| Literature DB >> 25349981 |
Nicola Portolano1, Peter J Watson1, Louise Fairall1, Christopher J Millard1, Charles P Milano1, Yun Song1, Shaun M Cowley1, John W R Schwabe2.
Abstract
The expression and purification of large amounts of recombinant protein complexes is an essential requirement for structural biology studies. For over two decades, prokaryotic expression systems such as E. coli have dominated the scientific literature over costly and less efficient eukaryotic cell lines. Despite the clear advantage in terms of yields and costs of expressing recombinant proteins in bacteria, the absence of specific co-factors, chaperones and post-translational modifications may cause loss of function, mis-folding and can disrupt protein-protein interactions of certain eukaryotic multi-subunit complexes, surface receptors and secreted proteins. The use of mammalian cell expression systems can address these drawbacks since they provide a eukaryotic expression environment. However, low protein yields and high costs of such methods have until recently limited their use for structural biology. Here we describe a simple and accessible method for expressing and purifying milligram quantities of protein by performing transient transfections of suspension grown HEK (Human Embryonic Kidney) 293 F cells.Entities:
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Year: 2014 PMID: 25349981 PMCID: PMC4420617 DOI: 10.3791/51897
Source DB: PubMed Journal: J Vis Exp ISSN: 1940-087X Impact factor: 1.355
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| Low protein yield. | Low number of cells transfected. | Make sure cell density is approximately 1.0 x 106 before adding the transfection reaction mixture to the culture. |
| Cells might have been subcultured too many times. | Use fresh stock cells after approximately 90 passages. | |
| DNA may be degraded or have a high amount of impurities. | Make sure the plasmid DNA being used has a 260/280 ratio between 1.8 and 2.0. Running the DNA on an agarose gel is advisable to assess its quality. | |
| Protein(s) being expressed are not stable or soluble enough. | Test different constructs in small scale prior to up-scaling the transfections. Make sure tags do not interfere with the structure of the protein(s) of interest. | |
| Cells look cloudy and have an unusual color and/or odor. | Cells are infected with bacteria or yeast. | Good sterile technique must be used at all times. Fumigating the laminar flow hoods and UV-disinfecting the cell culture room in case of infection helps containing the problem. |
| Cells have low viability. | Wrong pH in media. | Make sure cultures are grown at 5-8% CO2 at all times. |
| Cells have been cultured up to a density over 3.0x106 cells/ml. | Cells should not be grown up to densities above 2.5 x 106 cells/ml immediately before a transfection and never above 3.0 x 106 cells/ml. | |
| Affinity purification did not work | Protein(s) is not being expressed. | See above. |
| Purification conditions might be wrong. | Adjust buffer conditions ( |
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Fast expression system High protein yields Inexpensive Suitable for the affordable production of isotopically labeled proteins |
Lack of important chaperones that may be required for protein folding Lack of many post translational modifications May lack co-factors that are important for protein function and/or complex assembly. |
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Can perform the majority of post translational modifications Inexpensive |
Lack some post-translational modifications May lack co-factors that are important for protein function and/or complex assembly. |
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Can perform all post translational modifications Baculovirus is less cytotoxic than other viral strains |
Preparing the virus for the transduction is time consuming The virus is not stable and cannot be stored for long periods of time Insect cells may lack co-factors that are important for protein function and/or complex assembly. |
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Can perform all post translational modifications Can provide all co-factors needed for protein function and complex assembly Can culture cells at very high densities Can express all mammalian proteins that require complex folding machineries Very high protein yields |
Requires specialized staff to use the bioreactor. Expensive equipment is required. Optimizing expression conditions may be time consuming. |
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Can perform all post translational modifications Can provide all co-factors needed for protein function and complex assembly Can express all mammalian proteins that require complex folding machinery Fast and intuitive transfection protocol Relatively inexpensive compared to bioreactors and/or other commercially available transfection reagents. |
Although affordable, not as cheap as expression in bacteria |