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Effects of x-ray free-electron laser pulse intensity on the Mn Kβ(1,3) x-ray emission spectrum in photosystem II—A case study for metalloprotein crystals and solutions

In the last ten years, x-ray free-electron lasers (XFELs) have been successfully employed to characterize metalloproteins at room temperature using various techniques including x-ray diffraction, scattering, and spectroscopy. The approach has been to outrun the radiation damage by using femtosecond...

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Autores principales: Fransson, Thomas, Alonso-Mori, Roberto, Chatterjee, Ruchira, Cheah, Mun Hon, Ibrahim, Mohamed, Hussein, Rana, Zhang, Miao, Fuller, Franklin, Gul, Sheraz, Kim, In-Sik, Simon, Philipp S., Bogacz, Isabel, Makita, Hiroki, de Lichtenberg, Casper, Song, Sanghoon, Batyuk, Alexander, Sokaras, Dimosthenis, Massad, Ramzi, Doyle, Margaret, Britz, Alexander, Weninger, Clemens, Zouni, Athina, Messinger, Johannes, Yachandra, Vittal K., Yano, Junko, Kern, Jan, Bergmann, Uwe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Crystallographic Association 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8610604/
https://www.ncbi.nlm.nih.gov/pubmed/34849380
http://dx.doi.org/10.1063/4.0000130
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author Fransson, Thomas
Alonso-Mori, Roberto
Chatterjee, Ruchira
Cheah, Mun Hon
Ibrahim, Mohamed
Hussein, Rana
Zhang, Miao
Fuller, Franklin
Gul, Sheraz
Kim, In-Sik
Simon, Philipp S.
Bogacz, Isabel
Makita, Hiroki
de Lichtenberg, Casper
Song, Sanghoon
Batyuk, Alexander
Sokaras, Dimosthenis
Massad, Ramzi
Doyle, Margaret
Britz, Alexander
Weninger, Clemens
Zouni, Athina
Messinger, Johannes
Yachandra, Vittal K.
Yano, Junko
Kern, Jan
Bergmann, Uwe
author_facet Fransson, Thomas
Alonso-Mori, Roberto
Chatterjee, Ruchira
Cheah, Mun Hon
Ibrahim, Mohamed
Hussein, Rana
Zhang, Miao
Fuller, Franklin
Gul, Sheraz
Kim, In-Sik
Simon, Philipp S.
Bogacz, Isabel
Makita, Hiroki
de Lichtenberg, Casper
Song, Sanghoon
Batyuk, Alexander
Sokaras, Dimosthenis
Massad, Ramzi
Doyle, Margaret
Britz, Alexander
Weninger, Clemens
Zouni, Athina
Messinger, Johannes
Yachandra, Vittal K.
Yano, Junko
Kern, Jan
Bergmann, Uwe
author_sort Fransson, Thomas
collection PubMed
description In the last ten years, x-ray free-electron lasers (XFELs) have been successfully employed to characterize metalloproteins at room temperature using various techniques including x-ray diffraction, scattering, and spectroscopy. The approach has been to outrun the radiation damage by using femtosecond (fs) x-ray pulses. An example of an important and damage sensitive active metal center is the Mn(4)CaO(5) cluster in photosystem II (PS II), the catalytic site of photosynthetic water oxidation. The combination of serial femtosecond x-ray crystallography and Kβ x-ray emission spectroscopy (XES) has proven to be a powerful multimodal approach for simultaneously probing the overall protein structure and the electronic state of the Mn(4)CaO(5) cluster throughout the catalytic (Kok) cycle. As the observed spectral changes in the Mn(4)CaO(5) cluster are very subtle, it is critical to consider the potential effects of the intense XFEL pulses on the Kβ XES signal. We report here a systematic study of the effects of XFEL peak power, beam focus, and dose on the Mn Kβ(1,3) XES spectra in PS II over a wide range of pulse parameters collected over seven different experimental runs using both microcrystal and solution PS II samples. Our findings show that for beam intensities ranging from ∼5 × 10(15) to 5 × 10(17) W/cm(2) at a pulse length of ∼35 fs, the spectral effects are small compared to those observed between S-states in the Kok cycle. Our results provide a benchmark for other XFEL-based XES studies on metalloproteins, confirming the viability of this approach.
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spelling pubmed-86106042021-11-29 Effects of x-ray free-electron laser pulse intensity on the Mn Kβ(1,3) x-ray emission spectrum in photosystem II—A case study for metalloprotein crystals and solutions Fransson, Thomas Alonso-Mori, Roberto Chatterjee, Ruchira Cheah, Mun Hon Ibrahim, Mohamed Hussein, Rana Zhang, Miao Fuller, Franklin Gul, Sheraz Kim, In-Sik Simon, Philipp S. Bogacz, Isabel Makita, Hiroki de Lichtenberg, Casper Song, Sanghoon Batyuk, Alexander Sokaras, Dimosthenis Massad, Ramzi Doyle, Margaret Britz, Alexander Weninger, Clemens Zouni, Athina Messinger, Johannes Yachandra, Vittal K. Yano, Junko Kern, Jan Bergmann, Uwe Struct Dyn ARTICLES In the last ten years, x-ray free-electron lasers (XFELs) have been successfully employed to characterize metalloproteins at room temperature using various techniques including x-ray diffraction, scattering, and spectroscopy. The approach has been to outrun the radiation damage by using femtosecond (fs) x-ray pulses. An example of an important and damage sensitive active metal center is the Mn(4)CaO(5) cluster in photosystem II (PS II), the catalytic site of photosynthetic water oxidation. The combination of serial femtosecond x-ray crystallography and Kβ x-ray emission spectroscopy (XES) has proven to be a powerful multimodal approach for simultaneously probing the overall protein structure and the electronic state of the Mn(4)CaO(5) cluster throughout the catalytic (Kok) cycle. As the observed spectral changes in the Mn(4)CaO(5) cluster are very subtle, it is critical to consider the potential effects of the intense XFEL pulses on the Kβ XES signal. We report here a systematic study of the effects of XFEL peak power, beam focus, and dose on the Mn Kβ(1,3) XES spectra in PS II over a wide range of pulse parameters collected over seven different experimental runs using both microcrystal and solution PS II samples. Our findings show that for beam intensities ranging from ∼5 × 10(15) to 5 × 10(17) W/cm(2) at a pulse length of ∼35 fs, the spectral effects are small compared to those observed between S-states in the Kok cycle. Our results provide a benchmark for other XFEL-based XES studies on metalloproteins, confirming the viability of this approach. American Crystallographic Association 2021-11-22 /pmc/articles/PMC8610604/ /pubmed/34849380 http://dx.doi.org/10.1063/4.0000130 Text en © 2021 Author(s). https://creativecommons.org/licenses/by/4.0/All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle ARTICLES
Fransson, Thomas
Alonso-Mori, Roberto
Chatterjee, Ruchira
Cheah, Mun Hon
Ibrahim, Mohamed
Hussein, Rana
Zhang, Miao
Fuller, Franklin
Gul, Sheraz
Kim, In-Sik
Simon, Philipp S.
Bogacz, Isabel
Makita, Hiroki
de Lichtenberg, Casper
Song, Sanghoon
Batyuk, Alexander
Sokaras, Dimosthenis
Massad, Ramzi
Doyle, Margaret
Britz, Alexander
Weninger, Clemens
Zouni, Athina
Messinger, Johannes
Yachandra, Vittal K.
Yano, Junko
Kern, Jan
Bergmann, Uwe
Effects of x-ray free-electron laser pulse intensity on the Mn Kβ(1,3) x-ray emission spectrum in photosystem II—A case study for metalloprotein crystals and solutions
title Effects of x-ray free-electron laser pulse intensity on the Mn Kβ(1,3) x-ray emission spectrum in photosystem II—A case study for metalloprotein crystals and solutions
title_full Effects of x-ray free-electron laser pulse intensity on the Mn Kβ(1,3) x-ray emission spectrum in photosystem II—A case study for metalloprotein crystals and solutions
title_fullStr Effects of x-ray free-electron laser pulse intensity on the Mn Kβ(1,3) x-ray emission spectrum in photosystem II—A case study for metalloprotein crystals and solutions
title_full_unstemmed Effects of x-ray free-electron laser pulse intensity on the Mn Kβ(1,3) x-ray emission spectrum in photosystem II—A case study for metalloprotein crystals and solutions
title_short Effects of x-ray free-electron laser pulse intensity on the Mn Kβ(1,3) x-ray emission spectrum in photosystem II—A case study for metalloprotein crystals and solutions
title_sort effects of x-ray free-electron laser pulse intensity on the mn kβ(1,3) x-ray emission spectrum in photosystem ii—a case study for metalloprotein crystals and solutions
topic ARTICLES
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8610604/
https://www.ncbi.nlm.nih.gov/pubmed/34849380
http://dx.doi.org/10.1063/4.0000130
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