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Megahertz serial crystallography.


ABSTRACT: 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 ?-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.

SUBMITTER: Wiedorn MO 

PROVIDER: S-EPMC6168542 | biostudies-literature | 2018 Oct

REPOSITORIES: biostudies-literature

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Megahertz serial crystallography.

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

Nature communications 20181002 1


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 Europ  ...[more]

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