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Mechanisms of photoprotection and nonphotochemical quenching in pea light-harvesting complex at 2.5 Å resolution

机译:2.5Å分辨率下豌豆采光复合物的光保护和非光化学猝灭机理

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摘要

The plant light-harvesting complex of photosystem II (LHC-II) collects and transmits solar energy for photosynthesis in chloroplast membranes and has essential roles in regulation of photosynthesis and in photoprotection. The 2.5 Å structure of pea LHC-II determined by X-ray crystallography of stacked two-dimensional crystals shows how membranes interact to form chloroplast grana, and reveals the mutual arrangement of 42 chlorophylls a and b, 12 carotenoids and six lipids in the LHC-II trimer. Spectral assignment of individual chlorophylls indicates the flow of energy in the complex and the mechanism of photoprotection in two close chlorophyll a–lutein pairs. We propose a simple mechanism for the xanthophyll-related, slow component of nonphotochemical quenching in LHC-II, by which excess energy is transferred to a zeaxanthin replacing violaxanthin in its binding site, and dissipated as heat. Our structure shows the complex in a quenched state, which may be relevant for the rapid, pH-induced component of nonphotochemical quenching.
机译:光系统II(LHC-II)的植物光收集复合物收集并传输太阳能以用于叶绿体膜中的光合作用,并且在调节光合作用和光保护中具有重要作用。通过堆叠二维晶体的X射线晶体学测定,豌豆LHC-II的2.5Å结构表明膜如何相互作用形成叶绿体颗粒,并揭示LHC中42个叶绿素a和b,12个类胡萝卜素和6个脂质的相互排列-II三聚体。单个叶绿素的光谱分配表明了复合物中的能量流以及两个紧密的叶绿素α-叶黄素对的光保护机理。我们提出了一种简单的机制,用于LHC-II中与叶黄素相关的非光化学猝灭的慢速组件,通过该机制,多余的能量被转移至玉米黄质,并在其结合位点取代了紫黄质,并以热量消散。我们的结构显示了处于猝灭状态的复合物,这可能与非光化学猝灭的快速,pH诱导成分有关。

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