric Mn cluster in illuminated, PsbO-depleted photosystem II preparations.

机构信息

Biological Faculty, Lomonosov Moscow State University, Moscow, Russia.

出版信息

Biochemistry (Mosc). 2012 Feb;77(2):152-6. doi: 10.1134/S0006297912020058.

DOI:10.1134/S0006297912020058
PMID:22348474
Abstract

A "decoupling effect" (light-induced electron transport without O2 evolution) was observed in Ca-depleted photosystem II (PSII(-Ca)) membranes, which lack PsbP and PsbQ (Semin et al. (2008) Photosynth. Res., 98, 235-249). Here PsbO-depleted PSII (PSII(-PsbO)) membranes (which also lack PsbP and PsbQ) were used to examine effects of PsbO on the decoupling. PSII(-PsbO) membranes do not reduce the acceptor 2,6-dichlorophenolindophenol (DCIP), in contrast to PSII(-Ca) membranes. To understand why DCIP reduction is lost, we studied light effects on the Mn content of PSII(-PsbO) samples and found that when they are first illuminated, Mn cations are rapidly released from the Mn cluster. Addition of an electron acceptor to PSII(-PsbO) samples accelerates the process. No effect of light was found on the Mn cluster in PSII(-Ca) membranes. Our results demonstrate that: (a) the oxidant, which directly oxidizes an as yet undefined substrate in PSII(-Ca) membranes, is the Mn cluster (not the Y(Z) radical or P680(+)); (b) light causes rapid release of Mn cations from the Mn cluster in PSII(-PsbO) membranes, and the mechanism is discussed; and (c) rapid degradation of the Mn cluster under illumination is significant for understanding the lack of functional activity in some PSII(-PsbO) samples reported by others.

摘要

在缺乏 PsbP 和 PsbQ 的 Ca depleted 光系统 II (PSII(-Ca)) 膜中观察到一种“解偶联效应”(光诱导的电子传递而无 O2 演化)(Semin 等人,(2008) Photosynth. Res.,98,235-249)。 在这里,使用缺乏 PsbO 的 PSII (PSII(-PsbO)) 膜(也缺乏 PsbP 和 PsbQ)来检查 PsbO 对解偶联的影响。 PSII(-PsbO) 膜不能还原受体 2,6-二氯苯酚靛酚 (DCIP),与 PSII(-Ca) 膜相反。 为了理解为什么 DCIP 还原丢失,我们研究了光对 PSII(-PsbO) 样品中 Mn 含量的影响,发现当它们第一次被照射时,Mn 阳离子从 Mn 簇中迅速释放出来。 添加电子受体到 PSII(-PsbO) 样品中会加速该过程。 在 PSII(-Ca) 膜中没有发现光对 Mn 簇的影响。 我们的结果表明:(a) 在 PSII(-Ca) 膜中直接氧化一个尚未定义的底物的氧化剂是 Mn 簇(不是 Y(Z) 自由基或 P680(+));(b) 光导致 PSII(-PsbO) 膜中 Mn 阳离子从 Mn 簇中迅速释放出来,并讨论了该机制;(c) 在光照下 Mn 簇的快速降解对于理解其他人报告的一些 PSII(-PsbO) 样品中缺乏功能活性具有重要意义。

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