Single-particle imaging without symmetry constraints at an X-ray free-electron laser

Author:

Rose Max,Bobkov Sergey,Ayyer Kartik,Kurta Ruslan P.,Dzhigaev Dmitry,Kim Young Yong,Morgan Andrew J.,Yoon Chun Hong,Westphal Daniel,Bielecki Johan,Sellberg Jonas A.,Williams Garth,Maia Filipe R.N.C.,Yefanov Olexander M.,Ilyin Vyacheslav,Mancuso Adrian P.,Chapman Henry N.,Hogue Brenda G.,Aquila Andrew,Barty Anton,Vartanyants Ivan A.ORCID

Abstract

The analysis of a single-particle imaging (SPI) experiment performed at the AMO beamline at LCLS as part of the SPI initiative is presented here. A workflow for the three-dimensional virus reconstruction of the PR772 bacteriophage from measured single-particle data is developed. It consists of several well defined steps including single-hit diffraction data classification, refined filtering of the classified data, reconstruction of three-dimensional scattered intensity from the experimental diffraction patterns by orientation determination and a final three-dimensional reconstruction of the virus electron density without symmetry constraints. The analysis developed here revealed and quantified nanoscale features of the PR772 virus measured in this experiment, with the obtained resolution better than 10 nm, with a clear indication that the structure was compressed in one direction and, as such, deviates from ideal icosahedral symmetry.

Funder

U.S. Department of Energy, Office of Science

Helmholtz Association, Initiative and Networking fund

Russian Science Foundation

Joachim Herz Stiftung

Vetenskapsrådet

Stiftelsen för Strategisk Forskning

National Science Foundation, Science and Technology Center

Publisher

International Union of Crystallography (IUCr)

Subject

Condensed Matter Physics,General Materials Science,Biochemistry,General Chemistry

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