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Serial millisecond crystallography of membrane and soluble protein microcrystals using synchrotron radiation

Crystal structure determination of biological macromolecules using the novel technique of serial femtosecond crystallography (SFX) is severely limited by the scarcity of X-ray free-electron laser (XFEL) sources. However, recent and future upgrades render microfocus beamlines at synchrotron-radiation...

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Autores principales: Martin-Garcia, Jose M., Conrad, Chelsie E., Nelson, Garrett, Stander, Natasha, Zatsepin, Nadia A., Zook, James, Zhu, Lan, Geiger, James, Chun, Eugene, Kissick, David, Hilgart, Mark C., Ogata, Craig, Ishchenko, Andrii, Nagaratnam, Nirupa, Roy-Chowdhury, Shatabdi, Coe, Jesse, Subramanian, Ganesh, Schaffer, Alexander, James, Daniel, Ketwala, Gihan, Venugopalan, Nagarajan, Xu, Shenglan, Corcoran, Stephen, Ferguson, Dale, Weierstall, Uwe, Spence, John C. H., Cherezov, Vadim, Fromme, Petra, Fischetti, Robert F., Liu, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5571807/
https://www.ncbi.nlm.nih.gov/pubmed/28875031
http://dx.doi.org/10.1107/S205225251700570X
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author Martin-Garcia, Jose M.
Conrad, Chelsie E.
Nelson, Garrett
Stander, Natasha
Zatsepin, Nadia A.
Zook, James
Zhu, Lan
Geiger, James
Chun, Eugene
Kissick, David
Hilgart, Mark C.
Ogata, Craig
Ishchenko, Andrii
Nagaratnam, Nirupa
Roy-Chowdhury, Shatabdi
Coe, Jesse
Subramanian, Ganesh
Schaffer, Alexander
James, Daniel
Ketwala, Gihan
Venugopalan, Nagarajan
Xu, Shenglan
Corcoran, Stephen
Ferguson, Dale
Weierstall, Uwe
Spence, John C. H.
Cherezov, Vadim
Fromme, Petra
Fischetti, Robert F.
Liu, Wei
author_facet Martin-Garcia, Jose M.
Conrad, Chelsie E.
Nelson, Garrett
Stander, Natasha
Zatsepin, Nadia A.
Zook, James
Zhu, Lan
Geiger, James
Chun, Eugene
Kissick, David
Hilgart, Mark C.
Ogata, Craig
Ishchenko, Andrii
Nagaratnam, Nirupa
Roy-Chowdhury, Shatabdi
Coe, Jesse
Subramanian, Ganesh
Schaffer, Alexander
James, Daniel
Ketwala, Gihan
Venugopalan, Nagarajan
Xu, Shenglan
Corcoran, Stephen
Ferguson, Dale
Weierstall, Uwe
Spence, John C. H.
Cherezov, Vadim
Fromme, Petra
Fischetti, Robert F.
Liu, Wei
author_sort Martin-Garcia, Jose M.
collection PubMed
description Crystal structure determination of biological macromolecules using the novel technique of serial femtosecond crystallography (SFX) is severely limited by the scarcity of X-ray free-electron laser (XFEL) sources. However, recent and future upgrades render microfocus beamlines at synchrotron-radiation sources suitable for room-temperature serial crystallography data collection also. Owing to the longer exposure times that are needed at synchrotrons, serial data collection is termed serial millisecond crystallography (SMX). As a result, the number of SMX experiments is growing rapidly, with a dozen experiments reported so far. Here, the first high-viscosity injector-based SMX experiments carried out at a US synchrotron source, the Advanced Photon Source (APS), are reported. Microcrystals (5–20 µm) of a wide variety of proteins, including lysozyme, thaumatin, phycocyanin, the human A(2A) adenosine receptor (A(2A)AR), the soluble fragment of the membrane lipoprotein Flpp3 and proteinase K, were screened. Crystals suspended in lipidic cubic phase (LCP) or a high-molecular-weight poly(ethylene oxide) (PEO; molecular weight 8 000 000) were delivered to the beam using a high-viscosity injector. In-house data-reduction (hit-finding) software developed at APS as well as the SFX data-reduction and analysis software suites Cheetah and CrystFEL enabled efficient on-site SMX data monitoring, reduction and processing. Complete data sets were collected for A(2A)AR, phycocyanin, Flpp3, proteinase K and lysozyme, and the structures of A(2A)AR, phycocyanin, proteinase K and lysozyme were determined at 3.2, 3.1, 2.65 and 2.05 Å resolution, respectively. The data demonstrate the feasibility of serial millisecond crystallography from 5–20 µm crystals using a high-viscosity injector at APS. The resolution of the crystal structures obtained in this study was dictated by the current flux density and crystal size, but upcoming developments in beamline optics and the planned APS-U upgrade will increase the intensity by two orders of magnitude. These developments will enable structure determination from smaller and/or weakly diffracting microcrystals.
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spelling pubmed-55718072017-09-05 Serial millisecond crystallography of membrane and soluble protein microcrystals using synchrotron radiation Martin-Garcia, Jose M. Conrad, Chelsie E. Nelson, Garrett Stander, Natasha Zatsepin, Nadia A. Zook, James Zhu, Lan Geiger, James Chun, Eugene Kissick, David Hilgart, Mark C. Ogata, Craig Ishchenko, Andrii Nagaratnam, Nirupa Roy-Chowdhury, Shatabdi Coe, Jesse Subramanian, Ganesh Schaffer, Alexander James, Daniel Ketwala, Gihan Venugopalan, Nagarajan Xu, Shenglan Corcoran, Stephen Ferguson, Dale Weierstall, Uwe Spence, John C. H. Cherezov, Vadim Fromme, Petra Fischetti, Robert F. Liu, Wei IUCrJ Research Papers Crystal structure determination of biological macromolecules using the novel technique of serial femtosecond crystallography (SFX) is severely limited by the scarcity of X-ray free-electron laser (XFEL) sources. However, recent and future upgrades render microfocus beamlines at synchrotron-radiation sources suitable for room-temperature serial crystallography data collection also. Owing to the longer exposure times that are needed at synchrotrons, serial data collection is termed serial millisecond crystallography (SMX). As a result, the number of SMX experiments is growing rapidly, with a dozen experiments reported so far. Here, the first high-viscosity injector-based SMX experiments carried out at a US synchrotron source, the Advanced Photon Source (APS), are reported. Microcrystals (5–20 µm) of a wide variety of proteins, including lysozyme, thaumatin, phycocyanin, the human A(2A) adenosine receptor (A(2A)AR), the soluble fragment of the membrane lipoprotein Flpp3 and proteinase K, were screened. Crystals suspended in lipidic cubic phase (LCP) or a high-molecular-weight poly(ethylene oxide) (PEO; molecular weight 8 000 000) were delivered to the beam using a high-viscosity injector. In-house data-reduction (hit-finding) software developed at APS as well as the SFX data-reduction and analysis software suites Cheetah and CrystFEL enabled efficient on-site SMX data monitoring, reduction and processing. Complete data sets were collected for A(2A)AR, phycocyanin, Flpp3, proteinase K and lysozyme, and the structures of A(2A)AR, phycocyanin, proteinase K and lysozyme were determined at 3.2, 3.1, 2.65 and 2.05 Å resolution, respectively. The data demonstrate the feasibility of serial millisecond crystallography from 5–20 µm crystals using a high-viscosity injector at APS. The resolution of the crystal structures obtained in this study was dictated by the current flux density and crystal size, but upcoming developments in beamline optics and the planned APS-U upgrade will increase the intensity by two orders of magnitude. These developments will enable structure determination from smaller and/or weakly diffracting microcrystals. International Union of Crystallography 2017-05-24 /pmc/articles/PMC5571807/ /pubmed/28875031 http://dx.doi.org/10.1107/S205225251700570X Text en © Jose M. Martin-Garcia et al. 2017 http://creativecommons.org/licenses/by/2.0/uk/ 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/2.0/uk/
spellingShingle Research Papers
Martin-Garcia, Jose M.
Conrad, Chelsie E.
Nelson, Garrett
Stander, Natasha
Zatsepin, Nadia A.
Zook, James
Zhu, Lan
Geiger, James
Chun, Eugene
Kissick, David
Hilgart, Mark C.
Ogata, Craig
Ishchenko, Andrii
Nagaratnam, Nirupa
Roy-Chowdhury, Shatabdi
Coe, Jesse
Subramanian, Ganesh
Schaffer, Alexander
James, Daniel
Ketwala, Gihan
Venugopalan, Nagarajan
Xu, Shenglan
Corcoran, Stephen
Ferguson, Dale
Weierstall, Uwe
Spence, John C. H.
Cherezov, Vadim
Fromme, Petra
Fischetti, Robert F.
Liu, Wei
Serial millisecond crystallography of membrane and soluble protein microcrystals using synchrotron radiation
title Serial millisecond crystallography of membrane and soluble protein microcrystals using synchrotron radiation
title_full Serial millisecond crystallography of membrane and soluble protein microcrystals using synchrotron radiation
title_fullStr Serial millisecond crystallography of membrane and soluble protein microcrystals using synchrotron radiation
title_full_unstemmed Serial millisecond crystallography of membrane and soluble protein microcrystals using synchrotron radiation
title_short Serial millisecond crystallography of membrane and soluble protein microcrystals using synchrotron radiation
title_sort serial millisecond crystallography of membrane and soluble protein microcrystals using synchrotron radiation
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5571807/
https://www.ncbi.nlm.nih.gov/pubmed/28875031
http://dx.doi.org/10.1107/S205225251700570X
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