Team:ETH Zurich/modeling/parameters

From 2014.igem.org

(Difference between revisions)
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|d<sub>LuxAHL</sub>||0.004 min<sup>-1</sup>||Degradation rate of LuxAHL (30C6HSL)||Estimated
|d<sub>LuxAHL</sub>||0.004 min<sup>-1</sup>||Degradation rate of LuxAHL (30C6HSL)||Estimated
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|d<sub>LuxR</sub>||0.0231 min<sup>-1</sup>||Degradation rate of LuxR||Basu
+
|d<sub>LuxR</sub>||0.0231 min<sup>-1</sup>||Degradation rate of LuxR||Literature <sup>[[Team:ETH_Zurich/project/references|[20]]]</sup>
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|d<sub>RLux</sub>||0.0231 min<sup>-1</sup>||Degradation rate of RLux||Basu
+
|d<sub>RLux</sub>||0.0231 min<sup>-1</sup>||Degradation rate of RLux||Literature <sup>[[Team:ETH_Zurich/project/references|[20]]]</sup>
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|d<sub>Bxb1</sub>||0.01 min<sup>-1</sup>||Degradation rate of Bxb1||Assumed
|d<sub>Bxb1</sub>||0.01 min<sup>-1</sup>||Degradation rate of Bxb1||Assumed
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|α<sub>LasR</sub>||60 nMmin<sup>-1</sup>||Production rate of LasR||Estimated
|α<sub>LasR</sub>||60 nMmin<sup>-1</sup>||Production rate of LasR||Estimated
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|k<sub>RLas</sub>||0.1 nM<sup>-1</sup>min<sup>-1</sup>|| Rate of formation of RLas from LasAHL and LasR||Weber
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|k<sub>RLas</sub>||0.1 nM<sup>-1</sup>min<sup>-1</sup>|| Rate of formation of RLas from LasAHL and LasR||Literature <sup>[[Team:ETH_Zurich/project/references|[19]]]</sup>
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|k<sub>-RLas</sub>||10 min<sup>-1</sup>||Dissociation rate of RLas ||Weber
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|k<sub>-RLas</sub>||10 min<sup>-1</sup>||Dissociation rate of RLas ||Literature  <sup>[[Team:ETH_Zurich/project/references|[19]]]</sup>
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|K<sub>mLas</sub>||0.1145 nM||Lumped parameter for the Las system ||Fitted
|K<sub>mLas</sub>||0.1145 nM||Lumped parameter for the Las system ||Fitted
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|d<sub>LasAHL</sub>||0.004 min<sup>-1</sup>||Degradation rate of LasAHL (30C12HSL)||Estimated
|d<sub>LasAHL</sub>||0.004 min<sup>-1</sup>||Degradation rate of LasAHL (30C12HSL)||Estimated
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|d<sub>LasR</sub>||0.0231 min<sup>-1</sup>||Degradation rate of LasR||(Assumed to be same as LuxAHL) Basu
+
|d<sub>LasR</sub>||0.0231 min<sup>-1</sup>||Degradation rate of LasR||Literature <sup>[[Team:ETH_Zurich/project/references|[19]]]</sup> (Assumed to be the same for Lux system)
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|d<sub>RLas</sub>||0.0231 min<sup>-1</sup>||Degradation rate of RLas||(Assumed to be same as LuxAHL) Basu
+
|d<sub>RLas</sub>||0.0231 min<sup>-1</sup>||Degradation rate of RLas||Literature <sup>[[Team:ETH_Zurich/project/references|[19]]]</sup> (Assumed to be the same for Lux system)
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|d<sub>ϕc31</sub>||0.01 min<sup>-1</sup>||Degradation rate of ϕC31||Assumed
|d<sub>ϕc31</sub>||0.01 min<sup>-1</sup>||Degradation rate of ϕC31||Assumed
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|L<sub>PLux</sub>||0.02461 nM<sup>-1</sup>min<sup>-1</sup>||Leakiness after using riboswitch for PLas||Fitted
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|L<sub>PLux</sub>||0.02461 nM<sup>-1</sup>min<sup>-1</sup>||Leakiness after using riboswitch for PLas||Fitted [https://2014.igem.org/Team:ETH_Zurich/modeling/int Integrase module]
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|k<sub>DBxb1</sub>||1 nM<sup>-1</sup>min<sup>-1</sup>||Dimerization rate of Bxb1||Fitted
+
|k<sub>DBxb1</sub>||1 nM<sup>-1</sup>min<sup>-1</sup>||Dimerization rate of Bxb1||Fitted [https://2014.igem.org/Team:ETH_Zurich/modeling/int Integrase module]
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|k<sub>-DBxb1</sub>||10<sup>-4</sup> min<sup>-1</sup>||Dissociation rate of DBxb1||Fitted
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|k<sub>-DBxb1</sub>||10<sup>-6</sup> min<sup>-1</sup>||Dissociation rate of DBxb1||Fitted [https://2014.igem.org/Team:ETH_Zurich/modeling/int Integrase module]
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|k<sub>SABxb1</sub>||1 nM<sup>-1</sup>min<sup>-1</sup>||Rate of formation of SA<sub>Bxb1</sub> from DBxb1 and SI<sub>Bxb1</sub>||Fitted
+
|k<sub>SABxb1</sub>||1 nM<sup>-1</sup>min<sup>-1</sup>||Rate of formation of SA<sub>Bxb1</sub> from DBxb1 and SI<sub>Bxb1</sub>||Fitted [https://2014.igem.org/Team:ETH_Zurich/modeling/int Integrase module]
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|k<sub>-SABxb1</sub>||10<sup>-4</sup> min<sup>-1</sup>||Dissociation rate of SA<sub>Bxb1</sub>||Fitted
+
|k<sub>-SABxb1</sub>||10<sup>-6</sup> min<sup>-1</sup>||Dissociation rate of SA<sub>Bxb1</sub>||Fitted [https://2014.igem.org/Team:ETH_Zurich/modeling/int Integrase module]
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|d<sub>DBxb1</sub>||0.02 min<sup>-1</sup>||Degradation rate of DBxb1||Assumed
|d<sub>DBxb1</sub>||0.02 min<sup>-1</sup>||Degradation rate of DBxb1||Assumed
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|k<sub>ϕc31</sub>||1 nM<sup>-1</sup>min<sup>-1</sup>||Dimerization rate of ϕc31||Fitted
+
|k<sub>ϕc31</sub>||1 nM<sup>-1</sup>min<sup>-1</sup>||Dimerization rate of ϕc31||Fitted [https://2014.igem.org/Team:ETH_Zurich/modeling/int Integrase module]
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|k<sub>-Dϕc31</sub>||10<sup>-4</sup> min<sup>-1</sup>||Rate of dissociation of Dϕc31||Fitted
+
|k<sub>-Dϕc31</sub>||10<sup>-6</sup> min<sup>-1</sup>||Rate of dissociation of Dϕc31||Fitted [https://2014.igem.org/Team:ETH_Zurich/modeling/int Integrase module]
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|k<sub>SAϕc31</sub>||1 nM<sup>-1</sup>min<sup>-1</sup>||Rate of formation of SA<sub>ϕc31</sub> from Dϕc31 and SI<sub>ϕc31</sub>||Fitted
+
|k<sub>SAϕc31</sub>||1 nM<sup>-1</sup>min<sup>-1</sup>||Rate of formation of SA<sub>ϕc31</sub> from Dϕc31 and SI<sub>ϕc31</sub>||Fitted [https://2014.igem.org/Team:ETH_Zurich/modeling/int Integrase module]
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|k<sub>-SAϕc31</sub>||10<sup>-4</sup> min<sup>-1</sup>||Rate of dissociation of SA<sub>ϕc31</sub>||Fitted
+
|k<sub>-SAϕc31</sub>||10<sup>-6</sup> min<sup>-1</sup>||Rate of dissociation of SA<sub>ϕc31</sub>||Fitted [https://2014.igem.org/Team:ETH_Zurich/modeling/int Integrase module]
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|d<sub>Dϕc31</sub>||0.02 min<sup>-1</sup>||Degradation rate of Dϕc31||Assumed
|d<sub>Dϕc31</sub>||0.02 min<sup>-1</sup>||Degradation rate of Dϕc31||Assumed

Revision as of 11:34, 14 October 2014

iGEM ETH Zurich 2014