Team:TU-Eindhoven/LEC/Modelling

From 2012.igem.org

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Global introduction to the yeast model
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Global introduction
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To achieve an accurate model, the influences of voltage-dependent calcium channels are added to a basic model for yeast calcium homeostasis. In this model, first described by J. Cui <i>et al</i>, the main contributions of calcium transport are defined <html><a href="#ref_cui" name="text_cui"><sup>[2]</sup></a></html>. In literature, little can be found about modeling calcium channels in Saccaromyces Cerevisiae, most commonly known as budding yeast. Therefore we still used the model of  sympathetic ganglion `B' type cells of a bullfrog to describe this process, since the type of voltage-dependent calcium channels is the same in both the bullfrog cells and the yeast cells.  
To achieve an accurate model, the influences of voltage-dependent calcium channels are added to a basic model for yeast calcium homeostasis. In this model, first described by J. Cui <i>et al</i>, the main contributions of calcium transport are defined <html><a href="#ref_cui" name="text_cui"><sup>[2]</sup></a></html>. In literature, little can be found about modeling calcium channels in Saccaromyces Cerevisiae, most commonly known as budding yeast. Therefore we still used the model of  sympathetic ganglion `B' type cells of a bullfrog to describe this process, since the type of voltage-dependent calcium channels is the same in both the bullfrog cells and the yeast cells.  
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<b>[fig1.pgn] Figure with basic model || basic model + calcium channels || basic model ++ next to each other, to provide some insight in the cell dynamics </b>
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<b>[fig1.pgn] Figure with basic model || basic model + calcium channels || basic model ++ next to each other, to provide some insight in the cell dynamics</b>
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<i>In short, we formulated a new basic calcium model for yeast cells. This model is extended with overexpression of voltage-dependent calcium channels and addition of GECO-kinetics. The model is made in MATLAB and the code can be found here.</i>
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In short, formulated a new basic calcium model for yeast cells. This model is extended with overexpression of voltage-dependent calcium channels and addition of GECO-kinetics. The model is made in MATLAB and the code can be found here .
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In more detail
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The model
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Since we do not want to bother the semi-interested readers with the complete derivation of the differential equations describing this model, this can be found in the bachelor thesis  of one of our team members, Petra Alkema. In order to understand the results, discussion and conclusion in more detail, we really recommend to study this chapter. In an addition, a more detailed introduction to the conformational switch model, part of the total model, can be found here .  
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Since we do not want to bother the semi-interested readers with the complete derivation of the differential equations describing this model, this can be found in the bachelor thesis  of one of our team members, Petra Alkema. In order to understand the results, discussion and conclusion in more detail, we really recommend to study this chapter. In an addition, a more detailed introduction to the conformational switch model, part of the total model, can be found here.  
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The main differential equations are:
The main differential equations are:
[fig2.pgn]
[fig2.pgn]
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Revision as of 16:41, 24 September 2012