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首页> 外文期刊>Biochemistry >Low-Temperature Electron Transfer in Photosystem II: A Tyrosyl Radical and Semiquinone Charge Pair.
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Low-Temperature Electron Transfer in Photosystem II: A Tyrosyl Radical and Semiquinone Charge Pair.

机译:光系统II中的低温电子转移:酪氨酰基自由基和半醌电荷对。

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The states induced by illumination at 7 K in the oxygen-evolving enzyme (PSII) from Thermosynechococcus elongatus were studied by EPR. In the S(0) and S(1) redox states, two g approximately 2 EPR signals, a split signal and a g = 2.03 signal, respectively, were generated by illumination with visible light. These signals were comparable to those already reported in plant PSII in terms of their g value, shape, and stability at low temperatures. We report that the formation and decay of these signals correlate with EPR signals from the semiquinone of the first quinone electron acceptor, Q(A)(-). The light-induced EPR signals from oxidized side-path electron donors (Cyt b(559), Car, and Chl(Z)) were also measured, and from these and the signals from Q(A)(-), estimates were made of the proportion of centers involved in the formation of the g approximately 2 signals (approximately 50% in S(0) and 40% in S(1)). Comparisons with the signals generated in plant PSII indicated approximately similar yields for theS(0) split signal. A single laser flash at 7 K induced more than 75% of the maximum split and g = 2.03 EPR signal observed by continuous illumination, with no detectable oxidation of side-path donors. The matching electron acceptor side reactions, the high quantum yield, and the relatively large proportion of centers involved support earlier suggestions that the state being monitored is Tyr(Z)(*)Q(A)(-), with the g approximately 2 EPR signals arising from Tyr(Z)(*) interacting magnetically with the Mn complex. The current picture of the photochemical reactions occurring in PSII at low temperatures is reassessed.
机译:通过EPR研究了在7 K下光照下长形嗜热球菌的放氧酶(PSII)中诱导的状态。在S(0)和S(1)的氧化还原状态下,通过可见光照射分别生成了2个g大约2个EPR信号,分别是分割信号和g = 2.03信号。这些信号的g值,形状和在低温下的稳定性与在植物PSII中已经报道的信号相当。我们报告说,这些信号的形成和衰减与来自第一个醌电子受体Q(A)(-)的半醌的EPR信号相关。还测量了来自氧化的旁侧电子给体(Cyt b(559),Car和Chl(Z))的光诱导EPR信号,并根据这些信号和Q(A)(-)的信号进行了估算g的形成中所涉及的中心比例的大约2个信号(S(0)中约50%,S(1)中约40%)。与在植物PSII中产生的信号的比较表明,S(0)分裂信号的产率近似相似。单个激光闪光在7 K时诱导了超过75%的最大分裂,并且通过连续照射观察到g = 2.03 EPR信号,没有检测到旁侧施主的氧化。匹配的电子受体副反应,高量子产率和所涉及中心的相对较大比例支持了较早的建议,即所监测的状态为Tyr(Z)(*)Q(A)(-),g约为2 EPR Tyr(Z)(*)产生的信号与Mn络合物发生磁性相互作用。重新评估了低温下PSII中发生的光化学反应的当前情况。

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