首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Direct energy transfer from the major antenna to the photosystem II core complexes in the absence of minor antennae in liposomes
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Direct energy transfer from the major antenna to the photosystem II core complexes in the absence of minor antennae in liposomes

机译:在脂质体中没有次要天线的情况下,从主要天线到光系统II核心复合物的直接能量转移

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摘要

Minor antennae of photosystem (PS) II, located between the PSII core complex and the major antenna (LHCII), are important components for the structural and functional integrity of PSII supercomplexes. In order to study the functional significance of minor antennae in the energetic coupling between LHCII and the PSII core, characteristics of PSII-LHCII proteoliposomes, with or without minor antennae, were investigated. Two types of PSII preparations containing different antenna compositions were isolated from pea: 1) the PSII preparation composed of the PSII core complex, all of the minor antennae, and a small amount of major antennae (MCC); and 2) the purified PSII dimeric core complexes without periphery antenna (CC). They were incorporated, together with LHCII, into liposomes composed of thylakoid membrane lipids. The spectroscopic and functional characteristics were measured. 77 K fluorescence emission spectra revealed an increased spectral weight of fluorescence from PSII reaction center in the CC-LHCII proteoliposomes, implying energetic coupling between LHCII and CC in the koteoliposomes lacking minor antennae. This result was further confirmed by chlorophyll a fluorescence induction kinetics. The incorporation of LHCII together with CC markedly increased the antenna cross-section of the PSII core complex. The 2,6-dichlorophenolindophenol photoreduction measurement implied that the lack of minor antennae in PSII supercomplexes did not block the energy transfer from LHCII to the PSII core complex. In conclusion, it is possible, in liposomes, that LHCII transfer energy directly to the PSII core complex, in the absence of minor antennae. (C) 2014 Elsevier B.V. All rights reserved.
机译:位于PSII核心复合体和主要天线(LHCII)之间的光系统II(PS)的副天线是PSII超复合体结构和功能完整性的重要组成部分。为了研究小触角在LHCII和PSII核之间的能量耦合中的功能意义,研究了有或没有小触角的PSII-LHCII蛋白脂质体的特性。从豌豆中分离出两种包含不同天线组成的PSII制剂:1)由PSII核心复合物,所有次要触角和少量主要触角(MCC)组成的PSII制备物; 2)没有外围天线(CC)的纯化的PSII二聚核心复合物。它们与LHCII一起掺入类囊体膜脂质组成的脂质体中。测量了光谱和功能特性。 77 K荧光发射光谱显示CC-LHCII蛋白脂质体中PSII反应中心发出的荧光的光谱权重增加,这意味着LHCII与CC之间的能量耦合不存在较小触角的脂质体。叶绿素a荧光诱导动力学进一步证实了这一结果。 LHCII与CC的结合显着增加了PSII核心复合体的天线截面。 2,6-二氯苯酚吲哚酚的光还原测量表明,PSII超复合物中缺乏次要触角并没有阻止能量从LHCII转移到PSII核心复合物中。总之,在脂质体中,LHCII可能在没有较小触角的情况下直接将能量转移至PSII核心复合物。 (C)2014 Elsevier B.V.保留所有权利。

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