Okubo Tatsunori, Tomo Tatsuya, Sugiura Miwa, Noguchi Takumi
Institute of Materials Science, University of Tsukuba, Tsukuba, Ibaraki 305-8573, Japan.
Biochemistry. 2007 Apr 10;46(14):4390-7. doi: 10.1021/bi700157n. Epub 2007 Mar 20.
The structure and the electronic properties of P680 and its radical cation in photosystem II (PSII) were studied by means of Fourier transform infrared spectroscopy (FTIR). Light-induced P680+/P680 FTIR difference spectra in the mid- and near-IR regions were measured using PSII membranes from spinach, core complexes from Thermosynechococcus elongatus, and reaction center (RC) complexes (D1-D2-Cytb559) from spinach. The spectral features of the former two preparations were very similar, indicating that the structures of P680 and its radical cation are virtually identical between membranes and cores and between plants and cyanobacteria. In sharp contrast, the spectrum of the RC complexes exhibited significantly different features. A positive doublet at approximately 1724 and approximately 1710 cm-1 due to the 131-keto C=O stretches of P680+ in the membrane and core preparations were changed to a prominent single peak at 1712 cm-1 in the RC complexes. This observation was interpreted to indicate that a positive charge on P680+ was extensively delocalized over the chlorophyll dimer in RC, whereas it was mostly localized on one chlorophyll molecule (70-80%) in intact P680. The significant change in the electronic structure of P680+ in RC was supported by a dramatic change in the characteristics of a broad intervalence band in the near-IR region and relatively large shifts of chlorin ring bands. It is proposed that the extensive charge delocalization in P680+ mainly causes the decrease in the redox potential of P680+/P680 in isolated RC complexes. This potential decrease explains the well-known phenomenon that YZ is not oxidized by P680+ in RC complexes.
利用傅里叶变换红外光谱(FTIR)研究了光系统II(PSII)中P680及其自由基阳离子的结构和电子性质。使用菠菜的PSII膜、嗜热栖热菌的核心复合物以及菠菜的反应中心(RC)复合物(D1-D2-Cytb559),测量了中红外和近红外区域的光诱导P680⁺/P680 FTIR差谱。前两种样品的光谱特征非常相似,表明P680及其自由基阳离子的结构在膜和核心之间以及植物和蓝细菌之间几乎相同。形成鲜明对比的是,RC复合物的光谱表现出显著不同的特征。膜和核心样品中由于P680⁺的131-酮C=O伸缩振动在约1724和约1710 cm⁻¹处出现的正双峰,在RC复合物中变为1712 cm⁻¹处的一个突出单峰。这一观察结果被解释为表明P680⁺上的正电荷在RC中的叶绿素二聚体上广泛离域,而在完整的P680中大部分定位于一个叶绿素分子(70-80%)。RC中P680⁺电子结构的显著变化得到了近红外区域宽价带特征的显著变化以及二氢卟吩环带相对较大位移的支持。有人提出,P680⁺中的广泛电荷离域主要导致分离的RC复合物中P680⁺/P680氧化还原电位的降低。这种电位降低解释了众所周知的现象,即RC复合物中的YZ不被P680⁺氧化。