首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Femtosecond dynamics of carotenoid-to-bacteriochlorophyll a energy transfer in the light-harvesting antenna complexes from the purple bacterium Chromatium purpuratum
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Femtosecond dynamics of carotenoid-to-bacteriochlorophyll a energy transfer in the light-harvesting antenna complexes from the purple bacterium Chromatium purpuratum

机译:飞秒动力学的类胡萝卜素到细菌叶绿素a能量转移从紫色细菌紫细菌的光收集天线复合物中。

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摘要

The energy transfer from the carotenoid okenone to bacteriochlorophyll a (Bchl a) in the light harvesting complex B800–830 and chromatophores of Chromatium purpuratum was studied by steady-state fluorescence and fermtosecond transient absorption spectroscopy. By comparing the fluorescence excitation and the absorption spectra of the B800–830 antenna complex the total energy transfer efficiency of the okenone-to-Bchl a transfer was determined to 95 ± 5%. A fast (<200 fs) transfer from (at least) one carotenoid was observed to the B830 chlorophylls. This transfer was found by fs anisotropy measurements to be a transfer from the okenone S2 state to the Bchl a Qx state, probably caused by the dipole-dipole (F?rster) mechanism. Later the low-lying okenone S1 state, which has a lifetime of ~8ps in solution, was observed transferring energy to the B830 pool in ~3.8 ps, while a second carotenoid transferred its energy also from the S1 state to B800 in ~0.5 ps. The results are discussed in relation to the crystal structure of the B800–850 complex of Rhodopseudomonas acidophila [McDermott et al. Nature 374 (1995)].
机译:通过稳态荧光和飞秒瞬态吸收光谱法研究了光收集复合体B800-830和紫红染色质中从类胡萝卜素酮传递至细菌叶绿素a(Bchla)的能量。通过比较B800–830天线配合物的荧光激发和吸收光谱,将酮酮转化为Bchl的总能量转移效率确定为95±5%。观察到从(至少)一种类胡萝卜素到B830叶绿素的快速转移(<200 fs)。通过fs各向异性测量发现这种转移是从酮型S2状态到Bchl a Qx状态的转移,可能是由偶极-偶极(F?rster)机制引起的。后来观察到低洼的酮酮S1状态(在溶液中的寿命约为8ps)在约3.8 ps的时间内将能量转移到B830池,而第二个类胡萝卜素也以约0.5 ps的速率将能量从S1状态转移到B800。 。讨论了与嗜酸红假单胞菌B800-850配合物的晶体结构有关的结果[McDermott等。 Nature 374(1995)]。

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