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A Soluble Carotenoid Protein Involved in Phycobilisome-Related Energy Dissipation in Cyanobacteria

机译:可溶性类胡萝卜素蛋白参与蓝藻中与藻胆相关的能量消散

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摘要

Photosynthetic organisms have developed multiple protective mechanisms to survive under high-light conditions. In plants, one of these mechanisms is the thermal dissipation of excitation energy in the membrane-bound chlorophyll antenna of photosystem II. The question of whether or not cyanobacteria, the progenitor of the chloroplast, have an equivalent photoprotective mechanism has long been unanswered. Recently, however, evidence was presented for the possible existence of a mechanism dissipating excess absorbed energy in the phycobilisome, the extramembrane antenna of cyanobacteria. Here, we demonstrate that this photoprotective mechanism, characterized by blue light–induced fluorescence quenching, is indeed phycobilisome-related and that a soluble carotenoid binding protein, ORANGE CAROTENOID PROTEIN (OCP), encoded by the slr1963 gene in Synechocystis PCC 6803, plays an essential role in this process. Blue light is unable to quench fluorescence in the absence of phycobilisomes or OCP. The fluorescence quenching is not ΔpH-dependent, and it can be induced in the absence of the reaction center II or the chlorophyll antenna, CP43 and CP47. Our data suggest that OCP, which strongly interacts with the thylakoids, acts as both the photoreceptor and the mediator of the reduction of the amount of energy transferred from the phycobilisomes to the photosystems. These are novel roles for a soluble carotenoid protein.
机译:光合生物已开发出多种保护机制,可在强光条件下生存。在植物中,这些机制之一是光能系统II的膜结合叶绿素天线中激发能的散热。长期以来,人们一直没有回答关于蓝细菌(叶绿体的祖细胞)是否具有等同的光保护机制的问题。然而,最近,有证据表明可能在蓝藻的藻胆体膜外触角中释放了多余的吸收能量。在这里,我们证明了以蓝光诱导的荧光猝灭为特征的这种光保护机制确实与藻胆体相关,并且由Synechocystcystis PCC 6803中的slr1963基因编码的可溶性类胡萝卜素结合蛋白ORANGE CAROTENOID PROTEIN(OCP)发挥了作用。在此过程中至关重要。在没有藻胆体或OCP的情况下,蓝光无法猝灭荧光。荧光猝灭不是ΔpH依赖性的,并且可以在不存在反应中心II或叶绿素触角CP43和CP47的情况下诱导。我们的数据表明,与类囊体强烈相互作用的OCP既是光感受器,又是减少从藻胆体转移到光系统的能量的媒介。这些是可溶性类胡萝卜素蛋白的新作用。

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