Fisherbrand™ Benchtop pH meter (Fisher Scientific)
CO2 Resistant Shaker (INFORS HT)
Biological safety cabinet (SterilGARD, Class II, Type A/B3)
Superose 6 Increase 10/300 GL (Cytiva)
Pump (Gilson mini plus 3)
Centrifuge (Beckman Coulter J6-MI)
Centrifuge (Beckman Coulter Avanti J-E)
Centrifuge (Beckman Coulter Alllegra X-14R)
PowerPac™ Basic Power Supply (Bio-Rad)
VWR nutating mixer (VWR)
Procedure
A. Prepare Expi293F Cells for Transfection
Grow 700 ml of 293F cells with Expi293 Expression Media supplemented with PenStrep and Puromycin (1ug/ml) in a 2L shaker flask.
Monitor the cell culture until the cell density reaches ~2.6 x 106 with viability of ~95-98%.
B. Transfection of Expi293F cells with Spike plasmid DNA (for 700 ml cell culture)
Dilute 700 mg of the full-length Spike plasmid DNA in 35 ml of FreeStyle 293F Medium.
Dilute 2.8 mg of PEI in 35 ml of FreeStyle 293F Medium. Incubate the two solutions at room temperature for 15 min.
Add the diluted PEI solution to the plasmid DNA solution, mix them well and incubate at room temperature for 15 min. The total volume should be ~70 ml.
Transfer 70 ml of the mixed solution into 700 ml Expi293F cells and incubate the cells in a shaker at 37°C with 80% relative humidity and 6.5% CO2.
Note: The procedure can be scaled up or down proportionally for larger or smaller transfections. All the steps above should be performed in a biosafety level-2 cabinet.
C. Harvest the cells and purify the Spike protein
Transfer the cell culture to a 500 ml centrifuge tube and centrifuge at 1,000 xg for 30 min at 4°C, and then discard the supernatant.
Add 100 ml PBS to wash the cells, and centrifuge again at 1,000 xg for 15 min at 4°C, and discard the supernatant.
Add 100-200 ml Lysis Buffer (see the recipes) supplemented with one tablet of protease inhibitor to the cell pellet.
Resuspend the cells completely and incubate with gently shaking for 1 hour at 4°C.
Transfer the cell lysate to a centrifuge tube, centrifuge at 30,000 xg for 1 hour at 4°C and collect the supernatant.
Equilibrate a Strep-Tactin column with Washing Buffer A (see the recipes), dilute the supernatant three folds with Dilution Buffer (see the recipes) and load it on the column using a peristaltic pump with a flow rate of ~1 ml/min.
Wash the column sequentially with 50 column volumes each of Washing Buffer A, B and C (see the recipes).
Elute the Spike protein with Elution Buffer (see the recipes) and analyze the fractions by SDS-PAGE.
Pool all fractions containing the Spike protein and concentrate to ~0.5 ml.
Load the concentrated sample on a Suprose 6 10/300 column with Gel Filtration Buffer (see the recipes) to further purify the protein.
Collect the peak fractions, concentrate and store the purified protein at -80°C.
Recipes
PEI Transfection Solution Dissolve PEI powder to hot water at a final concentration of 1mg/ml, adjust pH of the solution to 7.0 at room temperature, and filter the solution with 0.22 um filter.
Dilution Buffer 100 mM Tris-HCl, pH 8.0, 150 mM NaCl, 1 mM EDTA.
Cell Lysis Buffer 100 mM Tris-HCl, pH 8.0, 150 mM NaCl, 1 mM EDTA and 1% (w/v) DDM.
Washing Buffer A 100 mM Tris-HCl, pH 8.0, 150 mM NaCl, 1 mM EDTA and 0.3% (w/v) DDM.
Washing Buffer B 100 mM Tris-HCl, pH 8.0, 150 mM NaCl, 1 mM EDTA and 0.1% (w/v) DDM.
Washing Buffer C 100 mM Tris-HCl, pH 8.0, 150 mM NaCl, 1 mM EDTA and 0.02% (w/v) DDM.
Elution Buffer for strep-tactin column 100 mM Tris-HCl, pH 8.0, 150 mM NaCl, 1 mM EDTA, 0.02% (w/v) DDM and 5mM desthiobiotin.
Gel Filtration Buffer for Superose 6 10/300 column 25 mM Tris-HCl, pH 7.5, 150 mM NaCl, 0.02% (w/v) DDM
Note
Similar purification was also performed using detergent NP-40 instead of DDM.
Copyright: Content may be subjected to copyright.
How to cite:
Readers should cite both the Bio-protocol preprint and the original research article where this protocol was used:
Zhang, J, Cai, Y and Chen, B(2021). Expression and purification of recombinant SARS-CoV-2 Spike protein. Bio-protocol Preprint. bio-protocol.org/prep1178.
Zhang, J., Cai, Y., Xiao, T., Lu, J., Peng, H., Sterling, S. M., Jr., R. M. W., Rits-Volloch, S., Zhu, H., Woosley, A. N., Yang, W., Sliz, P. and Chen, B.(2021). Structural impact on SARS-CoV-2 spike protein by D614G substitution. Science 372(6541). DOI: 10.1126/science.abf2303
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