Team:Amsterdam/achievements/stochastic model

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(Difference between revisions)
(Leaky expression rate)
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$$
$$
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[O_{\text{Free}}] = [O_{\text{Total}}] (1 + \frac{[R_{2}]}{K_{d}}) \\
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[O_{\text{Free}}] = [O_{\text{Total}}] (1 + \frac{[R_{2}]}{K_{d}})
$$
$$
We immediately see that the $[O_{\text{Free}}]$ depends on $[R_{2}]$ and $O_{\text{Total}}$.
We immediately see that the $[O_{\text{Free}}]$ depends on $[R_{2}]$ and $O_{\text{Total}}$.
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The dissociation constant of the dimerized LacI-repressor for its operator sequence has been determined to be $10^{-12} M $ and the volume of ''E. coli'' is $0.7 \mu m^{3}$.
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The dissociation constant of the dimerized LacI-repressor for its operator sequence has been determined to be $10^{-12} M $ and the volume of ''E. coli'' is $0.7\ \mu m^{3}$.
The transcription rate in E.coli is 40-80 bp/s.
The transcription rate in E.coli is 40-80 bp/s.
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<finish this calculation>
 
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The leaky expression rate can also be extracted from this [[http://oregonstate.edu/instruction/bb492/lectures/Regulation.html|website]], which states that expression is reduced 1000-fold with bound repressor.
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More simply, the leaky expression rate can also be retrieved from this [[http://oregonstate.edu/instruction/bb492/lectures/Regulation.html|website]], which states a 1000-fold decrease in expression of the repressor-bound operon compared to the free operon.
== Fusion protein catalysis rate ==
== Fusion protein catalysis rate ==

Revision as of 17:37, 26 September 2012