Difference between revisions of "Team:Aalto-Helsinki/Car-activation"
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− | <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 these reactions have no big effect on either the amounts of CoA or 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 these reactions have no big effect on either the amounts of CoA or 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>From these assumptions we can build an ODE system:</p> | <p>From these assumptions we can build an ODE system:</p> | ||
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− | <p>Since the reaction is irreversible all of the Car in the simulation is swiftly transformed into its active form.</p> | + | <p>Since the reaction is irreversible, all of the Car in the simulation is swiftly transformed into its active form.</p> |
<p>With the protein creation and degradation, we tested different rates for the protein creation and degradation. Here is a time course with rates varied from 0 to 5 µM/s:</p> | <p>With the protein creation and degradation, we tested different rates for the protein creation and degradation. Here is a time course with rates varied from 0 to 5 µM/s:</p> | ||
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<p>The amount of active Car in the system varies with the enzyme degradation and creation rates. Within this variation the values that the relation Car_holo/Car got are between 90% and 100%.</p> | <p>The amount of active Car in the system varies with the enzyme degradation and creation rates. Within this variation the values that the relation Car_holo/Car got are between 90% and 100%.</p> | ||
− | <p>There are some weak points to this model: Since we could not get data about DNA transcription and translation speed this model is mainly used to find lower limits for the amount of active Car we have in our cells. Also, it might be wrong to assume that a cell reaches equilibrium in its enzymes’ amounts. However, this model shows that unless enzymes are created and degraded with awe-inspiring speeds our system will have most of its Car enzyme in the active form. In fact, according to this model, Car would need to be created and degraded with a speed of 20 µM/min for us to have 50% of Car active. When we compare this with the fact that we only have about 1 µM of Car in our cell, we can safely say that in most scenarios our Car is mostly if not entirely in its active form.</p> | + | <p>There are some weak points to this model: Since we could not get data about DNA transcription and translation speed, this model is mainly used to find lower limits for the amount of active Car we have in our cells. Also, it might be wrong to assume that a cell reaches equilibrium in its enzymes’ amounts. However, this model shows that unless enzymes are created and degraded with awe-inspiring speeds our system will have most of its Car enzyme in the active form. In fact, according to this model, Car would need to be created and degraded with a speed of 20 µM/min for us to have 50% of Car active. When we compare this with the fact that we only have about 1 µM of Car in our cell, we can safely say that in most scenarios our Car is mostly if not entirely in its active form.</p> |
</section> | </section> |
Revision as of 21:34, 8 September 2015