Team:Grenoble/Projet/Modelling/Parameters

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    <h1>Modelling - Parameters</h1>
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    <h2>Parameters</h2>
    <h2>Parameters</h2>
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      <a href="https://static.igem.org/mediawiki/2011/d/d1/Rapport_Equations.pdf" id="See_below">
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      <a href="http://2011..org/wiki/images/d/d1/Rapport_Equations.pdf" id="See_below">
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      PDF file (detailed explanation on parameters and how we deduced them) for Toggle Switch</a>
      PDF file (detailed explanation on parameters and how we deduced them) for Toggle Switch</a>
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<td>K<SUB>pLac - LacI</SUB></td>
<td>K<SUB>pLac - LacI</SUB></td>
<td>plac - LacI dissociation constant</td>
<td>plac - LacI dissociation constant</td>
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<td>1.61E-3 M</td>
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<td>5.45E-7 M</td>
<td><a href="http://partsregistry.org/Part:BBa_R0011:Experience/iGEM10_Kyoto">Kyoto 10</a></td>
<td><a href="http://partsregistry.org/Part:BBa_R0011:Experience/iGEM10_Kyoto">Kyoto 10</a></td>
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<p>
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Working with the aTc/TetR parameters, we needed to now if our system could work with mercury.
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In order to see if it's <a href="https://2011.igem.org/Team:Grenoble/Projet/Results/Sensitivity#Mercury">applicable to mercury</a>,
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we realized a <a href="https://2011.igem.org/Team:Grenoble/Projet/Results/Sensitivity#Robustness">sensitivity to parameters study</a>.
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    <h2>References</h2>
    <h2>References</h2>
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                                    <option value="/Deterministic#Our_EquationsTS" >Establishment of the equation - Toggle switch</option>
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                                    <option value="/Deterministic#Our_EquationsQS" >Establishment of the equation - Quorum sensing</option>
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                            <optgroup label="Parameters">
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Latest revision as of 03:02, 29 October 2011

Grenoble 2011, Mercuro-Coli iGEM


Modelling - Parameters

Parameters

PDF file (detailed explanation on parameters and how we deduced them) for Toggle Switch
kplac pLac production rate 600 proteins/min [1]
kpTet pTet production rate 600 proteins/min [1]
kpMer pMer production rate 600 proteins/min [1]
δLacI LacI degradation rate 4.6E-2 min−1 PDF file
δTetR TetR degradation rate 4.6E-2 min−1 PDF file
δMerR MerR degradation rate 4.6E-2 min−1 PDF file
KpLac - LacI plac - LacI dissociation constant 5.45E-7 M Kyoto 10
KpMer - MerR pMer - MerR dissociation constant 1.00E-8 M [2]
KpTet - TerR pTet - TetR dissociation constant 5.00E-8 M [3]
KLacI - IPTG LacI - IPTG dissociation constant 2.96E-5 M [4]
KTetR - aTc aTc - TetR dissociation constant 1.5E-8 M [5]
KHg2+ - MerR Hg2+ - MerR dissociation constant 1E-7 M [2]
nplac plac cooperativity number 2,3 [4]
npMer pMer cooperativity number 2,5 [6]
npTet pTet cooperativity number 3 [7]

Working with the aTc/TetR parameters, we needed to now if our system could work with mercury. In order to see if it's applicable to mercury, we realized a sensitivity to parameters study.

References

[1] Nature. 2000 Jan 20;403(6767):335-8. A synthetic oscillatory network of transcriptional regulators. Elowitz MB, Leibler S.

[2] Mol Gen Genet. 1999 Aug;262(1):154-62. Purification and characterization of MerR, the regulator of the broad-spectrum mercury resistance genes in Streptomyces lividans 1326. Rother D, Mattes R, Altenbuchner J.

[3] David Braun et al. Parameter estimation for two synthetic gene networks: A case study. IEEE 2005.

[4] Nature 403, 339-342 (20 January 2000) Construction of a genetic toggle switch in Escherichia coli. Timothy S. Gardner Charles R. Cantor & James J. Collins

[5] O. Scholz, P. Schubert, M. Kintrup and W. Hillen, Tet repressor induction without Mg2+, Biochemistry 39 (2000), pp. 10914–10920

[6] Ultrasensitivity and heavy-metal selectivity of the allosterically modulated MerR transcription complex. D M Ralston and T V O'Halloran

[7] Systems analysis of a quorum sensing network: design constraints imposed by the functional requirements, network topology and kinetic constants. Goryachev AB, Toh DJ, Lee T.