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用分离出的α和β多肽、细菌叶绿素α和类胡萝卜素对球形红杆菌和深红红螺菌的细菌核心光捕获复合物进行重组。

Reconstitution of the bacterial core light-harvesting complexes of Rhodobacter sphaeroides and Rhodospirillum rubrum with isolated alpha- and beta-polypeptides, bacteriochlorophyll alpha, and carotenoid.

作者信息

Davis C M, Bustamante P L, Loach P A

机构信息

Department of Biochemistry, Molecular Biology, and Cell Biology, Northwestern University, Evanston, Illinois 60208-3500.

出版信息

J Biol Chem. 1995 Mar 17;270(11):5793-804. doi: 10.1074/jbc.270.11.5793.

Abstract

Methodology has been developed to reconstitute carotenoids and bacteriochlorophyll alpha with isolated light-harvesting complex I (LHI) polypeptides of both Rhodobacter sphaeroides and Rhodospirillum rubrum. Reconstitution techniques first developed in this laboratory using the LHI polypeptides of R. rubrum, R. sphaeroides, and Rhodobacter capsulatus reproduced bacteriochlorophyll alpha spectral properties characteristic of LHI complexes lacking carotenoids. In this study, carotenoids are supplied either as organic-solvent extracts of chromatophores or as thin-layer chromatography or high performance liquid chromatography-purified species. The resulting LHI complexes exhibit carotenoid and bacteriochlorophyll a spectral properties characteristic of native LHI complexes of carotenoid-containing bacteria. Absorption and circular dichroism spectra support the attainment of a native-like carotenoid environment in the reconstituted LHI complexes. For both R. sphaeroides- and R. rubrum-reconstituted systems, fluorescence excitation spectra reveal appropriate carotenoid to bacteriochlorophyll alpha energy-transfer efficiencies based on comparisons with the in vivo systems. In the case of R. rubrum reconstitutions, carotenoids afford protection from photodynamic degradation. Thus, carotenoids reconstituted into LHI exhibit spectral and functional characteristics associated with native pigments. Heterologous reconstitutions demonstrate the applicability of the developed assay in dissecting the molecular environment of carotenoids in light-harvesting complexes.

摘要

已经开发出一种方法,用于用球形红杆菌和深红红螺菌的分离的光捕获复合体I(LHI)多肽来重构类胡萝卜素和细菌叶绿素α。本实验室首次使用深红红螺菌、球形红杆菌和荚膜红杆菌的LHI多肽开发的重构技术,再现了缺乏类胡萝卜素的LHI复合体所特有的细菌叶绿素α光谱特性。在本研究中,类胡萝卜素既可以作为载色体的有机溶剂提取物提供,也可以作为薄层色谱或高效液相色谱纯化的物质提供。所得的LHI复合体表现出含类胡萝卜素细菌天然LHI复合体所特有的类胡萝卜素和细菌叶绿素a光谱特性。吸收光谱和圆二色光谱支持在重构的LHI复合体中获得类似天然的类胡萝卜素环境。对于球形红杆菌和深红红螺菌重构系统,荧光激发光谱显示,与体内系统相比,类胡萝卜素与细菌叶绿素α的能量转移效率合适。在深红红螺菌重构的情况下,类胡萝卜素可防止光动力降解。因此,重构到LHI中的类胡萝卜素表现出与天然色素相关的光谱和功能特性。异源重构证明了所开发的分析方法在剖析光捕获复合体中类胡萝卜素分子环境方面的适用性。

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