Team:Imperial College/Genetic Circuit
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In this case, [protein] represents the concentration of GFP, which will be the reporter protein in our constructs used for characterisation. k<sub>1</sub> represents the rate of synthesis and d<sub>1</sub> represents the degradation rate. | In this case, [protein] represents the concentration of GFP, which will be the reporter protein in our constructs used for characterisation. k<sub>1</sub> represents the rate of synthesis and d<sub>1</sub> represents the degradation rate. | ||
- | We can easily simulate this synthesis-degradation model using Matlab; the ODEs and simulation file can be found in the | + | We can easily simulate this synthesis-degradation model using Matlab; the ODEs and simulation file can be found in the dry lab appendices. |
We can also solve this ODE analytically. | We can also solve this ODE analytically. | ||
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Under this model, the dynamic behaviour (whether or not [GFP] attains a maximum higher than its steady-state value) depends on the relative strengths of the kinetic constants describing the interactions underlying the model. Either way, the steady-state [GFP] will vary as a Hill-function dependent on the initial concentration of IPTG; this characteristic can be used to discriminate between the two models. | Under this model, the dynamic behaviour (whether or not [GFP] attains a maximum higher than its steady-state value) depends on the relative strengths of the kinetic constants describing the interactions underlying the model. Either way, the steady-state [GFP] will vary as a Hill-function dependent on the initial concentration of IPTG; this characteristic can be used to discriminate between the two models. | ||
- | ODEs and simulation m-files for further exploration of the properties of these models can be found in the | + | ODEs and simulation m-files for further exploration of the properties of these models can, again, be found in the appendices. |
[[Team:Imperial_College/Genetic_Circuit_Details | '''>>> Details of equilibria and equations and qualitative discussion of parameter effects >>>''']] | [[Team:Imperial_College/Genetic_Circuit_Details | '''>>> Details of equilibria and equations and qualitative discussion of parameter effects >>>''']] |
Revision as of 03:08, 30 October 2008
Modelling the Genetic Circuit
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