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首页> 外文期刊>Biochemistry >Effects of photoinhibition on the QA-Fe2+ complex of photosystem II studied by EPR and Mossbauer spectroscopy.
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Effects of photoinhibition on the QA-Fe2+ complex of photosystem II studied by EPR and Mossbauer spectroscopy.

机译:EPR和Mossbauer光谱研究了光抑制作用对光系统II的QA-Fe2 +复合物的影响。

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Effects of photoinhibition on the iron-quinone electron acceptor complex of oxygen-evolving photosystem II have been studied using low-temperature EPR and Mossbauer spectroscopy. Photoinhibition of spinach photosystem II membrane particles at 4 degrees C decreases the EPR signal arising from the interaction of QA- with Fe2+ to 30% in 90 min under our conditions. The free radical EPR signal from QA- induced by cyanide treatment of the iron [Sanakis, Y., et al. (1994) Biochemistry 33, 9922-9928] declines with the same kinetics as the QA-Fe2+ EPR signal. In contrast, Fe2+ is present in about 70% of the centers after 90 min of photoinhibition, as shown by its EPR-detected interaction with NO and by its Mossbauer absorption. Complete oxidation of this Fe2+ population to Fe3+ by ferricyanide is possible only in the presence of glycolate, which lowers the redox potential of the Fe3+/Fe2+ couple. In a fraction of PSII centers, which reach 30% after 90 min of photoinhibition, the iron cannot be detected. It is concluded that photoinhibition of oxygen-evolving photosystem II affects both QA and Fe2+. However, the photoinhibitory impairment of the QA redox functioning precedes the modification of the non-heme iron. In a considerable portion of the photoinhibited centers, which do not have functional QA, the non-heme iron is still present and redox active, but its redox potential is increased relative to that in the normal centers. This is probably due to a minor modification of the bicarbonate ligation site.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:使用低温EPR和Mossbauer光谱研究了光抑制作用对析氧光系统II的铁醌电子受体配合物的影响。在我们的条件下,菠菜光系统II膜颗粒在4摄氏度下的光抑制作用在90分钟内将QA-与Fe2 +的相互作用引起的EPR信号降低到30%。氰化物处理铁后,由QA-产生的自由基EPR信号[Sanakis,Y.,等人。 (1994)Biochemistry 33,9922-9928]下降的动力学与QA-Fe2 + EPR信号相同。相反,光抑制90分钟后,Fe2 +存在于约70%的中心,如其EPR检测到的与NO的相互作用以及其Mossbauer吸收所显示。仅在乙醇酸存在的情况下,铁氰化物可能会将Fe2 +族完全氧化为Fe3 +,这会降低Fe3 + / Fe2 +对的氧化还原电位。在一部分PSII中心(在光抑制90分钟后达到30%),无法检测到铁。结论是,放氧的光系统II的光抑制作用会影响QA和Fe2 +。但是,QA氧化还原功能的光抑制损伤先于非血红素铁的修饰。在相当一部分没有功能性QA的光抑制中心中,仍然存在非血红素铁并具有氧化还原活性,但相对于正常中心而言,其氧化还原电势有所增加。这可能是由于碳酸氢盐连接位点的微小修饰。(摘要截短为250字)

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