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On the Exciton Coupling between Two Chlorophyll Pigments in the Absence of a Protein Environment: Intrinsic Effects Revealed by Theory and Experiment

机译:在蛋白质环境中两种叶绿素色素之间的激子耦合:理论和实验揭示的内在作用

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摘要

Exciton coupling between two or more chlorophyll (Chl) pigments is a key mechanism associated with the color tuning of photosynthetic proteins but it is difficult to disentangle this effect from shifts that are due to the protein microenvironment. Herein, we report the formation of the simplest coupled system, the Chl a dimer, tagged with a quaternary ammonium ion by electrospray ionization. Based on action spectroscopic studies in vacuo, the dimer complexes were found to absorb 50–70 meV to the red of the monomers under the same conditions. First-principles calculations predict shifts that somewhat depend on the relative orientation of the two Chl units, namely 50 and 30 meV for structures where the Chl rings are stacked and unstacked, respectively. Our work demonstrates that Chl association alone can produce a large portion of the color shift observed in photosynthetic macromolecular assemblies.
机译:两种或多种叶绿素(Chl)颜料之间的激子偶联是与光合蛋白颜色调节相关的关键机制,但很难将这种影响与由于蛋白质微环境而引起的变化区分开。在本文中,我们报告了最简单的偶联系统Chl a二聚体的形成,该二聚体通过电喷雾电离标记有季铵离子。根据真空中的作用光谱研究,发现在相同条件下,二聚体络合物吸收50-70 meV的红色单体。第一性原理计算预测的偏移在某种程度上取决于两个Chl单元的相对方向,即对于分别堆叠和未堆叠Chl环的结构,其位移分别为50和30 meV。我们的工作表明,单独的Chl缔合可产生光合作用大分子组装物中观察到的大部分色移。

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