Megahertz data collection from protein ...
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Article dans une revue scientifique: Article original
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Title :
Megahertz data collection from protein microcrystals at an X-ray free-electron laser
Author(s) :
Grünbein, Marie Luise [Auteur]
Max-Planck-Institut für Medizinische Forschung
Bielecki, Johan [Auteur]
European XFEL Gmbh
Gorel, Alexander [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Stricker, Miriam [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Bean, Richard [Auteur]
European XFEL Gmbh
Cammarata, Marco [Auteur]
Université de Rennes [UR]
Dörner, Katerina [Auteur]
European XFEL Gmbh
Fröhlich, Lars [Auteur]
Deutsches Elektronen-Synchrotron [Hamburg] [DESY]
Hartmann, Elisabeth [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Hauf, Steffen [Auteur]
European XFEL Gmbh
Hilpert, Mario [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Kim, Yoonhee [Auteur]
European XFEL Gmbh
Kloos, Marco [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Letrun, Romain [Auteur]
European XFEL Gmbh
Messerschmidt, Marc [Auteur]
European XFEL Gmbh
Mills, Grant [Auteur]
European XFEL Gmbh
Nass Kovacs, Gabriela [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Ramilli, Marco [Auteur]
European XFEL Gmbh
Roome, Christopher M. [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Sato, Tokushi [Auteur]
European XFEL Gmbh
Scholz, Matthias [Auteur]
Deutsches Elektronen-Synchrotron [Hamburg] [DESY]
Sliwa, Michel [Auteur]
Laboratoire Avancé de Spectroscopie pour les Intéractions la Réactivité et l'Environnement - UMR 8516 [LASIRE]
Sztuk-Dambietz, Jolanta [Auteur]
European XFEL Gmbh
Weik, Martin [Auteur]
Université Grenoble Alpes [UGA]
Weinhausen, Britta [Auteur]
European XFEL Gmbh
Al-Qudami, Nasser [Auteur]
European XFEL Gmbh
Boukhelef, Djelloul [Auteur]
European XFEL Gmbh
Brockhauser, Sandor [Auteur]
European XFEL Gmbh
Ehsan, Wajid [Auteur]
European XFEL Gmbh
Emons, Moritz [Auteur]
European XFEL Gmbh
Esenov, Sergey [Auteur]
European XFEL Gmbh
Fangohr, Hans [Auteur]
European XFEL Gmbh
Kaukher, Alexander [Auteur]
European XFEL Gmbh
Kluyver, Thomas [Auteur]
European XFEL Gmbh
Lederer, Max [Auteur]
European XFEL Gmbh
Maia, Luis [Auteur]
European XFEL Gmbh
Manetti, Maurizio [Auteur]
European XFEL Gmbh
Michelat, Thomas [Auteur]
European XFEL Gmbh
Münnich, Astrid [Auteur]
European XFEL Gmbh
Pallas, Florent [Auteur]
European XFEL Gmbh
Palmer, Guido [Auteur]
European XFEL Gmbh
Previtali, Gianpietro [Auteur]
European XFEL Gmbh
Raab, Natascha [Auteur]
European XFEL Gmbh
Silenzi, Alessandro [Auteur]
European XFEL Gmbh
Szuba, Janusz [Auteur]
European XFEL Gmbh
Venkatesan, Sandhya [Auteur]
European XFEL Gmbh
Wrona, Krzysztof [Auteur]
European XFEL Gmbh
Zhu, Jun [Auteur]
European XFEL Gmbh
Doak, R. Bruce [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Shoeman, Robert L. [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Foucar, Lutz [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Colletier, Jacques-Philippe [Auteur]
Institut de biologie structurale [IBS - UMR 5075 ]
Mancuso, Adrian P. [Auteur]
European XFEL Gmbh
Barends, Thomas R. M. [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Stan, Claudiu A. [Auteur]
Rutgers University [Newark]
Schlichting, Ilme [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Max-Planck-Institut für Medizinische Forschung
Bielecki, Johan [Auteur]
European XFEL Gmbh
Gorel, Alexander [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Stricker, Miriam [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Bean, Richard [Auteur]
European XFEL Gmbh
Cammarata, Marco [Auteur]
Université de Rennes [UR]
Dörner, Katerina [Auteur]
European XFEL Gmbh
Fröhlich, Lars [Auteur]
Deutsches Elektronen-Synchrotron [Hamburg] [DESY]
Hartmann, Elisabeth [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Hauf, Steffen [Auteur]
European XFEL Gmbh
Hilpert, Mario [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Kim, Yoonhee [Auteur]
European XFEL Gmbh
Kloos, Marco [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Letrun, Romain [Auteur]
European XFEL Gmbh
Messerschmidt, Marc [Auteur]
European XFEL Gmbh
Mills, Grant [Auteur]
European XFEL Gmbh
Nass Kovacs, Gabriela [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Ramilli, Marco [Auteur]
European XFEL Gmbh
Roome, Christopher M. [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Sato, Tokushi [Auteur]
European XFEL Gmbh
Scholz, Matthias [Auteur]
Deutsches Elektronen-Synchrotron [Hamburg] [DESY]
Sliwa, Michel [Auteur]

Laboratoire Avancé de Spectroscopie pour les Intéractions la Réactivité et l'Environnement - UMR 8516 [LASIRE]
Sztuk-Dambietz, Jolanta [Auteur]
European XFEL Gmbh
Weik, Martin [Auteur]
Université Grenoble Alpes [UGA]
Weinhausen, Britta [Auteur]
European XFEL Gmbh
Al-Qudami, Nasser [Auteur]
European XFEL Gmbh
Boukhelef, Djelloul [Auteur]
European XFEL Gmbh
Brockhauser, Sandor [Auteur]
European XFEL Gmbh
Ehsan, Wajid [Auteur]
European XFEL Gmbh
Emons, Moritz [Auteur]
European XFEL Gmbh
Esenov, Sergey [Auteur]
European XFEL Gmbh
Fangohr, Hans [Auteur]
European XFEL Gmbh
Kaukher, Alexander [Auteur]
European XFEL Gmbh
Kluyver, Thomas [Auteur]
European XFEL Gmbh
Lederer, Max [Auteur]
European XFEL Gmbh
Maia, Luis [Auteur]
European XFEL Gmbh
Manetti, Maurizio [Auteur]
European XFEL Gmbh
Michelat, Thomas [Auteur]
European XFEL Gmbh
Münnich, Astrid [Auteur]
European XFEL Gmbh
Pallas, Florent [Auteur]
European XFEL Gmbh
Palmer, Guido [Auteur]
European XFEL Gmbh
Previtali, Gianpietro [Auteur]
European XFEL Gmbh
Raab, Natascha [Auteur]
European XFEL Gmbh
Silenzi, Alessandro [Auteur]
European XFEL Gmbh
Szuba, Janusz [Auteur]
European XFEL Gmbh
Venkatesan, Sandhya [Auteur]
European XFEL Gmbh
Wrona, Krzysztof [Auteur]
European XFEL Gmbh
Zhu, Jun [Auteur]
European XFEL Gmbh
Doak, R. Bruce [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Shoeman, Robert L. [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Foucar, Lutz [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Colletier, Jacques-Philippe [Auteur]
Institut de biologie structurale [IBS - UMR 5075 ]
Mancuso, Adrian P. [Auteur]
European XFEL Gmbh
Barends, Thomas R. M. [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Stan, Claudiu A. [Auteur]
Rutgers University [Newark]
Schlichting, Ilme [Auteur]
Max Planck Institute for Medical Research [Heidelberg]
Journal title :
Nature Communications
Volume number :
9
Pages :
3487-3487
Publication date :
2018-12
English keyword(s) :
biologie structurale
HAL domain(s) :
Chimie/Chimie théorique et/ou physique
English abstract : [en]
X-ray free-electron lasers (XFELs) enable novel experiments because of their high peak brilliance and femtosecond pulse duration. However, non-superconducting XFELs offer repetition rates of only 10–120 Hz, placing significant ...
Show more >X-ray free-electron lasers (XFELs) enable novel experiments because of their high peak brilliance and femtosecond pulse duration. However, non-superconducting XFELs offer repetition rates of only 10–120 Hz, placing significant demands on beam time and sample consumption. We describe serial femtosecond crystallography experiments performed at the European XFEL, the first MHz repetition rate XFEL, delivering 1.128 MHz X-ray pulse trains at 10 Hz. Given the short spacing between pulses, damage caused by shock waves launched by one XFEL pulse on sample probed by subsequent pulses is a concern. To investigate this issue, we collected data from lysozyme microcrystals, exposed to a ~15 μm XFEL beam. Under these conditions, data quality is independent of whether the first or subsequent pulses of the train were used for data collection. We also analyzed a mixture of microcrystals of jack bean proteins, from which the structure of native, magnesium-containing concanavalin A was determined.Show less >
Show more >X-ray free-electron lasers (XFELs) enable novel experiments because of their high peak brilliance and femtosecond pulse duration. However, non-superconducting XFELs offer repetition rates of only 10–120 Hz, placing significant demands on beam time and sample consumption. We describe serial femtosecond crystallography experiments performed at the European XFEL, the first MHz repetition rate XFEL, delivering 1.128 MHz X-ray pulse trains at 10 Hz. Given the short spacing between pulses, damage caused by shock waves launched by one XFEL pulse on sample probed by subsequent pulses is a concern. To investigate this issue, we collected data from lysozyme microcrystals, exposed to a ~15 μm XFEL beam. Under these conditions, data quality is independent of whether the first or subsequent pulses of the train were used for data collection. We also analyzed a mixture of microcrystals of jack bean proteins, from which the structure of native, magnesium-containing concanavalin A was determined.Show less >
Language :
Anglais
Audience :
Internationale
Popular science :
Non
Administrative institution(s) :
CNRS
ENSCL
Université de Lille
ENSCL
Université de Lille
Collections :
Research team(s) :
Dynamics, Nanoscopy & Chemometrics (DyNaChem)
Submission date :
2021-11-16T08:23:27Z
2024-02-14T13:16:13Z
2024-02-14T13:16:13Z