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细菌光合作用中的最初皮秒——用于光能高效转化的超快电子转移

The first picoseconds in bacterial photosynthesis--ultrafast electron transfer for the efficient conversion of light energy.

作者信息

Zinth Wolfgang, Wachtveitl Josef

机构信息

Department für Physik, Ludwig-Maximilians-Universität München, Oettingenstr. 67, 80538 München, Germany.

出版信息

Chemphyschem. 2005 May;6(5):871-80. doi: 10.1002/cphc.200400458.

Abstract

In this Minireview, we describe the function of the bacterial reaction centre (RC) as the central photosynthetic energy-conversion unit by ultrafast spectroscopy combined with structural analysis, site-directed mutagenesis, pigment exchange and theoretical modelling. We show that primary energy conversion is a stepwise process in which an electron is transferred via neighbouring chromophores of the RC. A well-defined chromophore arrangement in a rigid protein matrix, combined with optimised energetics of the different electron carriers, allows a highly efficient charge-separation process. The individual molecular reactions at room temperature are well described by conventional electron-transfer theory.

摘要

在本综述中,我们通过超快光谱结合结构分析、定点诱变、色素交换和理论建模,描述了细菌反应中心(RC)作为光合作用核心能量转换单元的功能。我们表明,初级能量转换是一个逐步过程,其中电子通过反应中心相邻的发色团进行转移。在刚性蛋白质基质中定义明确的发色团排列,与不同电子载体的优化能量学相结合,实现了高效的电荷分离过程。传统的电子转移理论很好地描述了室温下的单个分子反应。

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