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来自花椰菜的重组水溶性叶绿素蛋白(WSCP)中的色素-色素及色素-蛋白质相互作用

Pigment-pigment and pigment-protein interactions in recombinant water-soluble chlorophyll proteins (WSCP) from cauliflower.

作者信息

Theiss C, Trostmann I, Andree S, Schmitt F J, Renger T, Eichler H J, Paulsen H, Renger G

机构信息

Institute of Optics, Technical University Berlin, Berlin, Germany.

出版信息

J Phys Chem B. 2007 Nov 22;111(46):13325-35. doi: 10.1021/jp0723968. Epub 2007 Nov 2.

Abstract

Plants contain water-soluble chlorophyll-binding proteins (WSCPs) that function neither as antennas nor as components of light-induced electron transfer of photosynthesis but are likely constituents of regulatory protective pathways in particular under stress conditions. This study presents results on the spectroscopic properties of recombinant WSCP from cauliflower reconstituted with chlorophyll b (Chl b) alone or with mixtures of Chl a and Chl b. Two types of experiments were performed: (a) measurements of stationary absorption spectra at 77 and 298 K and CD spectra at 298 K and (b) monitoring of laser flash-induced transient absorption changes with a resolution of 200 fs in the time domain of up to 100 ps. On the basis of a theoretical analysis outlined by Renger et al. (J. Phys. Chem. B 2007, 111, 10487) the data obtained in part (a) are interpreted within a model where tetrameric WSCP binds predominantly two Chl molecules in the form of an excitonically coupled "open sandwich" dimer with a tilt angle of about 30 degrees between the chlorin planes. The time-resolved measurements on Chl a/Chl b heterodimers are described by two exponential kinetics with time constants of 400 fs and 7 ps. These kinetics are assumed to reflect a heterogeneous population of WSCPs with Chl dimers either in excitonic coupled "open sandwich" or weakly coupled geometric arrays. The 400 fs component is assigned to excited-state relaxations from the upper to the lower excitonic level of the strongly coupled "open sandwich" dimer, while the 7-8 ps component probably indicates excitation energy transfer from 1Chl b* to Chl a in a dimer array with weak coupling due to significantly longer mutual distances between the chlorin rings.

摘要

植物中含有水溶性叶绿素结合蛋白(WSCPs),其既不作为天线发挥作用,也不是光合作用光诱导电子转移的组成部分,但很可能是调节保护途径的成分,尤其是在胁迫条件下。本研究展示了用单独的叶绿素b(Chl b)或叶绿素a与叶绿素b的混合物重构的来自花椰菜的重组WSCP的光谱特性结果。进行了两类实验:(a)在77 K和298 K下测量稳态吸收光谱以及在298 K下测量圆二色光谱,(b)在高达100 ps的时域内以200 fs的分辨率监测激光闪光诱导的瞬态吸收变化。基于伦格等人概述的理论分析(《物理化学杂志B》2007年,第111卷,10487页),部分(a)中获得的数据在一个模型中进行解释,该模型中四聚体WSCP主要以激子耦合的“开放三明治”二聚体形式结合两个叶绿素分子,二氢卟吩平面之间的倾斜角约为30度。对叶绿素a/叶绿素b异二聚体的时间分辨测量由具有400 fs和7 ps时间常数的两个指数动力学描述。这些动力学被认为反映了具有激子耦合“开放三明治”或弱耦合几何阵列的叶绿素二聚体的WSCPs的异质群体。400 fs成分归因于从强耦合“开放三明治”二聚体的较高激子能级到较低激子能级的激发态弛豫,而7 - 8 ps成分可能表明由于二氢卟吩环之间的相互距离显著更长,在弱耦合的二聚体阵列中激发能从1Chl b*转移到叶绿素a。

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