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光捕获复合体II色素和蛋白质与Cbr相关联,Cbr是单细胞绿藻杜氏盐藻中高等植物早期光诱导蛋白的同源物。

Light-harvesting complex II pigments and proteins in association with Cbr, a homolog of higher-plant early light-inducible proteins in the unicellular green alga Dunaliella.

作者信息

Banet G, Pick U, Zamir A

机构信息

Department of Biological Chemistry, Weizmann Institute of Science, Rehovot, Israel.

出版信息

Planta. 2000 May;210(6):947-55. doi: 10.1007/s004250050702.

DOI:10.1007/s004250050702
PMID:10872227
Abstract

Like higher plants, unicellular green algae of the genus Dunaliella respond to light stress by enhanced de-epoxidation of violaxanthin and accumulation of Cbr, a protein homologous to early light-inducible proteins (Elips) in plants. Earlier studies indicated that Cbr was associated with the light-harvesting complex of photosystem II (LHCII) and suggested it acted as a zeaxanthin-binding protein and fulfilled a photo-protective function (Levy et al. 1993, J. Biol. Chem. 268: 20892-20896). To characterize the protein-pigment subcomplexes containing Cbr in greater detail than attained so far, thylakoid membranes from Dunaliella salina grown in high light or normal light were solubilized with dodecyl maltoside and fractionated by isoelectric-focusing. Analysis of the resolved LHCII subcomplexes indicated preferred associations among the four LHCIIb polypeptides and between them and Cbr: subcomplexes including Cbr contained one or two of the more acidic of the four LHCIIb polypeptides as well as large amounts of lutein and zeaxanthin relative to chlorophyll a/b. After sucrose gradient centrifugation, Cbr free of LHCIIb polypeptides was detected together with released pigments; this Cbr possibly originated in subcomplexes dissociated in the course of the analysis. These results agree with the conclusion that Cbr is part of the network of LHCIIb protein-pigment complexes and suggest that the role played by Cbr involves the organization and/or stabilization of assemblies highly enriched in zeaxanthin and lutein. Such assemblies may function to protect PSII from photodamage due to overexcitation.

摘要

与高等植物一样,杜氏盐藻属的单细胞绿藻通过增强紫黄质的脱环氧化作用以及积累Cbr(一种与植物早期光诱导蛋白(Elips)同源的蛋白质)来应对光胁迫。早期研究表明,Cbr与光系统II(LHCII)的捕光复合体相关,并表明它作为一种玉米黄质结合蛋白发挥作用并具有光保护功能(Levy等人,1993年,《生物化学杂志》268:20892 - 20896)。为了比迄今为止更详细地表征含有Cbr的蛋白质 - 色素亚复合体,用十二烷基麦芽糖苷溶解在高光或正常光照下生长的杜氏盐藻的类囊体膜,并通过等电聚焦进行分级分离。对分离出的LHCII亚复合体的分析表明,四种LHCIIb多肽之间以及它们与Cbr之间存在优先结合:包含Cbr的亚复合体含有四种LHCIIb多肽中酸性较强的一种或两种,以及相对于叶绿素a/b大量的叶黄素和玉米黄质。经过蔗糖梯度离心后,检测到不含LHCIIb多肽的Cbr以及释放的色素;这种Cbr可能起源于分析过程中解离的亚复合体。这些结果与Cbr是LHCIIb蛋白质 - 色素复合体网络的一部分这一结论一致,并表明Cbr所起的作用涉及高度富含玉米黄质和叶黄素的组装体的组织和/或稳定。这样的组装体可能起到保护PSII免受过度激发导致的光损伤的作用。

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