Moënne-Loccoz P, Heathcote P, Maclachlan D J, Berry M C, Davis I H, Evans M C
Department of Biology, University College London, U.K.
Biochemistry. 1994 Aug 23;33(33):10037-42. doi: 10.1021/bi00199a030.
Pulsed EPR spectroscopy and selective removal of the iron-sulfur centers in photosystem 1 have been used to study forward electron transfer from the secondary electron acceptor A1. At cryogenic temperatures where forward electron transfer is inhibited, we have observed a g = 2.003 electron spin-echo signal presenting a characteristic phase shift. This out-of-phase signal is attributed to the electron spin-polarized pair P700+/A1-, it decays with t1/e = 23 microseconds, reflecting the recombination reaction. At room temperature the out-of-phase signal is also observed, but it decays with t1/c = 200 ns in untreated photosystem 1, due to forward electron transfer from A1- to one of the iron-sulfur centers. This rate is unchanged in Fe-SA/B-depleted PS1 but is lost when the iron-sulfur center Fe-Sx is removed. In the preparations depleted of all iron-sulfur centers the out-of-phase signal decays with t1/c = 1.3 microseconds, reflecting either the back reaction or the decay of polarization. These results demonstrate that the electron transfer pathway in photosystem 1 is P700-->A1-->Fe-SX-->Fe-SA/B.
脉冲电子顺磁共振光谱和对光系统1中铁硫中心的选择性去除已被用于研究从次级电子受体A1进行的正向电子转移。在低温下,正向电子转移受到抑制,我们观察到一个g = 2.003的电子自旋回波信号呈现出特征性的相移。这个异相信号归因于电子自旋极化对P700+/A1-,它以t1/e = 23微秒的时间衰减,反映了复合反应。在室温下也观察到异相信号,但在未处理的光系统1中,由于从A1-到铁硫中心之一的正向电子转移,它以t1/c = 200纳秒的时间衰减。在耗尽Fe-SA/B的PS1中,这个速率不变,但当铁硫中心Fe-Sx被去除时,该速率消失。在所有铁硫中心都被耗尽的制剂中,异相信号以t1/c = 1.3微秒的时间衰减,反映了逆向反应或极化的衰减。这些结果表明,光系统1中的电子转移途径是P700-->A1-->Fe-SX-->Fe-SA/B。