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光捕获复合体Lhca4中激子态与电荷转移态的混合

Mixing of exciton and charge-transfer states in light-harvesting complex Lhca4.

作者信息

Novoderezhkin Vladimir I, Croce Roberta, Wahadoszamen Md, Polukhina Iryna, Romero Elisabet, van Grondelle Rienk

机构信息

A. N. Belozersky Institute of Physico-Chemical Biology, Moscow State University, Leninskie Gory, 119992, Moscow, Russia.

出版信息

Phys Chem Chem Phys. 2016 Jul 28;18(28):19368-77. doi: 10.1039/c6cp02225a. Epub 2016 Jul 4.

Abstract

Lhca4 is one of the peripheral antennae of higher plant photosystem I and it is characterized by the presence of chlorophyll a with absorption and emission bands around 30 nm red-shifted compared to those of the other chlorophylls associated with plant complexes. In this work we have investigated the origin of this red shift by using the recent structure of Lhca4 (Qin et al., Science, 2015, 348, 989) to build an exciton model that includes a charge-transfer (CT) state mixed with the excited-state manifold. A simultaneous quantitative fit of absorption, linear dichroism, fluorescence, and Stark absorption spectra of the wild-type Lhca4 and NH mutant (where the sites involved in CT are affected) enables us to determine the origin of the CT state and explore its spectral signatures. A huge borrowing of dipole strength by the CT, accompanied by anomalous broadening and red-shifting of the fluorescence as well as dramatic changes in the Stark spectrum, can be accounted for by a model implying an exciton-type mixing between excited states and CT states.

摘要

Lhca4是高等植物光系统I的外周天线之一,其特征在于存在叶绿素a,与植物复合物中其他叶绿素相比,其吸收带和发射带红移约30nm。在这项工作中,我们利用Lhca4的最新结构(Qin等人,《科学》,2015年,348卷,989页)构建了一个包含与激发态流形混合的电荷转移(CT)态的激子模型,来研究这种红移的起源。对野生型Lhca4和NH突变体(其中参与CT的位点受到影响)的吸收光谱、线性二色性光谱、荧光光谱和斯塔克吸收光谱进行同时定量拟合,使我们能够确定CT态的起源并探索其光谱特征。CT对偶极强度的巨大借用,伴随着荧光的异常展宽和红移以及斯塔克光谱的显著变化,可以用一个暗示激发态和CT态之间激子型混合的模型来解释。

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