7 Å resolution in protein two-dimensional-crystal X-ray diffraction at Linac Coherent Light Source

Author:

Pedrini Bill1,Tsai Ching-Ju1,Capitani Guido1,Padeste Celestino1,Hunter Mark S.2,Zatsepin Nadia A.3,Barty Anton4,Benner W. Henry2,Boutet Sébastien5,Feld Geoffrey K.2,Hau-Riege Stefan P.2,Kirian Richard A.4,Kupitz Christopher3,Messerschmitt Marc5,Ogren John I.6,Pardini Tommaso2,Segelke Brent2,Williams Garth J.5,Spence John C. H.3,Abela Rafael1,Coleman Matthew2,Evans James E.7,Schertler Gebhard F. X.1,Frank Matthias2,Li Xiao-Dan1

Affiliation:

1. Paul Scherrer Institute, 5232 Villigen PSI, Switzerland

2. Lawrence Livermore National Laboratory, 7000 East Avenue, Livermore, CA 94550, USA

3. Department of Physics, Arizona State University, 300 E. University Drive, Tempe, AZ 85287, USA

4. Center for Free-Electron Laser Science, DESY, Notkestrasse 85, 22607 Hamburg, Germany

5. Linac Coherent Light Source, 2575 Sand Hill Road, Menlo Park, CA 94025, USA

6. Physics Department, Boston University, 590 Commonwealth Avenue, Boston, MA 02215, USA

7. Environmental Molecular Sciences Laboratory, Pacific Northwest National Laboratory, 3335 Innovation Boulevard, Richland, WA 99354, USA

Abstract

Membrane proteins arranged as two-dimensional crystals in the lipid environment provide close-to-physiological structural information, which is essential for understanding the molecular mechanisms of protein function. Previously, X-ray diffraction from individual two-dimensional crystals did not represent a suitable investigational tool because of radiation damage. The recent availability of ultrashort pulses from X-ray free-electron lasers (XFELs) has now provided a means to outrun the damage. Here, we report on measurements performed at the Linac Coherent Light Source XFEL on bacteriorhodopsin two-dimensional crystals mounted on a solid support and kept at room temperature. By merging data from about a dozen single crystal diffraction images, we unambiguously identified the diffraction peaks to a resolution of 7 Å, thus improving the observable resolution with respect to that achievable from a single pattern alone. This indicates that a larger dataset will allow for reliable quantification of peak intensities, and in turn a corresponding increase in the resolution. The presented results pave the way for further XFEL studies on two-dimensional crystals, which may include pump–probe experiments at subpicosecond time resolution.

Publisher

The Royal Society

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology

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