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Photoprotection in Plants Involves a Change in Lutein 1 Binding Domain in the Major Light-harvesting Complex of Photosystem II

机译:植物中的光保护作用涉及光系统II主要采光复合体中叶黄素1结合域的变化。

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摘要

Nonphotochemical quenching (NPQ) is the fundamental process by which plants exposed to high light intensities dissipate the potentially harmful excess energy as heat. Recently, it has been shown that efficient energy dissipation can be induced in the major light-harvesting complexes of photosystem II (LHCII) in the absence of protein-protein interactions. Spectroscopic measurements on these samples (LHCII gels) in the quenched state revealed specific alterations in the absorption and circular dichroism bands assigned to neoxanthin and lutein 1 molecules. In this work, we investigate the changes in conformation of the pigments involved in NPQ using resonance Raman spectroscopy. By selective excitation we show that, as well as the twisting of neoxanthin that has been reported previously, the lutein 1 pigment also undergoes a significant change in conformation when LHCII switches to the energy dissipative state. Selective two-photon excitation of carotenoid (Car) dark states (Car S1) performed on LHCII gels shows that the extent of electronic interactions between Car S1 and chlorophyll states correlates linearly with chlorophyll fluorescence quenching, as observed previously for isolated LHCII (aggregated versus trimeric) and whole plants (with versus without NPQ).
机译:非光化学猝灭(NPQ)是基本过程,通过该过程,暴露于高光强度的植物将潜在有害的多余能量散发为热量。最近,已经表明在不存在蛋白质-蛋白质相互作用的情况下,可以在光系统II(LHCII)的主要光收集复合物中诱导有效的能量消散。在淬灭状态下对这些样品(LHCII凝胶)的光谱测量显示,分配给新黄质和叶黄素1分子的吸收和圆二色性谱带发生了特定变化。在这项工作中,我们使用共振拉曼光谱研究了NPQ中涉及的颜料的构象变化。通过选择性激发,我们表明,以及先前已报道的新黄嘌呤的扭曲,当LHCII切换至能量耗散状态时,叶黄素1颜料的构象也发生了显着变化。在LHCII凝胶上对类胡萝卜素(Car)暗态(Car S1)进行选择性双光子激发,表明Car S1和叶绿素态之间的电子相互作用程度与叶绿素荧光猝灭呈线性关系,如先前在分离的LHCII上观察到的(聚合对三聚体) )和整个工厂(使用或不使用NPQ)。

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