Published in

Elsevier, Current Opinion in Structural Biology, (33), p. 115-125, 2015

DOI: 10.1016/j.sbi.2015.08.006

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Membrane protein structural biology using X-ray free electron lasers

Journal article published in 2015 by Richard Neutze, Gisela Brändén ORCID, Gebhard Fx Schertler
This paper is made freely available by the publisher.
This paper is made freely available by the publisher.

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Abstract

Membrane protein structural biology has benefitted tremendously from access to micro-focus crystallography at synchrotron radiation sources. X-ray free electron lasers (XFELs) are linear accelerator driven X-ray sources that deliver a jump in peak X-ray brilliance of nine orders of magnitude and represent a disruptive technology with potential to dramatically change the field. Membrane proteins were amongst the first macromolecules to be studied with XFEL radiation and include proof-of-principle demonstrations of serial femtosecond crystallography (SFX), the observation that XFEL data can deliver damage free crystallographic structures, initial experiments towards recording structural information from 2D arrays of membrane proteins, and time-resolved SFX, time-resolved wide angle X-ray scattering and time-resolved X-ray emission spectroscopy studies. Conversely, serial crystallography methods are now being applied using synchrotron radiation. We believe that a context dependent choice of synchrotron or XFEL radiation will accelerate progress towards novel insights in understanding membrane protein structure and dynamics.