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莱茵衣藻中LHCBM4/6/8天线蛋白的功能。

The function of LHCBM4/6/8 antenna proteins in Chlamydomonas reinhardtii.

作者信息

Girolomoni Laura, Ferrante Paola, Berteotti Silvia, Giuliano Giovanni, Bassi Roberto, Ballottari Matteo

机构信息

Dipartimento di Biotecnologie, Università di Verona, Strada le Grazie 15, Verona, Italy.

Italian National Agency for New Technologies, Energy and Sustainable Development (ENEA), Casaccia Research Center, Rome, Italy.

出版信息

J Exp Bot. 2017 Jan 1;68(3):627-641. doi: 10.1093/jxb/erw462.

Abstract

In eukaryotic autotrophs, photosystems are composed of a core moiety, hosting charge separation and electron transport reactions, and an antenna system, enhancing light harvesting and photoprotection. In Chlamydomonas reinhardtii, the major antenna of PSII is a heterogeneous trimeric complex made up of LHCBM1-LHCBM9 subunits. Despite high similarity, specific functions have been reported for several members including LHCBM1, 2, 7, and 9. In this work, we analyzed the function of LHCBM4 and LHCBM6 gene products in vitro by synthesizing recombinant apoproteins from individual sequences and refolding them with pigments. Additionally, we characterized knock-down strains in vivo for LHCBM4/6/8 genes. We show that LHCBM4/6/8 subunits could be found as a component of PSII supercomplexes with different sizes, although the largest pool was free in the membranes and poorly connected to PSII. Impaired accumulation of LHCBM4/6/8 caused a decreased LHCII content per PSII and a reduction in the amplitude of state 1-state 2 transitions. In addition, the reduction of LHCBM4/6/8 subunits caused a significant reduction of the Non-photochemical quenching activity and in the level of photoprotection.

摘要

在真核自养生物中,光系统由一个核心部分和一个天线系统组成,核心部分负责电荷分离和电子传递反应,天线系统则增强光捕获和光保护。在莱茵衣藻中,PSII的主要天线是一种由LHCBM1-LHCBM9亚基组成的异源三聚体复合物。尽管具有高度相似性,但已报道了包括LHCBM1、2、7和9在内的几个成员的特定功能。在这项工作中,我们通过从单个序列合成重组脱辅基蛋白并将它们与色素重新折叠,在体外分析了LHCBM4和LHCBM6基因产物的功能。此外,我们在体内对LHCBM4/6/8基因的敲低菌株进行了表征。我们发现,LHCBM4/6/8亚基可以作为不同大小的PSII超复合物的一个组成部分被发现,尽管最大的部分是游离在膜中且与PSII的连接较差。LHCBM4/6/8积累受损导致每个PSII的LHCII含量降低以及状态1-状态2转变的幅度减小。此外,LHCBM4/6/8亚基的减少导致非光化学猝灭活性和光保护水平显著降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c93c/5441897/bdd5c5d179bd/erw46201.jpg

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