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紫球藻中的皮秒时间分辨能量转移。第二部分。在分离的光捕获复合体(藻胆体)中。

Picosecond time-resolved energy transfer in Porphyridium cruentum. Part II. In the isolated light harvesting complex (phycobilisomes).

作者信息

Searle G F, Barber J, Porter G, Tredwell C J

出版信息

Biochim Biophys Acta. 1978 Feb 9;501(2):246-56. doi: 10.1016/0005-2728(78)90030-0.

Abstract

The transfer of excitation energy between phycobiliproteins in isolated phycobilisomes has been observed on a picosecond time scale. The photon density of the excitation pulse has been carefully varied so as to control the level of exciton interactions induced in the pigment bed. The 530 nm light pulse is absorbed predominantly by B-phycoerythrin, and the fluorescence of this component rises within the pulse duration and shows a mean 1/e decay time of 70 ps. The main emission band, centred at 672 nm, is due to allophycocyanin and is prominent because of the absence of energy transfer to chlorophyll. Energy transfer to this pigment from B-phycoerythrin via R-phycocyanin produces a risetime of 120 ps to the fluorescence maximum. The lifetime of the allophycocyanin fluorescence is found to be about 4 ns using excitation pulses of low photon densities (10(13) photons.cm-2), but decreases to about 2 ns at higher photon densities. The relative quantum yield of the allophycocyanin fluorescence decreases almost 10 fold over the range of laser pulse intensities, 10(13)--10(16) photons-cm-2. Fluorescence quenching by exciton-exciton annihilation is only observed in allophycocyanin and could be a consequence of the long lifetime of the single exciton in this pigment.

摘要

在皮秒时间尺度上观察到了分离的藻胆体中藻胆蛋白之间激发能的转移。已仔细改变激发脉冲的光子密度,以控制色素层中诱导的激子相互作用水平。530 nm光脉冲主要被B-藻红蛋白吸收,该组分的荧光在脉冲持续时间内上升,平均1/e衰减时间为70 ps。以672 nm为中心的主要发射带归因于别藻蓝蛋白,由于不存在向叶绿素的能量转移而很突出。从B-藻红蛋白经R-藻蓝蛋白向该色素的能量转移产生荧光最大值的上升时间为120 ps。使用低光子密度(10¹³个光子·cm⁻²)的激发脉冲时,发现别藻蓝蛋白荧光的寿命约为4 ns,但在较高光子密度下降至约2 ns。在激光脉冲强度范围10¹³ - 10¹⁶个光子·cm⁻²内,别藻蓝蛋白荧光的相对量子产率几乎下降10倍。激子-激子湮灭引起的荧光猝灭仅在别藻蓝蛋白中观察到,这可能是该色素中单个激子寿命长的结果。

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