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来自蓝藻集胞藻PCC 6803和嗜热栖热菌的光系统I的红色天线状态:单复合物光谱学和光谱烧孔研究

Red antenna states of photosystem I from cyanobacteria Synechocystis PCC 6803 and Thermosynechococcus elongatus: single-complex spectroscopy and spectral hole-burning study.

作者信息

Riley Kerry J, Reinot Tõnu, Jankowiak Ryszard, Fromme Petra, Zazubovich Valter

机构信息

Department of Chemistry, Iowa State University, Ames, Iowa 50011, USA.

出版信息

J Phys Chem B. 2007 Jan 11;111(1):286-92. doi: 10.1021/jp062664m.

Abstract

Hole-burning and single photosynthetic complex spectroscopy were used to study the excitonic structure and excitation energy-transfer processes of cyanobacterial trimeric Photosystem I (PS I) complexes from Synechocystis PCC 6803 and Thermosynechococcus elongatus at low temperatures. It was shown that individual PS I complexes of Synechocystis PCC 6803 (which have two red antenna states, i.e., C706 and C714) reveal only a broad structureless fluorescence band with a maximum near 720 nm, indicating strong electron-phonon coupling for the lowest energy C714 red state. The absence of zero-phonon lines (ZPLs) belonging to the C706 red state in the emission spectra of individual PS I complexes from Synechocystis PCC 6803 suggests that the C706 and C714 red antenna states of Synechocystis PCC 6803 are connected by efficient energy transfer with a characteristic transfer time of approximately 5 ps. This finding is in agreement with spectral hole-burning data obtained for bulk samples of Synechocystis PCC 6803. The importance of comparing the results of ensemble (spectral hole burning) and single-complex measurements was demonstrated. The presence of narrow ZPLs near 710 nm in addition to the broad fluorescence band at approximately 730 nm in Thermosynechococcus elongatus (Jelezko et al. J. Phys. Chem. B 2000, 104, 8093-8096) has been confirmed. We also demonstrate that high-quality samples obtained by dissolving crystals of PS I of Thermosynechococcus elongatus exhibit stronger absorption in the red antenna region than any samples studied so far by us and other groups.

摘要

采用空穴烧蚀和单光合复合物光谱技术,在低温下研究了来自集胞藻PCC 6803和嗜热栖热菌的蓝藻三聚体光系统I(PS I)复合物的激子结构和激发能量转移过程。结果表明,集胞藻PCC 6803的单个PS I复合物(具有两种红色天线状态,即C706和C714)仅显示出一个宽的无结构荧光带,其最大值在720 nm附近,这表明最低能量的C714红色状态存在强电子-声子耦合。集胞藻PCC 6803单个PS I复合物发射光谱中不存在属于C706红色状态的零声子线(ZPL),这表明集胞藻PCC 6803的C706和C714红色天线状态通过高效能量转移相连,特征转移时间约为5 ps。这一发现与集胞藻PCC 6803大量样品的光谱空穴烧蚀数据一致。证明了比较整体(光谱空穴烧蚀)和单复合物测量结果的重要性。嗜热栖热菌中除了在约730 nm处有宽荧光带外,在710 nm附近还存在窄ZPL,这一点已得到证实(Jelezko等人,《物理化学杂志B》2000年,104卷,8093 - 8096页)。我们还证明,通过溶解嗜热栖热菌PS I晶体获得的高质量样品在红色天线区域的吸收比我们和其他团队迄今研究的任何样品都更强。

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