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The Single Particles, Clusters and Biomolecules and Serial Femtosecond Crystallography instrument of the European XFEL: initial installation

The European X-ray Free-Electron Laser (FEL) became the first operational high-repetition-rate hard X-ray FEL with first lasing in May 2017. Biological structure determination has already benefitted from the unique properties and capabilities of X-ray FELs, predominantly through the development and...

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Autores principales: Mancuso, Adrian P., Aquila, Andrew, Batchelor, Lewis, Bean, Richard J., Bielecki, Johan, Borchers, Gannon, Doerner, Katerina, Giewekemeyer, Klaus, Graceffa, Rita, Kelsey, Oliver D., Kim, Yoonhee, Kirkwood, Henry J., Legrand, Alexis, Letrun, Romain, Manning, Bradley, Lopez Morillo, Luis, Messerschmidt, Marc, Mills, Grant, Raabe, Steffen, Reimers, Nadja, Round, Adam, Sato, Tokushi, Schulz, Joachim, Signe Takem, Cedric, Sikorski, Marcin, Stern, Stephan, Thute, Prasad, Vagovič, Patrik, Weinhausen, Britta, Tschentscher, Thomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6510195/
https://www.ncbi.nlm.nih.gov/pubmed/31074429
http://dx.doi.org/10.1107/S1600577519003308
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author Mancuso, Adrian P.
Aquila, Andrew
Batchelor, Lewis
Bean, Richard J.
Bielecki, Johan
Borchers, Gannon
Doerner, Katerina
Giewekemeyer, Klaus
Graceffa, Rita
Kelsey, Oliver D.
Kim, Yoonhee
Kirkwood, Henry J.
Legrand, Alexis
Letrun, Romain
Manning, Bradley
Lopez Morillo, Luis
Messerschmidt, Marc
Mills, Grant
Raabe, Steffen
Reimers, Nadja
Round, Adam
Sato, Tokushi
Schulz, Joachim
Signe Takem, Cedric
Sikorski, Marcin
Stern, Stephan
Thute, Prasad
Vagovič, Patrik
Weinhausen, Britta
Tschentscher, Thomas
author_facet Mancuso, Adrian P.
Aquila, Andrew
Batchelor, Lewis
Bean, Richard J.
Bielecki, Johan
Borchers, Gannon
Doerner, Katerina
Giewekemeyer, Klaus
Graceffa, Rita
Kelsey, Oliver D.
Kim, Yoonhee
Kirkwood, Henry J.
Legrand, Alexis
Letrun, Romain
Manning, Bradley
Lopez Morillo, Luis
Messerschmidt, Marc
Mills, Grant
Raabe, Steffen
Reimers, Nadja
Round, Adam
Sato, Tokushi
Schulz, Joachim
Signe Takem, Cedric
Sikorski, Marcin
Stern, Stephan
Thute, Prasad
Vagovič, Patrik
Weinhausen, Britta
Tschentscher, Thomas
author_sort Mancuso, Adrian P.
collection PubMed
description The European X-ray Free-Electron Laser (FEL) became the first operational high-repetition-rate hard X-ray FEL with first lasing in May 2017. Biological structure determination has already benefitted from the unique properties and capabilities of X-ray FELs, predominantly through the development and application of serial crystallography. The possibility of now performing such experiments at data rates more than an order of magnitude greater than previous X-ray FELs enables not only a higher rate of discovery but also new classes of experiments previously not feasible at lower data rates. One example is time-resolved experiments requiring a higher number of time steps for interpretation, or structure determination from samples with low hit rates in conventional X-ray FEL serial crystallography. Following first lasing at the European XFEL, initial commissioning and operation occurred at two scientific instruments, one of which is the Single Particles, Clusters and Biomolecules and Serial Femtosecond Crystallography (SPB/SFX) instrument. This instrument provides a photon energy range, focal spot sizes and diagnostic tools necessary for structure determination of biological specimens. The instrumentation explicitly addresses serial crystallography and the developing single particle imaging method as well as other forward-scattering and diffraction techniques. This paper describes the major science cases of SPB/SFX and its initial instrumentation – in particular its optical systems, available sample delivery methods, 2D detectors, supporting optical laser systems and key diagnostic components. The present capabilities of the instrument will be reviewed and a brief outlook of its future capabilities is also described.
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spelling pubmed-65101952019-06-03 The Single Particles, Clusters and Biomolecules and Serial Femtosecond Crystallography instrument of the European XFEL: initial installation Mancuso, Adrian P. Aquila, Andrew Batchelor, Lewis Bean, Richard J. Bielecki, Johan Borchers, Gannon Doerner, Katerina Giewekemeyer, Klaus Graceffa, Rita Kelsey, Oliver D. Kim, Yoonhee Kirkwood, Henry J. Legrand, Alexis Letrun, Romain Manning, Bradley Lopez Morillo, Luis Messerschmidt, Marc Mills, Grant Raabe, Steffen Reimers, Nadja Round, Adam Sato, Tokushi Schulz, Joachim Signe Takem, Cedric Sikorski, Marcin Stern, Stephan Thute, Prasad Vagovič, Patrik Weinhausen, Britta Tschentscher, Thomas J Synchrotron Radiat Research Papers The European X-ray Free-Electron Laser (FEL) became the first operational high-repetition-rate hard X-ray FEL with first lasing in May 2017. Biological structure determination has already benefitted from the unique properties and capabilities of X-ray FELs, predominantly through the development and application of serial crystallography. The possibility of now performing such experiments at data rates more than an order of magnitude greater than previous X-ray FELs enables not only a higher rate of discovery but also new classes of experiments previously not feasible at lower data rates. One example is time-resolved experiments requiring a higher number of time steps for interpretation, or structure determination from samples with low hit rates in conventional X-ray FEL serial crystallography. Following first lasing at the European XFEL, initial commissioning and operation occurred at two scientific instruments, one of which is the Single Particles, Clusters and Biomolecules and Serial Femtosecond Crystallography (SPB/SFX) instrument. This instrument provides a photon energy range, focal spot sizes and diagnostic tools necessary for structure determination of biological specimens. The instrumentation explicitly addresses serial crystallography and the developing single particle imaging method as well as other forward-scattering and diffraction techniques. This paper describes the major science cases of SPB/SFX and its initial instrumentation – in particular its optical systems, available sample delivery methods, 2D detectors, supporting optical laser systems and key diagnostic components. The present capabilities of the instrument will be reviewed and a brief outlook of its future capabilities is also described. International Union of Crystallography 2019-04-12 /pmc/articles/PMC6510195/ /pubmed/31074429 http://dx.doi.org/10.1107/S1600577519003308 Text en © Adrian P. Mancuso 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
Mancuso, Adrian P.
Aquila, Andrew
Batchelor, Lewis
Bean, Richard J.
Bielecki, Johan
Borchers, Gannon
Doerner, Katerina
Giewekemeyer, Klaus
Graceffa, Rita
Kelsey, Oliver D.
Kim, Yoonhee
Kirkwood, Henry J.
Legrand, Alexis
Letrun, Romain
Manning, Bradley
Lopez Morillo, Luis
Messerschmidt, Marc
Mills, Grant
Raabe, Steffen
Reimers, Nadja
Round, Adam
Sato, Tokushi
Schulz, Joachim
Signe Takem, Cedric
Sikorski, Marcin
Stern, Stephan
Thute, Prasad
Vagovič, Patrik
Weinhausen, Britta
Tschentscher, Thomas
The Single Particles, Clusters and Biomolecules and Serial Femtosecond Crystallography instrument of the European XFEL: initial installation
title The Single Particles, Clusters and Biomolecules and Serial Femtosecond Crystallography instrument of the European XFEL: initial installation
title_full The Single Particles, Clusters and Biomolecules and Serial Femtosecond Crystallography instrument of the European XFEL: initial installation
title_fullStr The Single Particles, Clusters and Biomolecules and Serial Femtosecond Crystallography instrument of the European XFEL: initial installation
title_full_unstemmed The Single Particles, Clusters and Biomolecules and Serial Femtosecond Crystallography instrument of the European XFEL: initial installation
title_short The Single Particles, Clusters and Biomolecules and Serial Femtosecond Crystallography instrument of the European XFEL: initial installation
title_sort single particles, clusters and biomolecules and serial femtosecond crystallography instrument of the european xfel: initial installation
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6510195/
https://www.ncbi.nlm.nih.gov/pubmed/31074429
http://dx.doi.org/10.1107/S1600577519003308
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