High-throughput analytical gel filtration screening of integral membrane proteins for structural studies |
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Authors: | Christian Lö w,Per Moberg,Esben M. Quistgaard,Marie Hedré n,Fatma Guettou,Jens Frauenfeld,Lars Haneskog,Pä r Nordlund |
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Affiliation: | 1. Department of Medical Biochemistry and Biophysics, Karolinska Institutet, SE-17177 Stockholm, Sweden;2. GE Healthcare Bio-Sciences AB, Uppsala, Sweden;3. School of Biological Sciences, Nanyang Technological University, Singapore |
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Abstract: | BackgroundStructural studies of integral membrane proteins (IMPs) are often hampered by difficulties in producing stable homogenous samples for crystallization. To overcome this hurdle it has become common practice to screen large numbers of target proteins to find suitable candidates for crystallization. For such an approach to be effective, an efficient screening strategy is imperative. To this end, strategies have been developed that involve the use of green fluorescent protein (GFP) fusion constructs. However, these approaches suffer from two drawbacks; proteins with a translocated C-terminus cannot be tested and scale-up from analytical to preparative purification is often non-trivial and may require re-cloning.MethodsHere we present a screening approach that prioritizes IMP targets based on three criteria: expression level, detergent solubilization yield and homogeneity as determined by high-throughput small-scale immobilized metal affinity chromatography (IMAC) and automated size-exclusion chromatography (SEC).ResultsTo validate the strategy, we screened 48 prokaryotic IMPs in two different vectors and two Escherichia coli strains. A set of 11 proteins passed all preset quality control checkpoints and was subjected to crystallization trials. Four of these crystallized directly in initial sparse matrix screens, highlighting the robustness of the strategy.ConclusionsWe have developed a rapid and cost efficient screening strategy that can be used for all IMPs regardless of topology. The analytical steps have been designed to be a good mimic of preparative purification, which greatly facilitates scale-up.General significanceThe screening approach presented here is intended and expected to help drive forward structural biology of membrane proteins. |
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Keywords: | IMP, integral membrane protein GFP, green fluorescent protein FSEC, fluorescence-detected size-exclusion chromatography IMAC, immobilized metal affinity chromatography purification SEC, size-exclusion chromatography GF, gel filtration AGF, analytical gel filtration E. coli, Escherichia coli LIC, ligation-independent cloning TB, terrific broth LB, Luria Bertani IPTG, isopropyl-ß -d-thiogalactopyranoside OD600nm, optical density at 600 nm HRP, horseradish peroxidase DDM, dodecyl-β-d-maltoside LDAO, N,N-dimethyldodecylamine-N-oxide CYMAL-5, 5-cyclohexyl-1-pentyl-β-d-maltoside FC12, fos-choline-12 SDS&ndash PAGE, sodium dodecyl sulfate polyacrylamide gel electrophoresis TEV, tobacco etch virus GpA, glycophorin A MATE, multidrug and toxic compound extrusion BASS, bile acid sodium symporter POT, proton dependent oligopeptide transporter BisTris, bis(2-hydroxyethyl)-amino-tris(hydroxymethyl)-methane Tris, tris(hydroxymethyl)-methane BSA, bovine serum albumin TCEP, tris(2-carboxyethyl)phosphine DTT, dithiothreitol EDTA, ethylenediaminetetraacetic acid |
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