Suppr超能文献

类胡萝卜素暗态到叶绿素能量转移在分离的光捕获复合物 CP24 和 CP29 中。

Carotenoid dark state to chlorophyll energy transfer in isolated light-harvesting complexes CP24 and CP29.

机构信息

Department for Biophysical Chemistry, Institute for Physical and Theoretical Chemistry, Technische Universität Braunschweig, Gaußstr. 17, 38106, Brunswick, Germany.

Department of Physics and Astronomy and LaserLab Amsterdam, Faculty of Science, Vrije Universiteit Amsterdam, De Boelelaan 1081, 1081 HV, Amsterdam, The Netherlands.

出版信息

Photosynth Res. 2020 Jan;143(1):19-30. doi: 10.1007/s11120-019-00676-z. Epub 2019 Oct 28.

Abstract

We present a comparison of the energy transfer between carotenoid dark states and chlorophylls for the minor complexes CP24 and CP29. To elucidate the potential involvement of certain carotenoid-chlorophyll coupling sites in fluorescence quenching of distinct complexes, varying carotenoid compositions and mutants lacking chlorophylls at specific binding sites were examined. Energy transfers between carotenoid dark states and chlorophylls were compared using the coupling parameter, [Formula: see text], which is calculated from the chlorophyll fluorescence observed after preferential carotenoid two-photon excitation. In CP24, artificial reconstitution with zeaxanthin leads to a significant reduction in the chlorophyll fluorescence quantum yield, [Formula: see text], and a considerable increase in [Formula: see text]. Similar effects of zeaxanthin were also observed in certain samples of CP29. In CP29, also the replacement of violaxanthin by the sole presence of lutein results in a significant quenching and increased [Formula: see text]. In contrast, the replacement of violaxanthin by lutein in CP24 is not significantly increasing [Formula: see text]. In general, these findings provide evidence that modification of the electronic coupling between carotenoid dark states and chlorophylls by changing carotenoids at distinct sites can significantly influence the quenching of these minor proteins, particularly when zeaxanthin or lutein is used. The absence of Chl612 in CP24 and of Chl612 or Chl603 in CP29 has a considerably smaller effect on [Formula: see text] and [Formula: see text] than the influence of some carotenoids reported above. However, in CP29 our results indicate slightly dequenching and decreased [Formula: see text] when these chlorophylls are absent. This might indicate that both, Chl612 and Chl603 are involved in carotenoid-dependent quenching in isolated CP29.

摘要

我们比较了类囊体蛋白 CP24 和 CP29 中,类胡萝卜素暗态与叶绿素之间的能量转移。为了阐明某些类胡萝卜素-叶绿素偶联部位在不同复合物荧光猝灭中的潜在作用,我们检测了不同类胡萝卜素组成和特定结合部位缺失叶绿素的突变体。通过使用耦合参数[Formula: see text]比较了类胡萝卜素暗态与叶绿素之间的能量转移,该参数是通过优先类胡萝卜素双光子激发后观察到的叶绿素荧光计算得出的。在 CP24 中,玉米黄质的人工重建导致叶绿素荧光量子产率[Formula: see text]显著降低,[Formula: see text]显著增加。在某些 CP29 样品中也观察到了玉米黄质的类似影响。在 CP29 中,单独存在叶黄素替代紫黄质也会导致显著猝灭和[Formula: see text]增加。相比之下,在 CP24 中,用叶黄素替代紫黄质并不会显著增加[Formula: see text]。总的来说,这些发现表明,通过改变不同部位的类胡萝卜素来改变类胡萝卜素暗态与叶绿素之间的电子耦合,可以显著影响这些次要蛋白的猝灭,特别是当使用玉米黄质或叶黄素时。CP24 中缺乏 Chl612 以及 CP29 中缺乏 Chl612 或 Chl603,对[Formula: see text]和[Formula: see text]的影响比上述某些类胡萝卜素的影响要小得多。然而,在 CP29 中,我们的结果表明,当这些叶绿素缺失时,荧光猝灭略有减少,[Formula: see text]降低。这可能表明,Chl612 和 Chl603 都参与了 CP29 中分离的类胡萝卜素依赖性猝灭。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验