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采用表面等离激元场增强荧光光谱(SPFS)研究固载化光捕获叶绿素 a/b 复合物(LHCII)之间的能量转移。

Energy transfer between surface-immobilized light-harvesting chlorophyll a/b complex (LHCII) studied by surface plasmon field-enhanced fluorescence spectroscopy (SPFS).

机构信息

Institut für Allgemeine Botanik der Johannes-Gutenberg Universität, Müllerweg 6, 55099 Mainz, Germany.

出版信息

Langmuir. 2010 Nov 16;26(22):17315-21. doi: 10.1021/la102525b. Epub 2010 Oct 21.

Abstract

The major light-harvesting chlorophyll a/b complex (LHCII) of the photosynthetic apparatus in green plants can be viewed as a protein scaffold binding and positioning a large number of pigment molecules that combines rapid and efficient excitation energy transfer with effective protection of its pigments from photobleaching. These properties make LHCII potentially interesting as a light harvester (or a model thereof) in photoelectronic applications. Most of such applications would require the LHCII to be immobilized on a solid surface. In a previous study we showed the immobilization of recombinant LHCII on functionalized gold surfaces via a 6-histidine tag (His tag) in the protein moiety. In this work the occurrence and efficiency of Förster energy transfer between immobilized LHCII on a functionalized surface have been analyzed by surface plasmon field-enhanced fluorescence spectroscopy (SPFS). A near-infrared dye was attached to some but not all of the LHC complexes, serving as an energy acceptor to chlorophylls. Analysis of the energy transfer from chlorophylls to this acceptor dye yielded information about the extent of intercomplex energy transfer between immobilized LHCII.

摘要

类囊体膜中的主要捕光叶绿素 a/b 复合蛋白(LHCII)可以被看作是一个结合和定位大量色素分子的蛋白质支架,它将快速有效的激发能量转移与有效保护色素分子免于光漂白结合在一起。这些特性使得 LHCII 有可能成为光电应用中的光收集器(或其模型)。大多数此类应用都需要将 LHCII 固定在固体表面上。在之前的研究中,我们通过蛋白质部分中的 6 个组氨酸标签(His 标签)展示了重组 LHCII 在功能化金表面上的固定。在这项工作中,通过表面等离子体场增强荧光光谱(SPFS)分析了固定在功能化表面上的 LHCII 之间Förster 能量转移的发生和效率。将一个近红外染料附着在一些但不是所有的 LHC 复合物上,作为叶绿素的能量受体。从叶绿素到这个受体染料的能量转移分析提供了关于固定化 LHCII 之间的复合物间能量转移程度的信息。

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