Team:LMU-Munich/Jump-or-die/Functional Principle
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MengzheWang (Talk | contribs) (→d) construct 2 and 3 entered the cell) |
MengzheWang (Talk | contribs) (→Transfection possibilities) |
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Induction of tet-on promoter will cause translation of bak and so induce apoptosis. The gene of interest will not be read off, because there is no promoter in construct 2. | Induction of tet-on promoter will cause translation of bak and so induce apoptosis. The gene of interest will not be read off, because there is no promoter in construct 2. | ||
- | === c) only construct 3 | + | === c) only construct 3 enters the cell === |
PhiC31o will be translated because of the CMV promoter. But after tet-on induction bak will also be read-off and therefore cause cell death. | PhiC31o will be translated because of the CMV promoter. But after tet-on induction bak will also be read-off and therefore cause cell death. | ||
- | === d) construct 2 and 3 | + | === d) both construct 2 and 3 enter the cell === |
PhiC31o will be read off because of CMV promoter. Now the integrase will combine attB and attP site and integrate construct 2 into the genome. Now the gene of interest is integrated between the tet-on promoter and bak in the cellular genome. This complex will be translated after tetracycline induction. The doubled stop codon and polyadenylation site directly after eGFP (the gene of interest) will efficiently prevent the tranlation of bak. Thus such cells will express the gene of interest and survive. | PhiC31o will be read off because of CMV promoter. Now the integrase will combine attB and attP site and integrate construct 2 into the genome. Now the gene of interest is integrated between the tet-on promoter and bak in the cellular genome. This complex will be translated after tetracycline induction. The doubled stop codon and polyadenylation site directly after eGFP (the gene of interest) will efficiently prevent the tranlation of bak. Thus such cells will express the gene of interest and survive. |
Revision as of 12:50, 27 August 2010