Author:
Gati Cornelius,Bourenkov Gleb,Klinge Marco,Rehders Dirk,Stellato Francesco,Oberthür Dominik,Yefanov Oleksandr,Sommer Benjamin P.,Mogk Stefan,Duszenko Michael,Betzel Christian,Schneider Thomas R.,Chapman Henry N.,Redecke Lars
Abstract
Crystal structure determinations of biological macromolecules are limited by the availability of sufficiently sized crystals and by the fact that crystal quality deteriorates during data collection owing to radiation damage. Exploiting a micrometre-sized X-ray beam, high-precision diffractometry and shutterless data acquisition with a pixel-array detector, a strategy for collecting data from many micrometre-sized crystals presented to an X-ray beam in a vitrified suspension is demonstrated. By combining diffraction data from 80Trypanosoma bruceiprocathepsin B crystals with an average volume of 9 µm3, a complete data set to 3.0 Å resolution has been assembled. The data allowed the refinement of a structural model that is consistent with that previously obtained using free-electron laser radiation, providing mutual validation. Further improvements of the serial synchrotron crystallography technique and its combination with serial femtosecond crystallography are discussed that may allow the determination of high-resolution structures of micrometre-sized crystals.
Funder
Deutsche Forschungsgemeinschaft
Helmholtz Association
Publisher
International Union of Crystallography (IUCr)
Subject
Condensed Matter Physics,General Materials Science,Biochemistry,General Chemistry
Cited by
215 articles.
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