Team:TU-Eindhoven/LEC/Modelling

From 2012.igem.org

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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.  
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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>.  
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The addition of the voltage-dependent calcium channels  
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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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Revision as of 11:28, 25 September 2012