Difference between revisions of "Team:Aalto-Helsinki/Car-activation"
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<p>This reaction abides by the irreversible bi-bi ping pong reaction, and is therefore quite nice to model with Michaelis-Menten kinetics. In addition to this equation, we consider two more phenomena that affect the amount of active Car we have: The creation of Car in its apo form, and the degradation of enzymes. These reactions can be written as</p> | <p>This reaction abides by the irreversible bi-bi ping pong reaction, and is therefore quite nice to model with Michaelis-Menten kinetics. In addition to this equation, we consider two more phenomena that affect the amount of active Car we have: The creation of Car in its apo form, and the degradation of enzymes. These reactions can be written as</p> | ||
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+ | <p style="color:gray;">--Some more formulas--</p> | ||
<p>For this model, we assume that the amount of enzymes in a cell is constant, i.e. that the speed of enzyme’s creation is equal to its speed of degradation. We also assume that this reaction has no big effect on either the amounts of CoA and 3’,5’-ADP. We assume that the amount of Car, that is the cumulative amount of both its apo- and holo-forms is constant. Since these substrates or products do not affect the rest of the simulation, we have good grounds to assume that we can separate it from the main simulation.</p> | <p>For this model, we assume that the amount of enzymes in a cell is constant, i.e. that the speed of enzyme’s creation is equal to its speed of degradation. We also assume that this reaction has no big effect on either the amounts of CoA and 3’,5’-ADP. We assume that the amount of Car, that is the cumulative amount of both its apo- and holo-forms is constant. Since these substrates or products do not affect the rest of the simulation, we have good grounds to assume that we can separate it from the main simulation.</p> | ||
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+ | <p>From these assumptions we can build an ODE system:</p> | ||
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+ | <p style="color:gray;">--The complete ODEs here--</p> | ||
<p>As you can see, we modeled the creation of Car_apo as a constant flux reaction, and the degradation of different proteins as a reaction abiding the laws of mass action. This is because we assume we aren’t affecting the DNA transcription and translation in our model, and since protein degradation is an enzymatic reaction that is hard to model we simplify it as a mass-action reaction.</p> | <p>As you can see, we modeled the creation of Car_apo as a constant flux reaction, and the degradation of different proteins as a reaction abiding the laws of mass action. This is because we assume we aren’t affecting the DNA transcription and translation in our model, and since protein degradation is an enzymatic reaction that is hard to model we simplify it as a mass-action reaction.</p> |
Revision as of 13:32, 10 August 2015