首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Photoprotective mechanisms in the core LH1 antenna pigment-protein complex from the purple photosynthetic bacterium, Rhodospirillum rubrum
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Photoprotective mechanisms in the core LH1 antenna pigment-protein complex from the purple photosynthetic bacterium, Rhodospirillum rubrum

机译:从紫色光合细菌中,核心LH1天线颜料蛋白复合物中的光保护机制,Rhodospirillum rubrum

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摘要

Time-resolved absorption spectra from the femtoscecond to sub-millisecond time regimes were recorded in order to eluciate the photoprotective mechanisms of carotenoid (spirilloxanthin) in core LH1 light-harvesting pigmentprotein complexes from a purple photosynthetic bacterium, Rhodospirillum (Rsp.) rubrum. Carotenoids can prevent the production of singlet oxygen by rapidly quenching the Bchl a triplet state. Through this triplet-triplet energy-transfer reaction the carotenoid is believed to protect the biological system from exposure to excess light. We set out to investigate this paricular function in the purple bacterium, Rsp. rubrum strain S1. We also investigated Rsp. rubrum strain G9 +, which is the carotenoidless mutant of Rsp. rubrum, to make sure that the carotenoid is truly playing this important role. As a result, we could demonstrate that strain S1 realizes nearly 100%, excitation energy transfer from triplet Bchl a to carotenoid. In addition, we found another major excited state deactivation channel of carotenoids, which takes away excess energy directly from the singlet excited state of Bchl a and so prevents the production of triplet excited Bchl a.
机译:记录了从紫外线秒到亚毫秒时间制度的时间分辨吸收光谱,以阐明胡萝卜素(Spirillanshanthin)在核心光合细菌中的核心LH1光学用蛋白复合物中的Carotenoid(Spirilloxanthin)的光保护机制。类胡萝卜素可以通过快速淬火三重态状态来防止单次氧的产生。通过这种三重态 - 三重态能量 - 转移反应,据信胡萝卜素保护生物系统免于暴露于过量的光线。我们首先探讨紫色细菌rsp中的这种孤心功能。 rubrum菌株S1。我们还调查了RSP。 Rubrum菌株G9 +,这是RSP的类胡萝卜素突变体。 rubrum,以确保类胡萝卜素真正发挥这个重要作用。结果,我们可以证明菌株S1从三联BCHLa到类胡萝卜素实现近100%,激发能量转移。此外,我们发现了类胡萝卜素的另一个主要激发态失活通道,其直接从BCHl A的单线突发状态下夺走过量的能量,因此防止了三重态激发的BCHL a的产生。

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