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首页> 外文期刊>Journal of Plant Physiology >Water soluble chlorophyll binding protein of higher plants: a most suitable model system for basic analyses of pigment-pigment and pigment-protein interactions in chlorophyll protein complexes. (Special Issue: Regulation of plant primary metabolism.)
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Water soluble chlorophyll binding protein of higher plants: a most suitable model system for basic analyses of pigment-pigment and pigment-protein interactions in chlorophyll protein complexes. (Special Issue: Regulation of plant primary metabolism.)

机译:高等植物的水溶性叶绿素结合蛋白:最基本的模型系统,用于基本分析叶绿素蛋白质复合物中的色素-色素和色素-蛋白质相互作用。 (特刊:植物初级代谢的调控。)

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摘要

This short review paper describes spectroscopic studies on pigment-pigment and pigment-protein interactions of chlorophyll (Chl) a and b bound to the recombinant protein of class IIa water soluble chlorophyll protein (WSCP) from cauliflower. Two Chls form a strongly excitonically coupled open sandwich dimer within the tetrameric protein matrix. In marked contrast to the mode of excitonic coupling of Chl and bacterio-Chl molecules in light harvesting complexes and reaction centers of all photosynthetic organisms, the unique structural pigment array in the Chl dimer of WSCP gives rise to an upper excitonic state with a large oscillator strength. This property opens the way for thorough investigations on exciton relaxation processes in Chl-protein complexes. Lifetime measurements of excited singlet states show that the unusual stability towards photodamage of Chls bound to WSCP, which lack any protective carotenoid molecule, originates from a high diffusion barrier to interaction of molecular dioxygen with Chl triplets. Site selective spectroscopic methods provide a wealth of information on the interactions of the Chls with the protein matrix and on the vibronic structure of the pigments. The presented data and discussions illustrate the great potential of WSCP as a model system for systematic experimental and theoretical studies on the functionalizing of Chls by the protein matrix. It opens the way for further detailed analyses and a deeper understanding of the properties of pigment protein complexes.
机译:这篇简短的综述文章描述了与IIa类水溶性叶绿素蛋白的重组蛋白结合的叶绿素(Chl)a和i的色素-色素和色素-蛋白质相互作用的光谱学研究(WSCP)来自花椰菜。两个Chls在四聚体蛋白基质内形成强激子耦合的开放三明治二聚体。与所有光合生物的光收集复合体和反应中心中Chl和细菌-Chl分子的激子偶联模式形成鲜明对比的是,WSCP Chl二聚体中独特的结构性颜料阵列产生了具有大振动子的上激子态强度。该特性为彻底研究Chl-蛋白质复合物中的激子弛豫过程开辟了道路。激发单重态的终生测量结果表明,与WSCP结合的Chls对光损伤的异常稳定性缺乏任何保护性类胡萝卜素分子,其起因于分子双氧与Chl三联体相互作用的高扩散障碍。定点光谱法提供了大量有关Chls与蛋白质基质的相互作用以及色素的玻纤结构的信息。所提供的数据和讨论说明了WSCP作为模型系统的巨大潜力,该模型系统可用于通过蛋白基质对Chls进行功能化的系统实验和理论研究。它为进一步进行详细分析和更深入地了解色素蛋白复合物的性质开辟了道路。

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