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隐藻双蛋白的皮秒荧光。激发强度的影响以及藻蓝蛋白612、藻蓝蛋白645和藻红蛋白545的荧光衰减时间

Picosecond fluorescence of cryptomonad biliproteins. Effects of excitation intensity and the fluorescence decay times of phycocyanin 612, phycocyanin 645, and phycoerythrin 545.

作者信息

Guard-Friar D, MacColl R, Berns D S, Wittmershaus B, Knox R S

出版信息

Biophys J. 1985 Jun;47(6):787-93. doi: 10.1016/S0006-3495(85)83982-5.

Abstract

The fluorescence of purified biliproteins (phycocyanin 645, phycocyanin 612, and phycoerythrin 545) from three cryptomonads, Chroomonas species, Hemiselmis virescens, and Rhodomonas lens, and C-phycocyanin from Anacystis nidulans has been time resolved in the picosecond region with a streak camera system having less than or equal to 2-ps jitter. The fluorescence lifetimes of phycocyanins from Chroomonas species and Hemiselmis virescens are 1.5 +/- 0.2 ns and 2.3 +/- 0.2 ns, respectively, regardless of the fluence of the 30 ps, 532-nm excitation pulse. (Fluence [or photons/cm2] = f intensity [photons/cm2s]dt.). In contrast, that of C-phycocyanin is 2.3 +/- 0.2 ns when the excitation fluence is 8.2 X 10(11) photons/cm2 and decreases to a decay approximated by an exponential decay time of 0.65 +/- 0.1 ns at 7.2 X 10(16) photons/cm2. The cryptomonad phycoerythrin fluorescence decay lifetime is also dependent on intensity, having a decay time of 1.5 +/- 0.1 ns at low fluences and becoming clearly biphasic at higher fluences (greater than 10(15) photons/cm2). We interpret the shortening of decay times for C-phycocyanin and phycoerythrin 545 in terms of exciton annihilation, and have discussed the applicability of exciton annihilation theories to the high fluence effects.

摘要

利用抖动小于或等于2皮秒的条纹相机系统,在皮秒区域对来自三种隐藻(色素隐藻属物种、绿色半隐藻和透镜红隐藻)的纯化胆色素蛋白(藻蓝蛋白645、藻蓝蛋白612和藻红蛋白545)以及来自巢状组囊藻的C - 藻蓝蛋白的荧光进行了时间分辨。色素隐藻属物种和绿色半隐藻的藻蓝蛋白荧光寿命分别为1.5±0.2纳秒和2.3±0.2纳秒,与30皮秒、532纳米激发脉冲的注量无关。(注量[或光子/平方厘米]=f强度[光子/平方厘米·秒]dt。)相比之下,当激发注量为8.2×10¹¹光子/平方厘米时,C - 藻蓝蛋白的荧光寿命为2.3±0.2纳秒,而在7.2×10¹⁶光子/平方厘米时,其衰减近似为指数衰减时间0.65±0.1纳秒。隐藻藻红蛋白的荧光衰减寿命也取决于强度,在低注量下衰减时间为1.5±0.1纳秒,在较高注量(大于10¹⁵光子/平方厘米)时明显呈现双相衰减。我们根据激子湮灭来解释C - 藻蓝蛋白和藻红蛋白545衰减时间的缩短,并讨论了激子湮灭理论对高注量效应的适用性。

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