Well-based crystallization of lipidic cubic phase microcrystals for serial X-ray crystallography experiments.
Bacterial Proteins
/ chemistry
Crystallization
/ methods
Crystallography, X-Ray
/ methods
Electron Transport Complex IV
/ chemistry
Halobacteriaceae
/ enzymology
Halorhodopsins
/ chemistry
Hyphomicrobiaceae
/ enzymology
Lipids
/ chemistry
Membrane Proteins
/ chemistry
Photosynthetic Reaction Center Complex Proteins
/ chemistry
Sensory Rhodopsins
/ chemistry
Thermus thermophilus
/ enzymology
lipidic cubic phase
membrane proteins
protein crystallization
serial crystallography
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 Oct 2019
01 Oct 2019
Historique:
received:
09
07
2019
accepted:
11
09
2019
entrez:
8
10
2019
pubmed:
8
10
2019
medline:
23
2
2020
Statut:
ppublish
Résumé
Serial crystallography is having an increasing impact on structural biology. This emerging technique opens up new possibilities for studying protein structures at room temperature and investigating structural dynamics using time-resolved X-ray diffraction. A limitation of the method is the intrinsic need for large quantities of well ordered micrometre-sized crystals. Here, a method is presented to screen for conditions that produce microcrystals of membrane proteins in the lipidic cubic phase using a well-based crystallization approach. A key advantage over earlier approaches is that the progress of crystal formation can be easily monitored without interrupting the crystallization process. In addition, the protocol can be scaled up to efficiently produce large quantities of crystals for serial crystallography experiments. Using the well-based crystallization methodology, novel conditions for the growth of showers of microcrystals of three different membrane proteins have been developed. Diffraction data are also presented from the first user serial crystallography experiment performed at MAX IV Laboratory.
Identifiants
pubmed: 31588925
pii: S2059798319012695
doi: 10.1107/S2059798319012695
pmc: PMC6779076
doi:
Substances chimiques
Bacterial Proteins
0
Halorhodopsins
0
Lipids
0
Membrane Proteins
0
Photosynthetic Reaction Center Complex Proteins
0
Sensory Rhodopsins
0
sensory rhodopsin II protein, archaeal
0
Electron Transport Complex IV
EC 1.9.3.1
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Pagination
937-946Subventions
Organisme : Stiftelsen för Strategisk Forskning
ID : ID17-0060
Organisme : Carl Tryggers Stiftelse för Vetenskaplig Forskning
ID : CTS 16:79
Organisme : Seventh Framework Programme
ID : X-Probe
Organisme : Vetenskapsrådet
ID : 2017-06734
Organisme : Vetenskapsrådet
ID : 2015-00560
Organisme : Horizon 2020
ID : 789030
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