Team:NCTU Formosa/modeling

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<p> In order to characterize this high temperature induced device <a href=" http://partsregistry.org/Part:BBa_K098995">BBa_K098995</a>, the fluorescence intensity of<a href=" http://partsregistry.org/Part:BBa_K098988">BBa_K098988</a> is measured by the flow cytometry (Figure. 1).
<p> In order to characterize this high temperature induced device <a href=" http://partsregistry.org/Part:BBa_K098995">BBa_K098995</a>, the fluorescence intensity of<a href=" http://partsregistry.org/Part:BBa_K098988">BBa_K098988</a> is measured by the flow cytometry (Figure. 1).
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<br><b>Figure1. Part BBa_K098988 Design. The heat induced device BBa_K098995 uses gene BBa_K098997 coding for cI repressor to inhibit the cI promoter BBa_R0051. The activity of cI repressor is decreased by elevating temperature from 30 ℃ to 42 ℃. </b><br>
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<br><b>Figure1.</b> Part BBa_K098988 Design. The heat induced device BBa_K098995 uses gene BBa_K098997 coding for cI repressor to inhibit the cI promoter BBa_R0051. The activity of cI repressor is decreased by elevating temperature from 30 ℃ to 42 ℃.  
A differential equation is used to calculate protein expression activity of BBa_K098995 as follows.
A differential equation is used to calculate protein expression activity of BBa_K098995 as follows.

Revision as of 13:03, 4 October 2011



Modeling

Modeling and simulations of high temperature induced device BBa_K098995 – cI promoter & cI repressor

In order to characterize this high temperature induced device BBa_K098995, the fluorescence intensity ofBBa_K098988 is measured by the flow cytometry (Figure. 1).


Figure1. Part BBa_K098988 Design. The heat induced device BBa_K098995 uses gene BBa_K098997 coding for cI repressor to inhibit the cI promoter BBa_R0051. The activity of cI repressor is decreased by elevating temperature from 30 ℃ to 42 ℃. A differential equation is used to calculate protein expression activity of BBa_K098995 as follows.