Team:Shenzhen/Result
From 2012.igem.org
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<ul><p> In order to estimate to what extent our YAO system has improved the ability of producing IPP, FPP and GPP in the engineered cell, we construct a model for biochemical reactions of mevalonate pathway in yeast.</p></ul> | <ul><p> In order to estimate to what extent our YAO system has improved the ability of producing IPP, FPP and GPP in the engineered cell, we construct a model for biochemical reactions of mevalonate pathway in yeast.</p></ul> | ||
<ul><p> At first we plan to model the reactions at equilibrium states. However, as Gibbs free energy for most of the reactions in mevalonate pathway are unavailable, we decide to model them by Michealis-Menton kinetics at the beginning of the reactions when no products have been accumulated.</p></ul> | <ul><p> At first we plan to model the reactions at equilibrium states. However, as Gibbs free energy for most of the reactions in mevalonate pathway are unavailable, we decide to model them by Michealis-Menton kinetics at the beginning of the reactions when no products have been accumulated.</p></ul> | ||
- | <ul><p>Via our simulation, it is obvious that biosynthesis reactions in YAO could be significantly accelerate. </p></ul> | + | <ul><p> Via our simulation, it is obvious that biosynthesis reactions in YAO could be significantly accelerate. </p></ul> |
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Latest revision as of 12:26, 26 September 2012