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Rate of carotenoid triplet formation in solubilized light-harvesting complex II (LHCII) from spinach.

机译:菠菜中可溶性光捕获复合物II(LHCII)中类胡萝卜素三联体形成的速率。

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摘要

In the present study the rate of triplet transfer from chlorophyll to carotenoids in solubilized LHCII was investigated by flash spectroscopy using laser pulses of approximately 2 ns for both pump and probe. Special attention has been paid to calibration of the experimental setup and to avoid saturation effects. Carotenoid triplets were identified by the pronounced positive peak at approximately 507 nm in the triplet-singlet difference spectra. DeltaOD (507 nm) exhibits a monoexponential relaxation kinetics with characteristic lifetimes of 2-9 micros (depending on the oxygen content) that was found to be independent of the pump pulse intensity. The rise of DeltaOD (507 nm) was resolved via a pump probe technique where an optical delay of up to 20 ns was used. A thorough analysis of these experimental data leads to the conclusion that the kinetics of carotenoid triplet formation in solubilized LHCII is almost entirely limited by the lifetime of the excited singlet state of chlorophyll but neither by the pulse width nor by the rate constant of triplet-triplet transfer. Within the experimental error the rate constant of triplet-triplet transfer from chlorophyll to carotenoids was estimated to be kTT > (0.5 ns)-1. This value exceeds all data reported so far by at least one order of magnitude. The implications of this finding are briefly discussed.
机译:在本研究中,通过闪速光谱法对泵浦和探针使用约2 ns的激光脉冲,研究了溶解的LHCII中从叶绿素到类胡萝卜素的三重态转移速率。特别注意校准实验装置并避免饱和效应。在三重态-单峰差异光谱中,在约507 nm处有一个明显的正峰,可识别类胡萝卜素三联体。 DeltaOD(507 nm)具有单指数弛豫动力学,其特征寿命为2-9微米(取决于氧含量),与泵浦脉冲强度无关。 DeltaOD(507 nm)的上升通过泵浦探针技术解决,其中使用了高达20 ns的光学延迟。对这些实验数据的透彻分析得出的结论是,溶解的LHCII中类胡萝卜素三重态形成的动力学几乎完全受叶绿素激发单重态的寿命限制,但不受脉冲宽度或三重态-三重态速率常数的限制。传递。在实验误差范围内,三重态-三重态从叶绿素转移至类胡萝卜素的速率常数估计为kTT>(0.5 ns)-1。该值比到目前为止报告的所有数据至少高一个数量级。简要讨论了这一发现的含义。

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