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Changes in thylakoid membrane thickness associated with the reorganization of photosystem II light harvesting complexes during photoprotective energy dissipation

机译:在光防护能量消散过程中类囊体膜厚度的变化与光系统II集光复合物的重组有关

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摘要

Using freeze-fracture electron microscopy we have recently shown that non-photochemical quenching (NPQ), a mechanism of photoprotective energy dissipation in higher plant chloroplasts, involves a reorganization of the pigment-protein complexes within the stacked grana thylakoids. Photosystem II light harvesting complexes (LHCII) are reorganized in response to the amplitude of the light driven transmembrane proton gradient (ΔpH) leading to their dissociation from photosystem II reaction centers and their aggregation within the membrane. This reorganization of the PSII-LHCII macrostructure was found to be enhanced by the formation of zeaxanthin and was associated with changes in the mobility of the pigment-protein complexes therein. We suspected that the structural changes we observed were linked to the ΔpH-induced changes in thylakoid membrane thickness that were first observed by Murikami and Packer., Here using thin-section electron microscopy we show that the changes in thylakoid membrane thickness do not correlate with ΔpH per se but rather the amplitude of NPQ and is thus affected by the de-epoxidation of the LHCII bound xanthophyll violaxanthin to zeaxanthin. We thus suggest that the change in thylakoid membrane thickness occurring during NPQ reflects the conformational change within LHCII proteins brought about by their protonation and aggregation within the membrane.
机译:最近,我们使用冷冻断裂电子显微镜显示了非光化学淬灭(NPQ),即高等植物叶绿体中光保护能量耗散的一种机制,它涉及在堆积的谷物类囊体中重组色素-蛋白质复合物。 光系统II的光收集复合物(LHCII)响应光驱动的跨膜质子梯度(ΔpH)的幅度而重组,从而导致它们从光系统II的反应中心解离并聚集在膜内。 玉米黄质的形成增强了PSII-LHCII宏观结构的这种重组,并与其中的色素-蛋白质复合物的迁移率变化有关。 我们怀疑观察到的结构变化是与Murikami和Packer首次观察到的ΔpH诱导的类囊体膜厚度变化有关。 电镜观察表明,类囊体膜厚度的变化本身与ΔpH无关,而是NPQ的振幅,因此受到LHCII结合的叶黄素紫黄质到玉米黄质的脱环氧化的影响。因此,我们建议NPQ期间类囊体膜厚度的变化反映了LHCII蛋白内部的构象变化,这是由LHCII蛋白在膜内的质子化和聚集引起的。

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