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一氧化氮诱导细长聚球藻光系统II放氧复合体中S-2态的形成。

Nitric oxide-induced formation of the S-2 state in the oxygen-evolving complex of photosystem II from Synechococcus elongatus.

作者信息

Sarrou Josephine, Isgandarova Sabina, Kern Jan, Zouni Athina, Renger Gernot, Lubitz Wolfgang, Messinger Johannes

机构信息

Max-Planck-Institut für Strahlenchemie, Stiftstrasse 34-36, D-45470 Mülheim an der Ruhr, Germany.

出版信息

Biochemistry. 2003 Feb 4;42(4):1016-23. doi: 10.1021/bi026327p.

Abstract

In spinach photosystem II (PSII) membranes, the tetranuclear manganese cluster of the oxygen-evolving complex (OEC) can be reduced by incubation with nitric oxide at -30 degrees C to a state which is characterized by an Mn(2)(II, III) EPR multiline signal [Sarrou, J., Ioannidis, N., Deligiannakis, Y., and Petrouleas, V. (1998) Biochemistry 37, 3581-3587]. This state was recently assigned to the S(-)(2) state of the OEC [Schansker, G., Goussias, C., Petrouleas, V., and Rutherford, A. W. (2002) Biochemistry 41, 3057-3064]. On the basis of EPR spectroscopy and flash-induced oxygen evolution patterns, we show that a similar reduction process takes place in PSII samples of the thermophilic cyanobacterium Synechococcus elongatus at both -30 and 0 degrees C. An EPR multiline signal, very similar but not identical to that of the S(-)(2) state in spinach, was obtained with monomeric and dimeric PSII core complexes from S. elongatus only after incubation at -30 degrees C. The assignment of this EPR multiline signal to the S(-)(2) state is corroborated by measurements of flash-induced oxygen evolution patterns and detailed fits using extended Kok models. The small reproducible shifts of several low-field peak positions of the S(-)(2) EPR multiline signal in S. elongatus compared to spinach suggest that slight differences in the coordination geometry and/or the ligands of the manganese cluster exist between thermophilic cyanobacteria and higher plants.

摘要

在菠菜光合作用光系统II(PSII)膜中,通过在-30℃下与一氧化氮孵育,放氧复合体(OEC)的四核锰簇可被还原为一种以Mn₂(II,III)EPR多线信号为特征的状态[Sarrou,J.,Ioannidis,N.,Deligiannakis,Y.,和Petrouleas,V.(1998)《生物化学》37,3581 - 3587]。最近这种状态被指定为OEC的S⁻²状态[Schansker,G.,Goussias,C.,Petrouleas,V.,和Rutherford,A. W.(2002)《生物化学》41,3057 - 3064]。基于电子顺磁共振光谱(EPR)和闪光诱导的放氧模式,我们表明在嗜热蓝细菌聚球藻的PSII样品中,在-30℃和0℃时都会发生类似的还原过程。仅在-30℃孵育后,从聚球藻获得的单体和二聚体PSII核心复合体得到了一个EPR多线信号,该信号与菠菜中S⁻²状态的信号非常相似但不完全相同。通过测量闪光诱导的放氧模式以及使用扩展的Kok模型进行详细拟合,证实了将这个EPR多线信号指定为S⁻²状态。与菠菜相比,聚球藻中S⁻² EPR多线信号的几个低场峰位置存在小的可重复偏移,这表明嗜热蓝细菌和高等植物之间锰簇的配位几何结构和/或配体存在细微差异。

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