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使用低离子强度天然绿色凝胶系统解析16至20种叶绿素-蛋白质复合物。

Resolution of 16 to 20 chlorophyll-protein complexes using a low ionic strength native green gel system.

作者信息

Allen K D, Staehelin L A

机构信息

Department of Molecular, Cellular and Developmental Biology, University of Colorado, Boulder 80309.

出版信息

Anal Biochem. 1991 Apr;194(1):214-22. doi: 10.1016/0003-2697(91)90170-x.

Abstract

Conventional native "green gel" systems resolve at most 10 chlorophyll-protein complexes from thylakoid membranes of higher plants and green algae. Such analyses suggest a simplicity of the thylakoid membrane that is not supported by a growing body of evidence on the heterogeneity of photosystems I and II (PSI and PSII) and their associated antennae (LHCI and LHCII). We report here the development and characterization of a low ionic strength native "green gel" system that resolves from 16 to 20, mostly large chlorophyll-protein complexes from a variety of higher plant and green algal species with very little release of free pigment. In Chlamydomonas, this system resolves multiple PSI-LHCI complexes, multiple PSII-LHCII complexes, four oligomeric LHCII complexes, as well as several low electrophoretic mobility reaction center complexes, and a number of small complexes. We have obtained similar resolution with a large number of higher plant and green algal species. We also demonstrate how this system can be used as a sort of "fingerprinting" technique to distinguish thylakoids of different species, and for the analysis of photosynthetic mutants, using the chlorophyll b-less chlorina f2 mutant of barley as an example.

摘要

传统的天然“绿色凝胶”系统最多只能从高等植物和绿藻的类囊体膜中分离出10种叶绿素-蛋白复合物。此类分析表明类囊体膜结构简单,但越来越多关于光系统I和II(PSI和PSII)及其相关天线(LHCI和LHCII)异质性的证据并不支持这一观点。我们在此报告了一种低离子强度天然“绿色凝胶”系统的开发与特性,该系统可从多种高等植物和绿藻物种中分离出16至20种,大部分为大型叶绿素-蛋白复合物,且几乎没有游离色素释放。在衣藻中,该系统可分离出多种PSI-LHCI复合物、多种PSII-LHCII复合物、四种寡聚LHCII复合物,以及几种低电泳迁移率的反应中心复合物和一些小复合物。我们用大量高等植物和绿藻物种都获得了类似的分辨率。我们还以大麦的叶绿素b缺失型绿变f2突变体为例,展示了该系统如何用作一种“指纹识别”技术来区分不同物种的类囊体,以及用于光合突变体的分析。

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