Team:ETH Zurich/modeling/qs

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(Assumptions)
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Solving, we get the rate of production of mRNA<sub>Bxb1</sub> as
Solving, we get the rate of production of mRNA<sub>Bxb1</sub> as
$$\frac{d[mRNA_{Bxb1}]}{dt} = L_{P_{Lux}} + \frac{K_{mRNA_{Bxb1}}RLux^2}{K_{mLux} + RLux^2 }- d_{mRNA_{Bxb1}} [mRNA_{Bxb1}]\\$$
$$\frac{d[mRNA_{Bxb1}]}{dt} = L_{P_{Lux}} + \frac{K_{mRNA_{Bxb1}}RLux^2}{K_{mLux} + RLux^2 }- d_{mRNA_{Bxb1}} [mRNA_{Bxb1}]\\$$
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where K<sub>mLux</sub> is a lumped parameter which we fitted to our data.
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$$K_{mLux} = /frac{k_{-P_{LuxON}}}{k_{P_{LuxON}}}$$
=== Parameter fitting ===
=== Parameter fitting ===

Revision as of 11:33, 12 October 2014

iGEM ETH Zurich 2014