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铁和泛醌在光合细菌反应中心介导的电子转移反应中的作用。

The involvement of iron and ubiquinone in electron transfer reactions mediated by reaction centers from photosynthetic bacteria.

作者信息

Blankenship R E, Parson W W

出版信息

Biochim Biophys Acta. 1979 Mar 15;545(3):429-44. doi: 10.1016/0005-2728(79)90152-x.

Abstract

Reaction centers from Rhodopseudomonas sphaeroides strain R-26 were prepared with varying Fe and ubiquinone (Q) contents. The photooxidation of P-870 to P-870+ was found to occur with the same quantum yield in Fe-depleted reaction centers as in control samples. The kinetics of electron transfer from the initial electron acceptor (I) to Q also were unchanged upon Fe removal. We conclude that Fe has no measurable role in the primary photochemical reaction. The extent of secondary reaction from the first quinone acceptor (QA) to the second quinone acceptor (QB) was monitored by the decay kinetics of P-870+ after excitation of reaction centers with single flashes in the absence of electron donors, and by the amount of P-870 photooxidation that occurred on the second flash in the presence of electron donors. In reaction centers with nearly one iron and between 1 and 2 ubiquinones per reaction center, the amount of secondary electron transfer is proportional to the ubiquinone content above one per reaction center. In reaction centers treated with LiClO4 and o-phenanthroline to remove Fe, the amount of secondary reaction is decreased and is proportional to Fe content. Fe seems to be required for the secondary reaction. In reaction centers depleted of Fe by treatment with SDS and EDTA, the correlation between Fe content and secondary activity is not as good as that found using LiClO4. This is probably due in part to a loss of primary photochemical activity in samples treated with SDS; but the correlation is still not perfect after correction for this effect. The nature of the back reaction between P-870+ and Q-B was investigated using stopped flow techniques. Reaction centers in the P-870+ Q-B state decay with a 1-s half-time in both the presence and absence of o-phenanthroline, an inhibitor of electron transfer between Q-B and QB. This indicates that the back reaction between P-870+ and Q-A is direct, rather than proceeding via thermal repopulation of Q-A. The P-870+ Q-B state is calculated to lie at least 100 mV in free energy below the P-870+ Q-A state.

摘要

制备了来自球形红假单胞菌R - 26菌株的反应中心,其铁(Fe)和泛醌(Q)含量各不相同。发现在缺铁的反应中心中,P - 870光氧化为P - 870⁺的量子产率与对照样品相同。去除铁后,从初始电子受体(I)到Q的电子转移动力学也未发生变化。我们得出结论,铁在初级光化学反应中没有可测量的作用。在没有电子供体的情况下,通过单闪光激发反应中心后P - 870⁺的衰减动力学,以及在有电子供体的情况下第二次闪光时发生的P - 870光氧化量,来监测从第一个醌受体(QA)到第二个醌受体(QB)的二级反应程度。在每个反应中心含有近一个铁原子和1到2个泛醌的反应中心中,二级电子转移量与每个反应中心超过一个泛醌的泛醌含量成正比。在用高氯酸锂和邻菲罗啉处理以去除铁的反应中心中,二级反应量减少且与铁含量成正比。二级反应似乎需要铁。在用十二烷基硫酸钠(SDS)和乙二胺四乙酸(EDTA)处理使铁耗尽的反应中心中,铁含量与二级活性之间的相关性不如使用高氯酸锂时好。这可能部分是由于用SDS处理的样品中初级光化学活性的损失;但校正此效应后相关性仍不完美。使用停流技术研究了P - 870⁺与Q - B之间的逆反应性质。在有和没有邻菲罗啉(一种Q - B和QB之间电子转移的抑制剂)的情况下,处于P - 870⁺Q - B状态的反应中心均以1秒的半衰期衰减。这表明P - 870⁺与Q - A之间的逆反应是直接的,而不是通过QA的热再填充进行。计算得出P - 870⁺Q - B状态的自由能比P - 870⁺Q - A状态至少低100毫伏。

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