Skandary Sepideh, Müh Frank, Ashraf Imran, Ibrahim Mohamed, Metzger Michael, Zouni Athina, Meixner Alfred J, Brecht Marc
IPTC and LISA+ Center, University of Tübingen, Tübingen, Germany.
Phys Chem Chem Phys. 2017 May 24;19(20):13189-13194. doi: 10.1039/c6cp07748j.
The fluorescence of monomeric photosystem II core complexes (mPSIIcc) of the cyanobacterium Thermosynechococcus elongatus, originating from redissolved crystals, is investigated by using single-molecule spectroscopy (SMS) at 1.6 K. The emission spectra of individual mPSIIcc are dominated by sharp zero-phonon lines, showing the existence of different emitters compatible with the F685, F689, and F695 bands reported formerly. The intensity of F695 is reduced in single mPSIIcc as compared to single PSIIcc-dimers (dPSIIcc). Crystal structures show that one of the β-carotene (β-Car) cofactors located at the monomer-monomer interface in dPSIIcc is missing in mPSIIcc. This β-Car in dPSIIcc is in van der Waals distance to chlorophyll (Chl) 17 in the CP47 subunit. We suggest that this Chl contributes to the F695 emitter. A loss of β-Car cofactors in mPSIIcc preparations will lead to an increased lifetime of the triplet state of Chl 17, which can explain the reduced singlet emission of F695 as observed in SMS.
利用单分子光谱法(SMS)在1.6 K下研究了源自再溶解晶体的嗜热栖热放线菌单体光系统II核心复合物(mPSIIcc)的荧光。单个mPSIIcc的发射光谱以尖锐的零声子线为主,表明存在与先前报道的F685、F689和F695波段兼容的不同发射体。与单个PSIIcc二聚体(dPSIIcc)相比,单个mPSIIcc中F695的强度降低。晶体结构表明,mPSIIcc中缺少位于dPSIIcc单体-单体界面的一个β-胡萝卜素(β-Car)辅因子。dPSIIcc中的这种β-Car与CP47亚基中的叶绿素(Chl)17处于范德华距离。我们认为这种Chl对F695发射体有贡献。mPSIIcc制剂中β-Car辅因子的缺失将导致Chl 17三重态寿命增加,这可以解释在SMS中观察到的F695单重态发射减少的现象。