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对光系统II捕光复合体的剖析:高等植物光合作用主要三聚体天线复合体中Lhcb1-3复合体的差异分析

A look within LHCII: differential analysis of the Lhcb1-3 complexes building the major trimeric antenna complex of higher-plant photosynthesis.

作者信息

Caffarri Stefano, Croce Roberta, Cattivelli Luigi, Bassi Roberto

机构信息

Dipartimento Scientifico e Tecnologico, Università di Verona, Strada Le Grazie 15, 37134 Verona, Italy.

出版信息

Biochemistry. 2004 Jul 27;43(29):9467-76. doi: 10.1021/bi036265i.

Abstract

The major antenna complex of higher-plant photosynthesis, LHCII, is composed by the products of three genes, namely, Lhcb1-2-3. In this paper, the biochemical and spectroscopic properties of each of the three gene products were investigated. The three complexes were obtained by overexpression of the apoproteins in bacteria and refolding in vitro with purified pigments, thus allowing detection of differences in the structure/function of the pigment-binding gene products. The analyses showed that Lhcb1 and Lhcb2 complexes have similar pigment binding properties, although not identical, while Lhcb3 is clearly different with respect to both pigment binding and spectral properties and cannot produce homotrimers in vitro. Heterotrimers containing Lhcb3 together with Lhcb1 and/or -2 proteins were obtained upon assembly with Lhcb proteins purified from thylakoids. The major functional characteristics of Lhcb3 with respect to Lhcb1 and -2 consisted in (i) a red-shift of one specific chlorophyll a chromophore, strongly affecting the red-most region of the absorption spectrum and (ii) a different specificity for xanthophylls binding to sites L2 and N1. These properties make Lhcb3 a relative sink for excitation energy in isolated heterotrimers with Lhcb1 + Lhcb2, and potentially, a preferential site of regulation of the antenna function in excess light conditions.

摘要

高等植物光合作用的主要天线复合体LHCII由三个基因(即Lhcb1 - 2 - 3)的产物组成。本文研究了这三个基因产物各自的生化和光谱特性。通过在细菌中过表达脱辅基蛋白并在体外与纯化的色素重折叠来获得这三种复合体,从而能够检测色素结合基因产物在结构/功能上的差异。分析表明,Lhcb1和Lhcb2复合体具有相似的色素结合特性,虽不完全相同,但Lhcb3在色素结合和光谱特性方面明显不同,且在体外不能形成同三聚体。与从类囊体中纯化的Lhcb蛋白组装后,可获得包含Lhcb3以及Lhcb1和/或 - 2蛋白的异三聚体。Lhcb3相对于Lhcb1和 - 2的主要功能特性在于:(i)一个特定叶绿素a发色团的红移,强烈影响吸收光谱的最红区域;(ii)叶黄素与L2和N1位点结合的特异性不同。这些特性使Lhcb3在与Lhcb1 + Lhcb2形成的分离异三聚体中成为激发能的相对汇聚点,并有可能在过量光照条件下成为天线功能调节的优先位点。

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