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类胡萝卜素几何异构体的超快时间分辨吸收光谱

Ultrafast Time-resolved Absorption Spectroscopy of Geometric Isomers of Carotenoids.

作者信息

Niedzwiedzki Dariusz M, Sandberg Daniel J, Cong Hong, Sandberg Megan N, Gibson George N, Birge Robert R, Frank Harry A

机构信息

Department of Chemistry, University of Connecticut, Storrs, CT 06269-3060, USA.

出版信息

Chem Phys. 2009 Feb 23;357(1-3):4-16. doi: 10.1016/j.chemphys.2008.07.011.

Abstract

The structures of a number of stereoisomers of carotenoids have been revealed in three-dimensional X-ray crystallographic investigations of pigment-protein complexes from photosynthetic organisms. Despite these structural elucidations, the reason for the presence of stereoisomers in these systems is not well understood. An important unresolved issue is whether the natural selection of geometric isomers of carotenoids in photosynthetic pigment-protein complexes is determined by the structure of the protein binding site or by the need for the organism to accomplish a specific physiological task. The association of cis isomers of a carotenoid with reaction centers and trans isomers of the same carotenoid with light-harvesting pigment-protein complexes has led to the hypothesis that the stereoisomers play distinctly different physiological roles. A systematic investigation of the photophysics and photochemistry of purified, stable geometric isomers of carotenoids is needed to understand if a relationship between stereochemistry and biological function exists. In this work we present a comparative study of the spectroscopy and excited state dynamics of cis and trans isomers of three different open-chain carotenoids in solution. The molecules are neurosporene (n=9), spheroidene (n=10), and spirilloxanthin (n=13), where n is the number of conjugated pi-electron double bonds. The spectroscopic experiments were carried out on geometric isomers of the carotenoids purified by high performance liquid chromatography (HPLC) and then frozen to 77 K to inhibit isomerization. The spectral data taken at 77 K provide a high resolution view of the spectroscopic differences between geometric isomers. The kinetic data reveal that the lifetime of the lowest excited singlet state of a cis-isomer is consistently shorter than that of its corresponding all-trans counterpart despite the fact that the excited state energy of the cis molecule is typically higher than that of the trans molecule. Quantum theoretical calculations on an n=9 linear polyene were carried out to examine this process. The calculations indicate that the electronic coupling terms are significantly higher for the cis isomer, and when combined with the Franck-Condon factors, predict internal conversion rates roughly double those of the all-trans species. The electronic effects more than offset the decrease in coupling efficiencies associated with the higher system origin energies and explain the observed shorter cis isomer lifetimes.

摘要

通过对光合生物色素 - 蛋白质复合物进行三维X射线晶体学研究,已揭示了多种类胡萝卜素立体异构体的结构。尽管有这些结构上的阐明,但对于这些体系中立体异构体存在的原因仍未完全理解。一个重要的未解决问题是,光合色素 - 蛋白质复合物中类胡萝卜素几何异构体的自然选择是由蛋白质结合位点的结构决定,还是由生物体完成特定生理任务的需求决定。一种类胡萝卜素的顺式异构体与反应中心的关联以及同一类胡萝卜素的反式异构体与捕光色素 - 蛋白质复合物的关联,导致了这样一种假说,即立体异构体发挥着截然不同的生理作用。需要对纯化的、稳定的类胡萝卜素几何异构体的光物理和光化学进行系统研究,以了解立体化学与生物学功能之间是否存在关系。在这项工作中,我们对溶液中三种不同开链类胡萝卜素的顺式和反式异构体的光谱学和激发态动力学进行了比较研究。这些分子是神经孢烯(n = 9)、球形烯(n = 10)和螺旋藻黄素(n = 13),其中n是共轭π电子双键的数量。光谱实验是对通过高效液相色谱(HPLC)纯化后再冷冻至77 K以抑制异构化的类胡萝卜素几何异构体进行的。在77 K下获取的光谱数据提供了几何异构体之间光谱差异的高分辨率视图。动力学数据表明,尽管顺式异构体的激发态能量通常高于反式异构体,但顺式异构体最低激发单重态的寿命始终短于其相应的全反式对应物。对n = 9的线性多烯进行了量子理论计算以研究此过程。计算表明,顺式异构体的电子耦合项显著更高,并且与弗兰克 - 康登因子相结合时,预测内部转换速率大约是全反式物种的两倍。电子效应足以抵消与较高体系起源能量相关的耦合效率下降,并解释了观察到的顺式异构体寿命较短的现象。

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