Homogeneous batch micro-crystallization of proteins from ammonium sulfate.


Journal

Acta crystallographica. Section D, Structural biology
ISSN: 2059-7983
Titre abrégé: Acta Crystallogr D Struct Biol
Pays: United States
ID NLM: 101676043

Informations de publication

Date de publication:
01 Feb 2021
Historique:
received: 03 06 2020
accepted: 21 11 2020
entrez: 9 2 2021
pubmed: 10 2 2021
medline: 4 9 2021
Statut: ppublish

Résumé

The emergence of X-ray free-electron lasers has led to the development of serial macromolecular crystallography techniques, making it possible to study smaller and more challenging crystal systems and to perform time-resolved studies on fast time scales. For most of these studies the desired crystal size is limited to a few micrometres, and the generation of large amounts of nanocrystals or microcrystals of defined size has become a bottleneck for the wider implementation of these techniques. Despite this, methods to reliably generate microcrystals and fine-tune their size have been poorly explored. Working with three different enzymes, L-aspartate α-decarboxylase, copper nitrite reductase and copper amine oxidase, the precipitating properties of ammonium sulfate were exploited to quickly transition from known vapour-diffusion conditions to reproducible, large-scale batch crystallization, circumventing the tedious determination of phase diagrams. Furthermore, the specific ammonium sulfate concentration was used to fine-tune the crystal size and size distribution. Ammonium sulfate is a common precipitant in protein crystallography, making these findings applicable to many crystallization systems to facilitate the production of large amounts of microcrystals for serial macromolecular crystallography experiments.

Identifiants

pubmed: 33559608
pii: S2059798320015454
doi: 10.1107/S2059798320015454
pmc: PMC7869895
doi:

Substances chimiques

Macromolecular Substances 0
Proteins 0
Ammonium Sulfate SU46BAM238

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

194-204

Subventions

Organisme : H2020 Marie Skłodowska-Curie Actions
ID : 722687
Organisme : Bundesministerium für Bildung, Wissenschaft und Forschung
ID : 05K16GU1
Organisme : Federal Excellence Cluster Hamburg Centre for Ultrafast Imaging
ID : EXC 1074
Organisme : Biotechnology and Biological Sciences Research Council
ID : BB/M022714/1
Pays : United Kingdom

Informations de copyright

open access.

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Auteurs

Claudia Stohrer (C)

Biomedical Sciences, University of Leeds, Woodhouse Lane, Leeds LS2 9JT, United Kingdom.

Sam Horrell (S)

Hamburg Centre for Ultrafast Imaging, Institute for Nanostructure and Solid State Physics, Universität Hamburg, CFEL, Building 99, Luruper Chaussee 149, 22761 Hamburg, Germany.

Susanne Meier (S)

Hamburg Centre for Ultrafast Imaging, Institute for Nanostructure and Solid State Physics, Universität Hamburg, CFEL, Building 99, Luruper Chaussee 149, 22761 Hamburg, Germany.

Marta Sans (M)

Hamburg Centre for Ultrafast Imaging, Institute for Nanostructure and Solid State Physics, Universität Hamburg, CFEL, Building 99, Luruper Chaussee 149, 22761 Hamburg, Germany.

David von Stetten (D)

European Molecular Biology Laboratory (EMBL), Hamburg Unit c/o DESY, Notkestrasse 85, 22607 Hamburg, Germany.

Michael Hough (M)

School of Life Sciences, University of Essex, Wivenhoe Park, Colchester CO4 3SQ, United Kingdom.

Adrian Goldman (A)

Biomedical Sciences, University of Leeds, Woodhouse Lane, Leeds LS2 9JT, United Kingdom.

Diana C F Monteiro (DCF)

Hamburg Centre for Ultrafast Imaging, Institute for Nanostructure and Solid State Physics, Universität Hamburg, CFEL, Building 99, Luruper Chaussee 149, 22761 Hamburg, Germany.

Arwen R Pearson (AR)

Hamburg Centre for Ultrafast Imaging, Institute for Nanostructure and Solid State Physics, Universität Hamburg, CFEL, Building 99, Luruper Chaussee 149, 22761 Hamburg, Germany.

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