Team:Imperial College London/Modelling/Output/Detailed Description
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During our literature research, we came across a better output, so we abandoned the idea of using GFP as an output. Instead, we are using catechol. An enzyme, dioxygenase, will be acting on the catechol, which will then result in a coloured output. Catechol will be added to the bacteria manually (i.e. the bacteria will not produce catechol). Hence, in our models dioxygenase will be treated as an output as this enzyme is the only activator of catechol in our system. This means that the change of catechol into its colourful form is dependent on the dioxygenase concentration. | During our literature research, we came across a better output, so we abandoned the idea of using GFP as an output. Instead, we are using catechol. An enzyme, dioxygenase, will be acting on the catechol, which will then result in a coloured output. Catechol will be added to the bacteria manually (i.e. the bacteria will not produce catechol). Hence, in our models dioxygenase will be treated as an output as this enzyme is the only activator of catechol in our system. This means that the change of catechol into its colourful form is dependent on the dioxygenase concentration. | ||
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<html><h3>2. Model preA: Simple production of dioxygenase</h3></html> | <html><h3>2. Model preA: Simple production of dioxygenase</h3></html> | ||
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<html><h3>4. Model B: Activation of Dioxygenase by TEV or activated split TEV enzyme</h3></html> | <html><h3>4. Model B: Activation of Dioxygenase by TEV or activated split TEV enzyme</h3></html> | ||
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This model has not been implemented because of the conclusions that we reached from Models A and B. | This model has not been implemented because of the conclusions that we reached from Models A and B. |
Revision as of 15:56, 17 October 2010
Temporary sub-menu: Objectives; Detailed Description; Parameters & Constants; Results & Conclusion;Download MatLab Files; |