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A pipeline for structure determination of in vivo-grown crystals using in cellulo diffraction

While structure determination from micrometre-sized crystals used to represent a challenge, serial X-ray crystallography on microfocus beamlines at synchrotron and free-electron laser facilities greatly facilitates this process today for microcrystals and nanocrystals. In addition to typical microcr...

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Autores principales: Boudes, Marion, Garriga, Damià, Fryga, Andrew, Caradoc-Davies, Tom, Coulibaly, Fasséli
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4822565/
https://www.ncbi.nlm.nih.gov/pubmed/27050136
http://dx.doi.org/10.1107/S2059798316002369
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author Boudes, Marion
Garriga, Damià
Fryga, Andrew
Caradoc-Davies, Tom
Coulibaly, Fasséli
author_facet Boudes, Marion
Garriga, Damià
Fryga, Andrew
Caradoc-Davies, Tom
Coulibaly, Fasséli
author_sort Boudes, Marion
collection PubMed
description While structure determination from micrometre-sized crystals used to represent a challenge, serial X-ray crystallography on microfocus beamlines at synchrotron and free-electron laser facilities greatly facilitates this process today for microcrystals and nanocrystals. In addition to typical microcrystals of purified recombinant protein, these advances have enabled the analysis of microcrystals produced inside living cells. Here, a pipeline where crystals are grown in insect cells, sorted by flow cytometry and directly analysed by X-ray diffraction is presented and applied to in vivo-grown crystals of the recombinant CPV1 polyhedrin. When compared with the analysis of purified crystals, in cellulo diffraction produces data of better quality and a gain of ∼0.35 Å in resolution for comparable beamtime usage. Importantly, crystals within cells are readily derivatized with gold and iodine compounds through the cellular membrane. Using the multiple isomorphous replacement method, a near-complete model was autobuilt from 2.7 Å resolution data. Thus, in favourable cases, an in cellulo pipeline can replace the complete workflow of structure determination without compromising the quality of the resulting model. In addition to its efficiency, this approach maintains the protein in a cellular context throughout the analysis, which reduces the risk of disrupting transient or labile interactions in protein–protein or protein–ligand complexes.
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spelling pubmed-48225652016-04-28 A pipeline for structure determination of in vivo-grown crystals using in cellulo diffraction Boudes, Marion Garriga, Damià Fryga, Andrew Caradoc-Davies, Tom Coulibaly, Fasséli Acta Crystallogr D Struct Biol Research Papers While structure determination from micrometre-sized crystals used to represent a challenge, serial X-ray crystallography on microfocus beamlines at synchrotron and free-electron laser facilities greatly facilitates this process today for microcrystals and nanocrystals. In addition to typical microcrystals of purified recombinant protein, these advances have enabled the analysis of microcrystals produced inside living cells. Here, a pipeline where crystals are grown in insect cells, sorted by flow cytometry and directly analysed by X-ray diffraction is presented and applied to in vivo-grown crystals of the recombinant CPV1 polyhedrin. When compared with the analysis of purified crystals, in cellulo diffraction produces data of better quality and a gain of ∼0.35 Å in resolution for comparable beamtime usage. Importantly, crystals within cells are readily derivatized with gold and iodine compounds through the cellular membrane. Using the multiple isomorphous replacement method, a near-complete model was autobuilt from 2.7 Å resolution data. Thus, in favourable cases, an in cellulo pipeline can replace the complete workflow of structure determination without compromising the quality of the resulting model. In addition to its efficiency, this approach maintains the protein in a cellular context throughout the analysis, which reduces the risk of disrupting transient or labile interactions in protein–protein or protein–ligand complexes. International Union of Crystallography 2016-03-30 /pmc/articles/PMC4822565/ /pubmed/27050136 http://dx.doi.org/10.1107/S2059798316002369 Text en © Boudes et al. 2016 http://creativecommons.org/licenses/by/2.0/uk/ This is an open-access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
spellingShingle Research Papers
Boudes, Marion
Garriga, Damià
Fryga, Andrew
Caradoc-Davies, Tom
Coulibaly, Fasséli
A pipeline for structure determination of in vivo-grown crystals using in cellulo diffraction
title A pipeline for structure determination of in vivo-grown crystals using in cellulo diffraction
title_full A pipeline for structure determination of in vivo-grown crystals using in cellulo diffraction
title_fullStr A pipeline for structure determination of in vivo-grown crystals using in cellulo diffraction
title_full_unstemmed A pipeline for structure determination of in vivo-grown crystals using in cellulo diffraction
title_short A pipeline for structure determination of in vivo-grown crystals using in cellulo diffraction
title_sort pipeline for structure determination of in vivo-grown crystals using in cellulo diffraction
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4822565/
https://www.ncbi.nlm.nih.gov/pubmed/27050136
http://dx.doi.org/10.1107/S2059798316002369
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