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无表面活性剂的光系统 I 颗粒的皮秒时间分辨荧光。

Picosecond time-resolved fluorescence from detergent-free photosystem I particles.

出版信息

Biophys J. 1987 Nov;52(5):829-36. doi: 10.1016/S0006-3495(87)83276-9.

Abstract

Picosecond time-resolved fluorescence measurements have been taken on a detergent-free P700-enriched complex at room temperature isolated from the blue-green alga Phormidium luridum with a chlorophyll a to reaction center ratio of 100. Emission at greater than 665 nm is characterized by two exponential-decay components. A fast component, which dominates the initial decay with an average lifetime of 16 ps and 87% amplitude, is attributed to excitations in the core antenna chlorophyll-proteins, which are rapidly trapped by the primary electron donor, P700. A second component, with an average lifetime of 106 ps and 13% amplitude, is attributed to the peripheral antenna proteins. For 532-nm, 30-ps pulse excitation the results are virtually independent of fluence in the range of 2 x 10(12) to 4 x 10(16) photons/cm(2) and the oxidation state of P700. Addition of sodium dodecyl sulfate to 0.1% causes the second component's lifetime to increase by an average of a factor of 2.5. Only minor changes are observed in the first component's lifetime and the relative amplitudes of the two components. Two fractions isolated from the detergent-treated samples have also been examined. Our results indicate that excitation energy transfer within photosystem I is very efficient and that the excitation kinetics of the antennae may be limited by the trapping rate of P700 or strongly affected by the heterogeneity of the antennae.

摘要

皮秒时间分辨荧光测量已在室温下从蓝绿藻鱼腥藻中分离出的无去污剂 P700 富集复合物上进行,其叶绿素 a 与反应中心的比例为 100。大于 665nm 的发射由两个指数衰减分量表征。快速分量主导初始衰减,平均寿命为 16ps 和 87%的幅度,归因于核心天线叶绿素-蛋白质中的激发,这些激发被原初电子供体 P700 迅速捕获。第二个分量具有平均寿命为 106ps 和 13%的幅度,归因于外围天线蛋白质。对于 532nm、30ps 脉冲激发,结果在 2x10(12)到 4x10(16)光子/cm(2)和 P700 的氧化态范围内的强度几乎与强度无关。添加 0.1%的十二烷基硫酸钠会使第二分量的平均寿命增加 2.5 倍。在第一分量的寿命和两个分量的相对幅度方面仅观察到微小变化。还检查了从处理过的去污剂的样品中分离出的两个分数。我们的结果表明,光合作用 I 内的激发能量转移非常有效,天线的激发动力学可能受到 P700 捕获率的限制,或者受到天线异质性的强烈影响。

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Picosecond time-resolved fluorescence from detergent-free photosystem I particles.
Biophys J. 1987 Nov;52(5):829-36. doi: 10.1016/S0006-3495(87)83276-9.
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