| ID | 69963 |
| FullText URL | |
| Author |
Kosaki, Shinya
Department of Physics, Graduate School of Science, Nagoya University
Nakamura, Naohiko
Department of Physics, Graduate School of Science, Nagoya University
Nakajima, Yoshiki
Research Institute for Interdisciplinary Science, Advanced Research Field, and Graduate School of Environmental, Life, Natural Science and Technology, Okayama University
ORCID
Kaken ID
Shen, Jian-Ren
Research Institute for Interdisciplinary Science, Advanced Research Field, and Graduate School of Environmental, Life, Natural Science and Technology, Okayama University
ORCID
Kaken ID
publons
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Mino, Hiroyuki
Department of Physics, Graduate School of Science, Nagoya University
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| Abstract | The electronic structure of the S1 state of photosystem II (PSII) was investigated using selective hole burning of Q-band pulsed electron paramagnetic resonance. The free induction decay and spin–echo signals of the tyrosine radical YD• in the plant PSII oscillated because of the magnetic dipole–dipole interaction with the S1 state Mn cluster. The initial period was 410 ns (2.44 MHz) and was assigned to the S = 1 spin state. Based on the oscillation analysis, both Mn1 and Mn4 and both Mn2 and Mn3 were assigned as Mn(III) and Mn(IV), respectively, which is consistent with the quantum chemical calculations. The 410 ns period was accounted for in the simplified model using the isotropic spin density distribution ratio [1.6:–1.1:–1.1:1.6] for Mn1–4 ions. This oscillation was identical with that observed in the presence of methanol. The oscillation decreased in PsbP/Q- and PsbO/P/Q-depleted PSII. In Thermosynechococcus vulcanus, two periods, 390 ns (2.56 MHz) and 630 ns (1.59 MHz), were detected, indicating that the cyanobacterial S1 state includes two isomers, S = 1 and S ≥ 2 spins. The S ≥ 2 spin was not detected in PsbO/U/V-depleted PSII without polyethylene glycol. The S ≥ 2 state was consistent with the reported quantum chemical calculation using S = 3. A simplified model accounted for the S = 1 state as the spin density distribution [1.8:–1.3:–1.3:1.8] and for the S ≥ 2 state as the isotropic spin density distribution [−0.5:0.5:0.5:0.5] for Mn1–4 ions. In combination with quantum chemical calculations, the most probable protonated structure is W1 = H2O, W2 = H2O, O4 = O2–, and O5 = O2– for the S1 state. These results demonstrate that the selective hole burning method is a powerful tool to complement X-ray studies to determine the valence and protonation structure of manganese clusters, not only in the S1 state but also in higher S-states and general metal clusters, which would provide important insights into the water oxidation mechanism.
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| Keywords | Photosystem II
Oxygen evolution
S1 state
Mn cluster
EPR
Selective hole-burning
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| Published Date | 2025-09-14
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| Publication Title |
ACS Physical Chemistry Au
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| Volume | volume5
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| Issue | issue6
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| Publisher | American Chemical Society (ACS)
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| Start Page | 660
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| End Page | 671
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| ISSN | 2694-2445
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| Content Type |
Journal Article
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| language |
English
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| OAI-PMH Set |
岡山大学
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| Copyright Holders | © 2025 The Authors.
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| File Version | publisher
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| PubMed ID | |
| DOI | |
| Web of Science KeyUT | |
| Related Url | isVersionOf https://doi.org/10.1021/acsphyschemau.5c00068
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| License | https://creativecommons.org/licenses/by-nc-nd/4.0/
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| 助成情報 |
( 文部科学省 / Ministry of Education )
JPMXP1224MS1016:
( 分子科学研究所 / Institute for Molecular Science )
JPMXP1225MS1014:
( 分子科学研究所 / Institute for Molecular Science )
22K06160:
光合成酸素発生系の基質水分子結合過程の追跡
( 独立行政法人日本学術振興会 / Japan Society for the Promotion of Science )
24H02078:
スピン拡散法による光合成酸素発生系の磁気構造解析
( 独立行政法人日本学術振興会 / Japan Society for the Promotion of Science )
22H04916:
光合成における光誘導水分解反応機構及び光エネルギー利用機構の解明
( 独立行政法人日本学術振興会 / Japan Society for the Promotion of Science )
JPMXP1323015488:
( 文部科学省 / Ministry of Education )
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