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原位电化学氧化对球形红细菌601光捕获复合物中色素-蛋白质排列及能量转移的影响

Effect of the in situ electrochemical oxidation on the pigment-protein arrangement and energy transfer in light-harvesting complex from Rhodobacter sphaeroides 601.

作者信息

Liu Weimin, Lu Yidong, Liu Yuan, Liu Kangjun, Yan Yongli, Kong Jilie, Xu Chunhe, Qian Shixiong

机构信息

Physics Department, Fudan University, Shanghai 200433, China.

出版信息

Biochem Biophys Res Commun. 2006 Feb 10;340(2):505-11. doi: 10.1016/j.bbrc.2005.12.034. Epub 2005 Dec 19.

Abstract

The oxidation of bacteriochlorophylls (BChls) in peripheral light-harvesting complexes (LH2) from Rhodobacter sphaeroides was investigated by spectroelectrochemistry of absorption, fluorescence emission, and femtosecond (fs) pump-probe, with the aim obtaining information about the effect of in situ electrochemical oxidation on the pigment-protein arrangement and energy transfer within LH2. The experimental results revealed that: (a) the generation of the BChl radical cation in both B800 and B850 rings dramatically induced bleaching of the characteristic absorption in the NIR region and quenching of the fluorescence emission from the B850 ring for the electrochemical oxidized LH2; (b) the BChl-B850 radical cation might act as an additional channel to compete with the unoxidized BChl-B850 molecules for rapidly releasing the excitation energy, however the B800-B850 energy transfer rate remained almost unchanged during the oxidation process.

摘要

利用吸收光谱电化学、荧光发射光谱电化学和飞秒(fs)泵浦-探测技术,研究了球形红杆菌外周光捕获复合物(LH2)中细菌叶绿素(BChls)的氧化过程,旨在获取关于原位电化学氧化对LH2内色素-蛋白质排列和能量转移影响的信息。实验结果表明:(a)B800和B850环中BChl自由基阳离子的生成显著诱导了电化学氧化LH2在近红外区域特征吸收的漂白以及B850环荧光发射的猝灭;(b)BChl-B850自由基阳离子可能作为一个额外的通道,与未氧化的BChl-B850分子竞争快速释放激发能,然而在氧化过程中B800-B850能量转移速率几乎保持不变。

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