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首页> 外文期刊>Applied Magnetic Resonance >Pulsed EPR and ENDOR on the Peridinin Triplet State Involved in the Photoprotective Mechanism in Peridinin-Chlorophyll a-Proteins
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Pulsed EPR and ENDOR on the Peridinin Triplet State Involved in the Photoprotective Mechanism in Peridinin-Chlorophyll a-Proteins

机译:脉冲的EPR和ENDOR在Peridinin-叶绿素a-蛋白的光保护机制中涉及的Peridinin三重态。

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摘要

The photoexcited triplet state of the carotenoid peridinin in the peridinin-chlorophyll a-protein (PCP) of the dinoflagellate Heterocapsa pygmaea has been investigated by pulsed electron paramagnetic resonance (EPR) and pulsed electron-nuclear double resonance (ENDOR) spectroscopies. The alpha- and beta-protons hyperfine couplings of the peridinin-conjugated chain have been derived from Davies and Mims ENDOR experiments. The spectroscopic results have been compared to those obtained for the main form of the PCP complex and for the high-salt PCP form from Amphidinium carterae. The EPR features of the peridinin triplet state are very similar in the antenna complexes belonging to the two different dinoflagellate species, proving that the triplet formation pathway and the triplet localization on one specific peridinin per subcluster are common features of different PCP antennas. No significant variation of the hyperfine couplings of the peridinin triplet state has been detected between the main form of the PCP complex from A. carterae and H. pygmaea. The spectroscopic results confirm the close relationship between the Amphidinium PCP and the corresponding Heterocapsa complex at least in terms of mutual arrangement of the chlorophyll a-peridinin pair involved in photoprotection and in terms of conformation of the peridinin-conjugated chain.
机译:已通过脉冲电子顺磁共振(EPR)和脉冲电子-核双共振(ENDOR)光谱学研究了鞭毛鞭毛蝶果鞭peri素-叶绿素a蛋白(PCP)中类胡萝卜素peridin的光激发三重态。苦瓜素缀合链的α-质子和β-质子超精细偶联已从Davies和Mims ENDOR实验获得。光谱结果已与主要形态的五氯苯酚络合物和高盐度的五氯苯甲酸铵的五氯苯酚化合物相比较。在属于两种不同鞭毛藻物种的天线复合物中,peridinin三重态的EPR特征非常相似,证明每个亚簇中一个特定的perdinin的三重态形成途径和三重态定位是不同PCP天线的共同特征。在来自曲霉的PCP复合物的主要形式和pygmaea的臀果木聚糖之间,未检测到peridinin三联体状态的超精细偶联的显着变化。光谱结果至少在参与光保护的叶绿素α-peridinin对的相互排列方面以及在与peridinin共轭的链的构象方面证实了Amphidinium PCP与相应的杂菌复合体之间的紧密关系。

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