After stably transfecting pTracer-SV40 vector into HL60 cells with Zeocin antibiotic selection at 50 ug/mL, 60% to 70% of the cells were observed to express GFP at the end of 4 weeks. However at the end of 6 weeks, only 1% to 2% of the cells now express GFP. Why has the GFP expression decreased?
Here are some possible reasons for this observation:
1. The Zeocin antibiotic concentration in this case appears to be low. It is best to perform a kill curve to determine the appropriate concentration.
2. It is possible that Zeocin antibiotic resistant populations, that do not express large amounts of GFP, are now dominating the growth of this culture.
3. It is also possible that a Zeocin antibiotic resistant population with no expression of the Zeo-GFP is dominating the culture. Some cell types (CHO is a good example) have very good MDR (multi-drug resistance) membrane proteins that pump out the drug as fast as it comes in. They make themselves resistant without actually expressing the Zeocin antibiotic resistance gene. The low concentration of Zeocin antibiotic could select for these drug resistant cells. Addition of a higher Zeocin antibiotic concentration may fix this experiment, although once a cell has upregulated its MDR genes, it is often hard to kill.
We recommend that the experiment be performed again using a higher concentration of Zeocin antibiotic during selection (e.g. 100 -200 µg/ml).
1. The Zeocin antibiotic concentration in this case appears to be low. It is best to perform a kill curve to determine the appropriate concentration.
2. It is possible that Zeocin antibiotic resistant populations, that do not express large amounts of GFP, are now dominating the growth of this culture.
3. It is also possible that a Zeocin antibiotic resistant population with no expression of the Zeo-GFP is dominating the culture. Some cell types (CHO is a good example) have very good MDR (multi-drug resistance) membrane proteins that pump out the drug as fast as it comes in. They make themselves resistant without actually expressing the Zeocin antibiotic resistance gene. The low concentration of Zeocin antibiotic could select for these drug resistant cells. Addition of a higher Zeocin antibiotic concentration may fix this experiment, although once a cell has upregulated its MDR genes, it is often hard to kill.
We recommend that the experiment be performed again using a higher concentration of Zeocin antibiotic during selection (e.g. 100 -200 µg/ml).