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集胞藻6803光系统II D2蛋白组氨酸117突变体中激发能量转移的皮秒时间分辨荧光研究

Picosecond time-resolved fluorescence studies on excitation energy transfer in a histidine 117 mutant of the D2 protein of photosystem II in Synechocystis 6803.

作者信息

Vasil'ev S, Bruce D

机构信息

Department of Biological Sciences, Brock University, St. Catharines, Ontario L2S 3A1, Canada.

出版信息

Biochemistry. 2000 Nov 21;39(46):14211-8. doi: 10.1021/bi000476v.

Abstract

The role of the peripheral reaction center chlorophyll a molecule associated with His117 of the D2 polypeptide in photosystem II was investigated in Synechocystis sp. PCC 6803 using a combination of steady state, pump-probe, and picosecond time-resolved fluorescence spectroscopy. Data were obtained from intact cells and isolated thylakoid membranes of a control mutant and a D2-H117T mutant, both of which lacked photosystem I. Excitation energy transfer and trapping were investigated by analyzing the data with a kinetic model that used an exact numerical solution of the Pauli master equation, taking into account available photosystem II spectral and structural information. The results of our kinetic analysis revealed the observed difference in excited-state dynamics between the H117T mutant and the control to be consistent with a retardation of the rate of excitation energy transfer from the peripheral chlorophyll of D2 (Chl at His117) to the electron-transfer pigments and an increase of the rate constant for charge recombination in the H117T mutant. The kinetic model was able to account for the experimentally observed changes in absorption cross section and fluorescence decay kinetics between the control and mutant by invoking changes in only these two rate constants. The results rule out quenching of excitation by a chlorophyll cation radical as a mechanism responsible for the lower efficiency of excitation energy utilization in the H117T mutant. Our work also demonstrates the importance of the chlorophyll associated with His117 of the D2 protein for excitation energy transfer to the PSII electron-transfer pigments and for the effective stabilization of the primary radical pair.

摘要

利用稳态、泵浦 - 探测和皮秒时间分辨荧光光谱相结合的方法,在集胞藻PCC 6803中研究了与光系统II的D2多肽的His117相关的外周反应中心叶绿素a分子的作用。数据取自一个对照突变体和一个D2 - H117T突变体的完整细胞和分离的类囊体膜,这两个突变体均缺乏光系统I。通过使用考虑了可用的光系统II光谱和结构信息的动力学模型对数据进行分析,研究了激发能量转移和捕获过程。我们的动力学分析结果表明,观察到的H117T突变体与对照之间激发态动力学的差异,与从D2的外周叶绿素(His117处的叶绿素)到电子转移色素的激发能量转移速率减慢以及H117T突变体中电荷复合速率常数增加一致。该动力学模型仅通过调用这两个速率常数的变化,就能解释对照和突变体之间实验观察到的吸收截面和荧光衰减动力学的变化。结果排除了叶绿素阳离子自由基淬灭激发作为H117T突变体中激发能量利用效率较低的机制。我们的工作还证明了与D2蛋白的His117相关的叶绿素对于激发能量转移到PSII电子转移色素以及初级自由基对的有效稳定的重要性。

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