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EPR studies of the water oxidizing complex in the S1 and the higher S states: the manganese cluster and YZ radical
Affiliation:1. Laboratory for Photo-Biology, RIKEN Photodynamics Research Center, The Institute of Physical and Chemical Research, 519-1399 Aoba, Aramaki, Aoba, Sendai 980-0845, Japan;2. Faculty of Science, Kwansei Gakuin University, Uegahara 1-1-155, Nishinomiya 662-8501, Japan
Abstract:The parallel polarization electron paramagnetic resonance (EPR) method has been applied to investigate manganese EPR signals of native S1 and S3 states of the water oxidizing complex (WOC) in photosystem (PS) II. The EPR signals in both states were assigned to thermally excited states with S=1, from which zero-field interaction parameters D and E were derived. Three kinds of signals, the doublet signal, the singlet-like signal and g=11–15 signal, were detected in Ca2+-depleted PS II. The g=11–15 signal was observed by parallel and perpendicular modes and assigned to a higher oxidation state beyond S2 in Ca2+-depleted PS II. The singlet-like signal was associated with the g=11–15 signal but not with the YZ (the tyrosine residue 161 of the D1 polypeptide in PS II) radical. The doublet signal was associated with the YZ radical as proved by pulsed electron nuclear double resonance (ENDOR) and ENDOR-induced EPR. The electron transfer mechanism relevant to the role of YZ radical was discussed.
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