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Mapping the continuous reciprocal space intensity distribution of X-ray serial crystallography.


ABSTRACT: Serial crystallography using X-ray free-electron lasers enables the collection of tens of thousands of measurements from an equal number of individual crystals, each of which can be smaller than 1 µm in size. This manuscript describes an alternative way of handling diffraction data recorded by serial femtosecond crystallography, by mapping the diffracted intensities into three-dimensional reciprocal space rather than integrating each image in two dimensions as in the classical approach. We call this procedure 'three-dimensional merging'. This procedure retains information about asymmetry in Bragg peaks and diffracted intensities between Bragg spots. This intensity distribution can be used to extract reflection intensities for structure determination and opens up novel avenues for post-refinement, while observed intensity between Bragg peaks and peak asymmetry are of potential use in novel direct phasing strategies.

SUBMITTER: Yefanov O 

PROVIDER: S-EPMC4052869 | biostudies-literature | 2014 Jul

REPOSITORIES: biostudies-literature

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Mapping the continuous reciprocal space intensity distribution of X-ray serial crystallography.

Yefanov Oleksandr O   Gati Cornelius C   Bourenkov Gleb G   Kirian Richard A RA   White Thomas A TA   Spence John C H JC   Chapman Henry N HN   Barty Anton A  

Philosophical transactions of the Royal Society of London. Series B, Biological sciences 20140701 1647


Serial crystallography using X-ray free-electron lasers enables the collection of tens of thousands of measurements from an equal number of individual crystals, each of which can be smaller than 1 µm in size. This manuscript describes an alternative way of handling diffraction data recorded by serial femtosecond crystallography, by mapping the diffracted intensities into three-dimensional reciprocal space rather than integrating each image in two dimensions as in the classical approach. We call  ...[more]

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