Service de Biophysique, Département de Biologie, CEN Saclay, 91191, Gif-sur-Yvette Cedex, France.
Photosynth Res. 1991 Jan;27(1):65-71. doi: 10.1007/BF00029977.
Incubation of spinach thylakoids with HgCl2 selectively destroys Fe-S center B (FB). The function of electron acceptors in FB-less PS I particles was studied by following the decay kinetics of P700(+) at room temperature after multiple flash excitation in the absence of a terminal electron acceptor. In untreated particles, the decay kinetics of the signal after the first and the second flashes were very similar (t 1/2∼2.5 ms), and were principally determined by the concentration of the artificial electron donor added. The decay after the third flash was fast (t 1/2∼0.25 ms). In FB-less particles, although the decay after the first flash was slow, fast decay was observed already after the second flash. We conclude that in FB-less particles, electron transfer can proceed normally at room temperature from FX to FA and that the charge recombination between P700(+) and FX (-)/A1 (-) predominated after the second excitation. The rate of this recombination process is not significantly affected by the destruction of FB. Even in the presence of 60% glycerol, FB-less particles can transfer electrons to FA at room temperature as efficiently as untreated particles.
用 HgCl2 孵育菠菜类囊体选择性地破坏 Fe-S 中心 B(FB)。通过在没有末端电子受体的情况下多次闪光激发后在室温下跟踪 P700(+)信号的衰减动力学,研究了 FB 缺失 PS I 颗粒中电子受体的功能。在未处理的颗粒中,第一和第二闪光后的信号衰减动力学非常相似(t 1/2∼2.5 ms),并且主要由添加的人工电子供体的浓度决定。第三次闪光后的衰减很快(t 1/2∼0.25 ms)。在 FB 缺失颗粒中,尽管第一次闪光后的衰减较慢,但在第二次闪光后已经观察到快速衰减。我们得出结论,在 FB 缺失颗粒中,电子传递可以在室温下从 FX 到 FA 正常进行,并且在第二次激发后,P700(+)和 FX (-)/A1 (-)之间的电荷复合占主导地位。该复合过程的速率不受 FB 破坏的显著影响。即使在存在 60%甘油的情况下,FB 缺失颗粒也可以像未处理的颗粒一样有效地在室温下将电子转移到 FA。