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iGEM 2012
Home
Idea
Biological therapy
Challenge
Solution
The switch
Overview
Designed TAL regulators
Mutual repressor switch
Positive feedback loop switch
Safety mechanisms
Overview
Escape tag
Termination
Microcapsule degradation
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Overview
Hepatitis C
Ischaemic heart disease
Modeling
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Modeling methods
Mutual repressor switch
Positive feedback loop switch
Quantitative and stability model
Interactive simulations
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Quantitatie model interactive simulations
Mutual repressor switch simulation
The positive feedback loop switch simulation
Mutual repressor switch
INPUT VECTORS DOSAGE
Construct
Dosage
[A]_pCMV_TAL-B:KRAB_BFP
ng
[B]_pCMV_TAL-A:KRAB_mCitrine
ng
pCMV_[PIR]_TAL-B:KRAB
ng
pCMV_[ETR]_TAL-B:KRAB
ng
pCMV_PIP:KRAB
ng
pCMV_E:KRAB
ng
(Enter dosages for corresponding plasmids.)
TRANSCRIPTION FACTORS
Equal transcription factors
(Transcription factors will alter transcription with equal rates)
INDUCERS
Pristinamycin
Input times [min]
Durations [min]
Erithromycin
Input times [min]
Durations [min]
(For each input time of an inducer, enter its corresponding duration, i.e. after how many minutes the inducer will be removed. )
SIMULATION
Time:
min
(Simulation running time)
Positive feedback loop switch
INPUT VECTORS DOSAGE
Construct
Dosage
[A]_pCMV_TAL-B:KRAB_TAL-A:VP16_BFP
ng
[B]_pCMV_TAL-A:KRAB_TAL-B:VP16_mCitrine
ng
pCMV_[PIR]_TAL-B:KRAB_TAL-A:VP16
ng
pCMV_[ETR]_TAL-A:KRAB_TAL-B:VP16
ng
pCMV_PIP:KRAB_E:KRAB
ng
(Enter dosages for corresponding plasmids.)
TRANSCRIPTION FACTORS
Equal transcription factors
(Transcription factors will alter transcription with equal rates)
INDUCERS
Pristinamycin
Input times [min]
Durations [min]
Erithromycin
Input times [min]
Durations [min]
(For each input time of an inducer, enter its corresponding duration, i.e. after how many minutes the inducer will be removed. )
SIMULATION
Time:
min
(Simulation running time)