首页> 外文OA文献 >Spectroscopic properties of the peridinins involved in chlorophyll triplet quenching in high-salt peridinin-chlorophyll a-protein from Amphidinium carterae as revealed by optically detected magnetic resonance, pulse EPR and pulse ENDOR spectroscopies
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Spectroscopic properties of the peridinins involved in chlorophyll triplet quenching in high-salt peridinin-chlorophyll a-protein from Amphidinium carterae as revealed by optically detected magnetic resonance, pulse EPR and pulse ENDOR spectroscopies

机译:通过光学检测的磁共振,脉冲EPR和脉冲ENDOR光谱法揭示了参与构架的高盐perididinin-叶绿素a蛋白中叶绿素三联体猝灭的peridinins的光谱特性

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摘要

The photoexcited triplet state of the carotenoid peridinin in the high-salt peridinin-chlorophyll a-protein (HSPCP) of the dinoflagellate Amphidinium carterae was investigated by ODMR (optically detected magnetic resonance), pulse EPR and pulse ENDOR spectroscopies. The properties of peridinins associated to the triplet state formation in HSPCP were compared to those of peridinins involved in triplet state population in the main-form peridinin-chlorophyll protein (MFPCP), previously reported. In HSPCP no signals due to the presence of chlorophyll triplet state have been detected, during either steady-state illumination or laser-pulse excitation, meaning that peridinins play the photo-protective role with 100% efficiency as in MFPCP. The general spectroscopic features of the peridinin triplet state are very similar in the two complexes and allow drawing the conclusion that the triplet formation pathway and the triplet localization in one specific peridinin in each subcluster are the same in HSPCP and MFPCP. However some significant differences also emerged from the analysis of the spectra. Zero field splitting parameters of the peridinin triplet states are slightly smaller in HSPCP and small changes are also observed for the hyperfine splittings measured by pulse ENDOR and assigned to the beta-protons belonging to one of the two methyl groups present in the conjugated chain, (a(iso) = 10.3 MHz in HSPCP vs a(iso) = 10.6 MHz in MFPCP). The differences are explained in terms of local distortion of the tails of the conjugated chains of the peridinin molecules, in agreement with the conformational data resulting from the X-ray structures of the two complexes. (C) 2008 Elsevier B.V. All rights reserved.
机译:通过ODMR(光学检测磁共振),脉冲EPR和脉冲ENDOR光谱法研究了鞭毛鞭毛双歧杆菌软骨高盐盐蛋白-叶绿素a蛋白(HSPCP)中类胡萝卜素peridin的光激发三重态。比较了以前在HSPCP中与三态状态形成有关的peridinins与主要形式的peridinin叶绿素蛋白(MFPCP)中参与三重态种群的peridinin的特性。在HSPCP中,在稳态照明或激光脉冲激发过程中均未检测到由于存在叶绿素三重态而引起的信号,这意味着与MFPCP相比,peridinin发挥了100%的光保护作用。在这两种复合物中,peridinin三联体状态的一般光谱特征非常相似,可以得出这样的结论:在HSPCP和MFPCP中,每个亚簇中一个特定的perdininin中的三联体形成途径和三联体定位均相同。然而,从光谱分析中也出现了一些显着差异。在HSPCP中,peridinin三重态的零场分裂参数稍小,并且通过脉冲ENDOR测量的超精细分裂也观察到很小的变化,并且该超精细分裂被分配给属于共轭链中两个甲基之一的β-质子,( HSPCP中的a(iso)= 10.3 MHz,而MFPCP中的a(iso)= 10.6 MHz)。差异的解释是根据peridinin分子共轭链的尾部局部变形,与两种复合物的X射线结构所产生的构象数据一致。 (C)2008 Elsevier B.V.保留所有权利。

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