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Lipidic cubic phase injector is a viable crystal delivery system for time-resolved serial crystallography

Authors :
Chufeng Li
Petra Båth
Jesse Coe
Rafael Abela
Peter Berntsen
Tetsunari Kimura
Christopher J. Milne
Henry N. Chapman
Cornelius Gati
Matthias Frank
Jörg Standfuss
Jan Rheinberger
Valerie Panneels
Thomas A. White
Wenting Wu
Przemyslaw Nogly
Minoru Kubo
Robert Dods
Eriko Nango
Mark S. Hunter
Sébastien Boutet
Garrett Nelson
Garth J. Williams
Petra Fromme
Gebhard F. X. Schertler
Kenneth R. Beyerlein
Uwe Weierstall
Leonardo Sala
So Iwata
Yun Zhao
Chelsie E. Conrad
Richard Neutze
Despina Milathianaki
Daniel P. DePonte
Daniel James
Jason E. Koglin
Rajiv Harimoorthy
John C. H. Spence
Richard Bean
Anton Barty
Source :
Nature communications, vol 7, iss 1, Nature Communications, Vol 7, Iss 1, Pp 1-9 (2016), Nature Communications 7, 12314 (2016). doi:10.1038/ncomms12314, Nature Communications, 7, 'Nature Communications ', vol: 7, pages: 12314-1-12314-9 (2016), Nature Communications
Publication Year :
2016
Publisher :
eScholarship, University of California, 2016.

Abstract

Nature Communications 7, 12314(2016). doi:10.1038/ncomms12314<br />Serial femtosecond crystallography (SFX) using X-ray free-electron laser sources is an emerging method with considerable potential for time-resolved pump-probe experiments. Here we present a lipidic cubic phase SFX structure of the light-driven proton pump bacteriorhodopsin (bR) to 2.3 Å resolution and a method to investigate protein dynamics with modest sample requirement. Time-resolved SFX (TR-SFX) with a pump-probe delay of 1 ms yields difference Fourier maps compatible with the dark to M state transition of bR. Importantly, the method is very sample efficient and reduces sample consumption to about 1 mg per collected time point. Accumulation of M intermediate within the crystal lattice is confirmed by time-resolved visible absorption spectroscopy. This study provides an important step towards characterizing the complete photocycle dynamics of retinal proteins and demonstrates the feasibility of a sample efficient viscous medium jet for TR-SFX.<br />Published by Nature Publishing Group, London

Details

ISSN :
20411723
Database :
OpenAIRE
Journal :
Nature communications, vol 7, iss 1, Nature Communications, Vol 7, Iss 1, Pp 1-9 (2016), Nature Communications 7, 12314 (2016). doi:10.1038/ncomms12314, Nature Communications, 7, 'Nature Communications ', vol: 7, pages: 12314-1-12314-9 (2016), Nature Communications
Accession number :
edsair.doi.dedup.....fc3577951e899b94d7fa1d1c90a0ea1c