Megahertz serial crystallography.

Max O Wiedorn,Dominik Oberthür,Richard Bean,Robin Schubert,Nadine Werner,Brian Abbey,Martin Aepfelbacher,Luigi Adriano,Aschkan Allahgholi,Nasser Al-Qudami,Jakob Andreasson,Steve Aplin,Salah Awel,Kartik Ayyer,Saša Bajt,Imrich Barák,Sadia Bari,Johan Bielecki,Sabine Botha,Djelloul Boukhelef,Wolfgang Brehm,Sandor Brockhauser,Igor Cheviakov,Matthew A Coleman,Francisco Cruz-Mazo,Cyril Danilevski,Connie Darmanin,R Bruce Doak,Martin Domaracky,Katerina Dörner,Yang Du,Hans Fangohr,Holger Fleckenstein,Matthias Frank,Petra Fromme,Alfonso M Gañán-Calvo,Yaroslav Gevorkov,Klaus Giewekemeyer,Helen Mary Ginn,Heinz Graafsma,Rita Graceffa,Dominic Greiffenberg,Lars Gumprecht,Peter Göttlicher,Janos Hajdu,Steffen Hauf,Michael Heymann,Susannah Holmes,Daniel A Horke,Mark S Hunter, Siegfried Imlau,Alexander Kaukher,Yoonhee Kim,Alexander Klyuev,Juraj Knoška,Bostjan Kobe,Manuela Kuhn,Christopher Kupitz,Jochen Küpper,Janine Mia Lahey-Rudolph,Torsten Laurus, Karoline Le Cong,Romain Letrun,P Lourdu Xavier,Luis Maia,Filipe R N C Maia,Valerio Mariani,Marc Messerschmidt,Markus Metz,Davide Mezza,Thomas Michelat,Grant Mills,Diana C F Monteiro,Andrew Morgan,Kerstin Mühlig,Anna Munke,Astrid Münnich, Julia Nette,Keith A Nugent,Theresa Nuguid,Allen M Orville,Suraj Pandey,Gisel Pena,Pablo Villanueva-Perez,Jennifer Poehlsen,Gianpietro Previtali,Lars Redecke, Winnie Maria Riekehr,Holger Rohde,Adam Round, Tatiana Safenreiter,Iosifina Sarrou,Tokushi Sato,Marius Schmidt,Bernd Schmitt,Robert Schönherr,Joachim Schulz,Jonas A Sellberg,M Marvin Seibert,Carolin Seuring,Megan L Shelby,Robert L Shoeman,Marcin Sikorski,Alessandro Silenzi,Claudiu A Stan,Xintian Shi,Stephan Stern, Jola Sztuk-Dambietz,Janusz Szuba,Aleksandra Tolstikova,Martin Trebbin,Ulrich Trunk,Patrik Vagovic,Thomas Ve,Britta Weinhausen,Thomas A White,Krzysztof Wrona,Chen Xu,Oleksandr Yefanov,Nadia Zatsepin,Jiaguo Zhang,Markus Perbandt,Adrian P Mancuso,Christian Betzel,Henry Chapman,Anton Barty

Nature communications(2018)

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摘要
The new European X-ray Free-Electron Laser is the first X-ray free-electron laser capable of delivering X-ray pulses with a megahertz inter-pulse spacing, more than four orders of magnitude higher than previously possible. However, to date, it has been unclear whether it would indeed be possible to measure high-quality diffraction data at megahertz pulse repetition rates. Here, we show that high-quality structures can indeed be obtained using currently available operating conditions at the European XFEL. We present two complete data sets, one from the well-known model system lysozyme and the other from a so far unknown complex of a β-lactamase from K. pneumoniae involved in antibiotic resistance. This result opens up megahertz serial femtosecond crystallography (SFX) as a tool for reliable structure determination, substrate screening and the efficient measurement of the evolution and dynamics of molecular structures using megahertz repetition rate pulses available at this new class of X-ray laser source.
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