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High-viscosity injector-based pink-beam serial crystallography of microcrystals at a synchrotron radiation source

Since the first successful serial crystallography (SX) experiment at a synchrotron radiation source, the popularity of this approach has continued to grow showing that third-generation synchrotrons can be viable alternatives to scarce X-ray free-electron laser sources. Synchrotron radiation flux may...

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Autores principales: Martin-Garcia, Jose M., Zhu, Lan, Mendez, Derek, Lee, Ming-Yue, Chun, Eugene, Li, Chufeng, Hu, Hao, Subramanian, Ganesh, Kissick, David, Ogata, Craig, Henning, Robert, Ishchenko, Andrii, Dobson, Zachary, Zhang, Shangji, Weierstall, Uwe, Spence, John C. H., Fromme, Petra, Zatsepin, Nadia A., Fischetti, Robert F., Cherezov, Vadim, Liu, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6503920/
https://www.ncbi.nlm.nih.gov/pubmed/31098022
http://dx.doi.org/10.1107/S205225251900263X
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author Martin-Garcia, Jose M.
Zhu, Lan
Mendez, Derek
Lee, Ming-Yue
Chun, Eugene
Li, Chufeng
Hu, Hao
Subramanian, Ganesh
Kissick, David
Ogata, Craig
Henning, Robert
Ishchenko, Andrii
Dobson, Zachary
Zhang, Shangji
Weierstall, Uwe
Spence, John C. H.
Fromme, Petra
Zatsepin, Nadia A.
Fischetti, Robert F.
Cherezov, Vadim
Liu, Wei
author_facet Martin-Garcia, Jose M.
Zhu, Lan
Mendez, Derek
Lee, Ming-Yue
Chun, Eugene
Li, Chufeng
Hu, Hao
Subramanian, Ganesh
Kissick, David
Ogata, Craig
Henning, Robert
Ishchenko, Andrii
Dobson, Zachary
Zhang, Shangji
Weierstall, Uwe
Spence, John C. H.
Fromme, Petra
Zatsepin, Nadia A.
Fischetti, Robert F.
Cherezov, Vadim
Liu, Wei
author_sort Martin-Garcia, Jose M.
collection PubMed
description Since the first successful serial crystallography (SX) experiment at a synchrotron radiation source, the popularity of this approach has continued to grow showing that third-generation synchrotrons can be viable alternatives to scarce X-ray free-electron laser sources. Synchrotron radiation flux may be increased ∼100 times by a moderate increase in the bandwidth (‘pink beam’ conditions) at some cost to data analysis complexity. Here, we report the first high-viscosity injector-based pink-beam SX experiments. The structures of proteinase K (PK) and A(2A) adenosine receptor (A(2A)AR) were determined to resolutions of 1.8 and 4.2 Å using 4 and 24 consecutive 100 ps X-ray pulse exposures, respectively. Strong PK data were processed using existing Laue approaches, while weaker A(2A)AR data required an alternative data-processing strategy. This demonstration of the feasibility presents new opportunities for time-resolved experiments with microcrystals to study structural changes in real time at pink-beam synchrotron beamlines worldwide.
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spelling pubmed-65039202019-05-16 High-viscosity injector-based pink-beam serial crystallography of microcrystals at a synchrotron radiation source Martin-Garcia, Jose M. Zhu, Lan Mendez, Derek Lee, Ming-Yue Chun, Eugene Li, Chufeng Hu, Hao Subramanian, Ganesh Kissick, David Ogata, Craig Henning, Robert Ishchenko, Andrii Dobson, Zachary Zhang, Shangji Weierstall, Uwe Spence, John C. H. Fromme, Petra Zatsepin, Nadia A. Fischetti, Robert F. Cherezov, Vadim Liu, Wei IUCrJ Research Papers Since the first successful serial crystallography (SX) experiment at a synchrotron radiation source, the popularity of this approach has continued to grow showing that third-generation synchrotrons can be viable alternatives to scarce X-ray free-electron laser sources. Synchrotron radiation flux may be increased ∼100 times by a moderate increase in the bandwidth (‘pink beam’ conditions) at some cost to data analysis complexity. Here, we report the first high-viscosity injector-based pink-beam SX experiments. The structures of proteinase K (PK) and A(2A) adenosine receptor (A(2A)AR) were determined to resolutions of 1.8 and 4.2 Å using 4 and 24 consecutive 100 ps X-ray pulse exposures, respectively. Strong PK data were processed using existing Laue approaches, while weaker A(2A)AR data required an alternative data-processing strategy. This demonstration of the feasibility presents new opportunities for time-resolved experiments with microcrystals to study structural changes in real time at pink-beam synchrotron beamlines worldwide. International Union of Crystallography 2019-04-05 /pmc/articles/PMC6503920/ /pubmed/31098022 http://dx.doi.org/10.1107/S205225251900263X Text en © Martin-Garcia et al. 2019 http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.http://creativecommons.org/licenses/by/4.0/
spellingShingle Research Papers
Martin-Garcia, Jose M.
Zhu, Lan
Mendez, Derek
Lee, Ming-Yue
Chun, Eugene
Li, Chufeng
Hu, Hao
Subramanian, Ganesh
Kissick, David
Ogata, Craig
Henning, Robert
Ishchenko, Andrii
Dobson, Zachary
Zhang, Shangji
Weierstall, Uwe
Spence, John C. H.
Fromme, Petra
Zatsepin, Nadia A.
Fischetti, Robert F.
Cherezov, Vadim
Liu, Wei
High-viscosity injector-based pink-beam serial crystallography of microcrystals at a synchrotron radiation source
title High-viscosity injector-based pink-beam serial crystallography of microcrystals at a synchrotron radiation source
title_full High-viscosity injector-based pink-beam serial crystallography of microcrystals at a synchrotron radiation source
title_fullStr High-viscosity injector-based pink-beam serial crystallography of microcrystals at a synchrotron radiation source
title_full_unstemmed High-viscosity injector-based pink-beam serial crystallography of microcrystals at a synchrotron radiation source
title_short High-viscosity injector-based pink-beam serial crystallography of microcrystals at a synchrotron radiation source
title_sort high-viscosity injector-based pink-beam serial crystallography of microcrystals at a synchrotron radiation source
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6503920/
https://www.ncbi.nlm.nih.gov/pubmed/31098022
http://dx.doi.org/10.1107/S205225251900263X
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