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Q-Band EPR of the S2 State of Photosystem II Confirms an S = 5/2 Origin of the X-Band g = 4.1 Signal

机译:光系统II的S2状态的Q波段EPR确认S = 5/2的X波段起源g = 4.1信号

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摘要

Disagreement has remained about the spin state origin of the g = 4.1 EPR signal observed at X-band (9 GHz) from the S2 oxidation state of the Mn cluster of Photosystem II. In this study, the S2 state of PSII-enriched membrane fragments was examined at Q-band (34 GHz), with special interest in low-field signals. Light-induced signals at g = 3.1 and g = 4.6 were observed. The intensity of the signal at g = 3.1 was enhanced by the presence of F and suppressed by the presence of 5% ethanol, indicating that it was from the same spin system as the X-band signal at g = 4.1. The Q-band signal at g = 4.6 was also enhanced by F, but not suppressed by 5% ethanol, making its identity less clear. Although it can be accounted for by the same spin system, other sources for the signal are considered. The observation of the signal at g = 3.1 agrees well with a previous study at 15.5 GHz, in which the X-band g = 4.1 signal was proposed to arise from the middle Kramers doublet of a near rhombic S = 5/2 system. Zero-field splitting values of D = 0.455 cm−1 and E/D = 0.25 are used to simulate the spectra.
机译:关于从光电系统II的Mn团簇的S2氧化态在X波段(9 GHz)观察到的g = 4.1 EPR信号的自旋态起源仍然存在分歧。在这项研究中,在Q波段(34 GHz)检查了富含PSII的膜片段的S2状态,特别关注低场信号。在g = 3.1和g = 4.6处观察到光诱导的信号。 F = sup>-的存在会增强g = 3.1处的信号强度,而5%乙醇的存在会抑制信号强度,表明该信号来自与X波段信号相同的自旋系统。 g = 4.1。 F -也增强了g = 4.6时的Q波段信号,但没有被5%的乙醇抑制,这使得其身份更加不清楚。尽管可以由相同的自旋系统解决,但可以考虑其他信号源。在g = 3.1处观察到的信号与之前在15.5 GHz处的研究非常吻合,该研究提出X波段g = 4.1信号是由近菱形S = 5/2系统的中间Kramers双峰引起的。 D = 0.455 cm -1 和E / D = 0.25的零场分裂值用于模拟光谱。

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