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电子顺磁共振信号II的快速成分:菠菜叶绿体中光系统II生理供体的候选物。

The rapid component of electron paramagnetic resonance signal II: a candidate for the physiological donor to photosystem II in spinach chloroplasts.

作者信息

Babcock G T, Sauer K

出版信息

Biochim Biophys Acta. 1975 Feb 17;376(2):329-44. doi: 10.1016/0005-2728(75)90025-0.

Abstract

Rapid light-induced transients in EPR Signal IIf (F-+) are observed in 3-(3,4-dichlorophenyl)-1,1-dimethylurea (DCMU)-treated, Tris-washed chloroplasts until the state F P680 Q minus is reached. In the absence of exogenous redox mediators several flashes are required to saturate this photoinactive state. However, the Signal IIf transient is observed on only the first flash following DCMU addition if an efficient donor to Signal IIf, phenylenediamine or hydroquinone, is present. Complementary polarographic measurements show that under these conditions oxidized phenylenediamine is produced only on the first flash of a series. The DCMU inhibition of Signal IIf can be completely relieved by oxidative titration of a one-electron reductant with E'Os.o equals to + 480 mV. At high reduction potentials the decay time of Signal IIf is constant at about 300 ms, whereas in the absence of DCMU the decay time is longer and increases with increasing reduction potential. A model is proposed in which Q minus, the reduced Photosystem II primary acceptor, and D, a one-electron 480 mV donor endogenous to the chloroplast suspension, compete in the reduction of Signal IIf (F-+). At high potentials D is oxidized in the dark, and the (Q-+F-+) back reaction regenerates the photoactive F P680 Q state. The electrochemical and kinetic evidence is consistent with the hypothesis that the Signal IIf species, F, is identical with Z, the physiological donor to P680.

摘要

在经3-(3,4-二氯苯基)-1,1-二甲基脲(DCMU)处理并经Tris洗涤的叶绿体中,观察到EPR信号IIf(F-+)中快速的光诱导瞬变,直至达到F P680 Q minus状态。在没有外源氧化还原介质的情况下,需要多次闪光才能使这种光失活状态饱和。然而,如果存在对信号IIf有效的供体,即苯二胺或对苯二酚,则在添加DCMU后的第一次闪光时就会观察到信号IIf瞬变。补充的极谱测量表明,在这些条件下,仅在一系列闪光的第一次闪光时产生氧化苯二胺。用E'Os.o等于 + 480 mV的单电子还原剂进行氧化滴定可完全解除DCMU对信号IIf的抑制。在高还原电位下,信号IIf的衰减时间恒定在约300毫秒,而在没有DCMU的情况下,衰减时间更长且随还原电位的增加而增加。提出了一个模型,其中Q minus,即还原的光系统II初级受体,和D,即叶绿体悬浮液内源性的480 mV单电子供体,在信号IIf(F-+)的还原中竞争。在高电位下,D在黑暗中被氧化,并且(Q-+F-+)的逆反应再生光活性F P680 Q状态。电化学和动力学证据与信号IIf物种F与P680的生理供体Z相同的假设一致。

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