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author Bhowmick, Asmit
Hussein, Rana
Bogacz, Isabel
Simon, Philipp S.
Ibrahim, Mohamed
Chatterjee, Ruchira
Doyle, Margaret D.
Cheah, Mun Hon
Fransson, Thomas
Chernev, Petko
Kim, In-Sik
Makita, Hiroki
Dasgupta, Medhanjali
Kaminsky, Corey J.
Zhang, Miao
Gätcke, Julia
Haupt, Stephanie
Nangca, Isabela I.
Keable, Stephen M.
Aydin, A. Orkun
Tono, Kensuke
Owada, Shigeki
Gee, Leland B.
Fuller, Franklin D.
Batyuk, Alexander
Alonso-Mori, Roberto
Holton, James M.
Paley, Daniel W.
Moriarty, Nigel W.
Mamedov, Fikret
Adams, Paul D.
Brewster, Aaron S.
Dobbek, Holger
Sauter, Nicholas K.
Bergmann, Uwe
Zouni, Athina
Messinger, Johannes
Kern, Jan
Yano, Junko
Yachandra, Vittal K.
author_facet Bhowmick, Asmit
Hussein, Rana
Bogacz, Isabel
Simon, Philipp S.
Ibrahim, Mohamed
Chatterjee, Ruchira
Doyle, Margaret D.
Cheah, Mun Hon
Fransson, Thomas
Chernev, Petko
Kim, In-Sik
Makita, Hiroki
Dasgupta, Medhanjali
Kaminsky, Corey J.
Zhang, Miao
Gätcke, Julia
Haupt, Stephanie
Nangca, Isabela I.
Keable, Stephen M.
Aydin, A. Orkun
Tono, Kensuke
Owada, Shigeki
Gee, Leland B.
Fuller, Franklin D.
Batyuk, Alexander
Alonso-Mori, Roberto
Holton, James M.
Paley, Daniel W.
Moriarty, Nigel W.
Mamedov, Fikret
Adams, Paul D.
Brewster, Aaron S.
Dobbek, Holger
Sauter, Nicholas K.
Bergmann, Uwe
Zouni, Athina
Messinger, Johannes
Kern, Jan
Yano, Junko
Yachandra, Vittal K.
author_sort Bhowmick, Asmit
collection PubMed
description In natural photosynthesis, the light-driven splitting of water into electrons, protons and molecular oxygen forms the first step of the solar-to-chemical energy conversion process. The reaction takes place in photosystem II, where the Mn(4)CaO(5) cluster first stores four oxidizing equivalents, the S(0) to S(4) intermediate states in the Kok cycle, sequentially generated by photochemical charge separations in the reaction center and then catalyzes the O–O bond formation chemistry(1–3). Here, we report room temperature snapshots by serial femtosecond X-ray crystallography to provide structural insights into the final reaction step of Kok’s photosynthetic water oxidation cycle, the S(3)→[S(4)]→S(0) transition where O(2) is formed and Kok’s water oxidation clock is reset. Our data reveal a complex sequence of events, which occur over micro- to milliseconds, comprising changes at the Mn(4)CaO(5) cluster, its ligands and water pathways as well as controlled proton release through the hydrogen-bonding network of the Cl1 channel. Importantly, the extra O atom O(x), which was introduced as a bridging ligand between Ca and Mn1 during the S(2)→S(3) transition(4–6), disappears or relocates in parallel with Y(z) reduction starting at approximately 700 μs after the third flash. The onset of O(2) evolution, as indicated by the shortening of the Mn1–Mn4 distance, occurs at around 1,200 μs, signifying the presence of a reduced intermediate, possibly a bound peroxide.
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spelling pubmed-101918432023-05-19 Structural evidence for intermediates during O(2) formation in photosystem II Bhowmick, Asmit Hussein, Rana Bogacz, Isabel Simon, Philipp S. Ibrahim, Mohamed Chatterjee, Ruchira Doyle, Margaret D. Cheah, Mun Hon Fransson, Thomas Chernev, Petko Kim, In-Sik Makita, Hiroki Dasgupta, Medhanjali Kaminsky, Corey J. Zhang, Miao Gätcke, Julia Haupt, Stephanie Nangca, Isabela I. Keable, Stephen M. Aydin, A. Orkun Tono, Kensuke Owada, Shigeki Gee, Leland B. Fuller, Franklin D. Batyuk, Alexander Alonso-Mori, Roberto Holton, James M. Paley, Daniel W. Moriarty, Nigel W. Mamedov, Fikret Adams, Paul D. Brewster, Aaron S. Dobbek, Holger Sauter, Nicholas K. Bergmann, Uwe Zouni, Athina Messinger, Johannes Kern, Jan Yano, Junko Yachandra, Vittal K. Nature Article In natural photosynthesis, the light-driven splitting of water into electrons, protons and molecular oxygen forms the first step of the solar-to-chemical energy conversion process. The reaction takes place in photosystem II, where the Mn(4)CaO(5) cluster first stores four oxidizing equivalents, the S(0) to S(4) intermediate states in the Kok cycle, sequentially generated by photochemical charge separations in the reaction center and then catalyzes the O–O bond formation chemistry(1–3). Here, we report room temperature snapshots by serial femtosecond X-ray crystallography to provide structural insights into the final reaction step of Kok’s photosynthetic water oxidation cycle, the S(3)→[S(4)]→S(0) transition where O(2) is formed and Kok’s water oxidation clock is reset. Our data reveal a complex sequence of events, which occur over micro- to milliseconds, comprising changes at the Mn(4)CaO(5) cluster, its ligands and water pathways as well as controlled proton release through the hydrogen-bonding network of the Cl1 channel. Importantly, the extra O atom O(x), which was introduced as a bridging ligand between Ca and Mn1 during the S(2)→S(3) transition(4–6), disappears or relocates in parallel with Y(z) reduction starting at approximately 700 μs after the third flash. The onset of O(2) evolution, as indicated by the shortening of the Mn1–Mn4 distance, occurs at around 1,200 μs, signifying the presence of a reduced intermediate, possibly a bound peroxide. Nature Publishing Group UK 2023-05-03 2023 /pmc/articles/PMC10191843/ /pubmed/37138085 http://dx.doi.org/10.1038/s41586-023-06038-z Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Bhowmick, Asmit
Hussein, Rana
Bogacz, Isabel
Simon, Philipp S.
Ibrahim, Mohamed
Chatterjee, Ruchira
Doyle, Margaret D.
Cheah, Mun Hon
Fransson, Thomas
Chernev, Petko
Kim, In-Sik
Makita, Hiroki
Dasgupta, Medhanjali
Kaminsky, Corey J.
Zhang, Miao
Gätcke, Julia
Haupt, Stephanie
Nangca, Isabela I.
Keable, Stephen M.
Aydin, A. Orkun
Tono, Kensuke
Owada, Shigeki
Gee, Leland B.
Fuller, Franklin D.
Batyuk, Alexander
Alonso-Mori, Roberto
Holton, James M.
Paley, Daniel W.
Moriarty, Nigel W.
Mamedov, Fikret
Adams, Paul D.
Brewster, Aaron S.
Dobbek, Holger
Sauter, Nicholas K.
Bergmann, Uwe
Zouni, Athina
Messinger, Johannes
Kern, Jan
Yano, Junko
Yachandra, Vittal K.
Structural evidence for intermediates during O(2) formation in photosystem II
title Structural evidence for intermediates during O(2) formation in photosystem II
title_full Structural evidence for intermediates during O(2) formation in photosystem II
title_fullStr Structural evidence for intermediates during O(2) formation in photosystem II
title_full_unstemmed Structural evidence for intermediates during O(2) formation in photosystem II
title_short Structural evidence for intermediates during O(2) formation in photosystem II
title_sort structural evidence for intermediates during o(2) formation in photosystem ii
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10191843/
https://www.ncbi.nlm.nih.gov/pubmed/37138085
http://dx.doi.org/10.1038/s41586-023-06038-z
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