Team:TUDelft/Synthetic Transcriptional Cascade: The plan
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After addition of IPTG, the repressor LacI will change its configuration; this will allow the transcription of TetR in plasmid 2. This molecule will act as repressor of the promoter Ptet in plasmid 2, this stops the production of the repressor cI and red fluorescent protein (RFP). After these events, the promoter lp will be free to allow the production of GFP after a delay in time from the addition of IPTG to the final expression of GFP (Figure 8). | After addition of IPTG, the repressor LacI will change its configuration; this will allow the transcription of TetR in plasmid 2. This molecule will act as repressor of the promoter Ptet in plasmid 2, this stops the production of the repressor cI and red fluorescent protein (RFP). After these events, the promoter lp will be free to allow the production of GFP after a delay in time from the addition of IPTG to the final expression of GFP (Figure 8). | ||
- | [[Image:Figure8Delay.jpg|thumb| | + | [[Image:Figure8Delay.jpg|thumb|250px|Figure 8. Expected behavior of Plasmid 1 and 2 in the Synthetic Transcriptional Cascade sub-project.]] |
[https://2009.igem.org/Team:TUDelft/Synthetic_Transcriptional_Cascade Return] | [https://2009.igem.org/Team:TUDelft/Synthetic_Transcriptional_Cascade Return] | ||
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{{Template:TUDelftiGEM2009_end}} | {{Template:TUDelftiGEM2009_end}} |
Revision as of 14:21, 16 September 2009
This page is still under construction
Synthetic Transcriptional Cascade: The plan
Comparing advantages and disadvantages for both approaches (mainly the leaky problems), the negative synthetic transcriptional cascade was selected. The construction of the plasmids is as showed in figures 6 and 7.
After addition of IPTG, the repressor LacI will change its configuration; this will allow the transcription of TetR in plasmid 2. This molecule will act as repressor of the promoter Ptet in plasmid 2, this stops the production of the repressor cI and red fluorescent protein (RFP). After these events, the promoter lp will be free to allow the production of GFP after a delay in time from the addition of IPTG to the final expression of GFP (Figure 8).