Abstract

Serial femtosecond crystallography (SFX) at X-ray free-electron lasers (XFELs) offers unprecedented possibilities for macromolecular structure determination of systems that are prone to radiation damage. However, phasing XFEL data de novo is complicated by the inherent inaccuracy of SFX data, and only a few successful examples, mostly based on exceedingly strong anomalous or isomorphous difference signals, have been reported. Here, it is shown that SFX data from thaumatin microcrystals can be successfully phased using only the weak anomalous scattering from the endogenous S atoms. Moreover, a step-by-step investigation is presented of the particular problems of SAD phasing of SFX data, analysing data from a derivative with a strong anomalous signal as well as the weak signal from endogenous S atoms.

Details

Title
Protein structure determination by single-wavelength anomalous diffraction phasing of X-ray free-electron laser data
Author
Nass, Karol; Meinhart, Anton; Barends, Thomas R M; Foucar, Lutz; Gorel, Alexander; Aquila, Andrew; Botha, Sabine; Doak, R Bruce; Koglin, Jason; Liang, Mengning; Shoeman, Robert L; Williams, Garth; Boutet, Sebastien; Schlichting, Ilme
Pages
-
Section
Research Papers
Publication year
2016
Publication date
May 2016
Publisher
International Union of Crystallography
e-ISSN
20522525
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
1780579353
Copyright
Copyright International Union of Crystallography May 2016