Suppr超能文献

光系统II反应中心中P680阳离子自由基的傅里叶变换红外光谱研究:叶绿素二聚体上电荷离域的证据。

Fourier transform infrared study of the cation radical of P680 in the photosystem II reaction center: evidence for charge delocalization on the chlorophyll dimer.

作者信息

Noguchi T, Tomo T, Inoue Y

机构信息

Photosynthesis Research Laboratory, The Institute of Physical and Chemical Research (RIKEN), Saitama, Japan.

出版信息

Biochemistry. 1998 Sep 29;37(39):13614-25. doi: 10.1021/bi9812975.

Abstract

A Fourier transform infrared (FTIR) difference spectrum of the primary electron donor (P680) of photosystem II upon its photooxidation (P680+/P680) was obtained in the frequency region of 1000-3000 cm-1. The reaction center (RC) complex (D1-D2-Cytb559) was used for the measurements in the presence of ferricyanide as an exogenous electron acceptor. Control measurements of electronic absorption (300-1200 nm) showed that illumination of the RC complex at 150 K induced major oxidation of P680 concomitant with oxidation of a carotenoid and an accessory chlorophyll (Chl). Illumination at 250 K also specifically bleached one of the two beta-carotene molecules bound to the RC complex, and the sample thus treated exhibited little formation of a carotenoid cation on subsequent illumination at 150 K. The P680+/P680 FTIR difference spectrum (with minor contamination of Chl+/Chl) was measured at 150 K using this partially carotenoid-deficient RC complex. The spectrum showed a broad positive band centered at approximately 1940 cm-1, which could be ascribed to an infrared electronic transition of P680+ analogous to that previously observed in various bacterial P+. This finding indicates that a positive charge is delocalized over (or hopping between) the two Chl molecules in P680+. The low intensity of this electronic band compared with that of the bacterial band could have three possible explanations: weak resonance interaction between the constituent Chl molecules, an asymmetric structure of P680+, and the difference in Chl species. Bands in the C=O stretching region (1600-1750 cm-1) were interpreted in comparison with resonance Raman spectra of the RC complex. The negative peaks at 1704 and 1679 cm-1 were proposed as candidates for the keto C9=O bands of P680. The observation that neither of these bands agreed with the main keto C9=O band at 1669 cm-1 in the previous 3P680/P680 FTIR spectrum [Noguchi et al. (1993) Biochemistry 32, 7186-7195] led to the idea that the triplet state migrates to a Chl (designated as ChlT) different from P680 at low temperatures. Based on these results, structural models of Chl molecules including P680 and ChlT and their coupling in the cation, triplet, and Qy singlet states are discussed.

摘要

在1000 - 3000 cm⁻¹频率范围内获得了光系统II初级电子供体(P680)光氧化(P680⁺/P680)时的傅里叶变换红外(FTIR)差示光谱。在铁氰化物作为外源电子受体存在的情况下,使用反应中心(RC)复合物(D1 - D2 - Cytb559)进行测量。电子吸收的对照测量(300 - 1200 nm)表明,在150 K下照射RC复合物会诱导P680的主要氧化,同时伴随着类胡萝卜素和辅助叶绿素(Chl)的氧化。在250 K下照射还会特异性地漂白与RC复合物结合的两个β - 胡萝卜素分子中的一个,并且这样处理后的样品在随后150 K的照射下几乎不形成类胡萝卜素阳离子。使用这种部分缺乏类胡萝卜素的RC复合物在150 K下测量了P680⁺/P680 FTIR差示光谱(有少量Chl⁺/Chl污染)。该光谱显示出一个以约1940 cm⁻¹为中心的宽正带,这可归因于P680⁺的红外电子跃迁,类似于先前在各种细菌P⁺中观察到的跃迁。这一发现表明正电荷在P680⁺中的两个Chl分子上离域(或在它们之间跳跃)。与细菌带相比,该电子带的低强度可能有三种可能的解释:组成Chl分子之间的弱共振相互作用、P680⁺的不对称结构以及Chl种类的差异。将C = O伸缩区域(1600 - 1750 cm⁻¹)中的谱带与RC复合物的共振拉曼光谱进行比较解释。在1704和1679 cm⁻¹处的负峰被提议作为P680的酮基C9 = O带的候选峰。观察到这两个峰都与先前3P680/P680 FTIR光谱[Noguchi等人(1993年)《生物化学》32卷,7186 - 7195页]中1669 cm⁻¹处的主要酮基C9 = O带不一致,这导致了这样一种想法,即在低温下三重态迁移到与P680不同的一个Chl(称为ChlT)。基于这些结果,讨论了包括P680和ChlT在内的Chl分子的结构模型及其在阳离子、三重态和Qy单重态中的耦合。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验