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The Origin of the Multiline and g = 4.1 Electron Paramagnetic Resonance Signals from the Oxygen-Evolving System of Photosystem II

机译:多线的起源和来自光系统II析氧系统的g = 4.1电子顺磁共振信号

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摘要

Continuous illumination at 200 K of photosystem (PS) II-enriched membranes generates two electron paramagnetic resonance (EPR) signals that both are connected with the S2 state: a multiline signal at g 2 and a single line at g = 4.1. From measurements at three different X-band frequencies and at 34 GHz, the g tensor of the multiline species was found to be isotropic with g = 1.982. It has an excited spin multiplet at ∼30 cm-1, inferred from the temperature-dependence of the linewidth. The intensity ratio of the g = 4.1 signal to the multiline signal was found to be almost constant from 5 to 23 K. Based on these findings and on spin quantitation of the two signals in samples with and without 4% ethanol, it is concluded that they arise from the ground doublets of paramagnetic species in different PS II centers. It is suggested that the two signals originate from separate PS II electron donors that are in a redox equilibrium with each other in the S2 state and that the g = 4.1 signal arises from monomeric Mn(IV).
机译:富含光系统(PS)II的膜在200 K处连续照射会产生两个均与S2状态相关的电子顺磁共振(EPR)信号:g 2处的多线信号和g = 4.1处的单线。通过在三个不同的X波段频率和34 GHz下的测量,发现多线物种的g张量是各向同性的,g = 1.982。从线宽的温度依赖性推断,它在〜30 cm-1处具有激发自旋多重峰。发现g = 4.1信号与多行信号的强度比在5至23 K范围内几乎是恒定的。基于这些发现以及对使用和不使用4%乙醇的样品中的两种信号进行自旋定量,得出的结论是它们来自不同PS II中心顺磁性物质的地面双峰。建议这两个信号来自单独的PS II电子供体,它们在S2状态下彼此处于氧化还原平衡,并且g = 4.1信号来自单体Mn(IV)。

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