Team:University of Lethbridge/Modeling

From 2008.igem.org

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For our project, we decided to create a synthetic bacterium which could move towards and degrade an environmental pollutant. To direct the movement of our modified "Bacuum Cleaner," we reprogrammed the chemotaxis pathway by using a toxin-responsive riboswitch to control expression of the motility protein CheZ. CheZ catalyzes the dephosphorylation of the motility protein CheY, which promotes directed movement (chemotaxis) over the "tumbling" state of the bacterium.  
For our project, we decided to create a synthetic bacterium which could move towards and degrade an environmental pollutant. To direct the movement of our modified "Bacuum Cleaner," we reprogrammed the chemotaxis pathway by using a toxin-responsive riboswitch to control expression of the motility protein CheZ. CheZ catalyzes the dephosphorylation of the motility protein CheY, which promotes directed movement (chemotaxis) over the "tumbling" state of the bacterium.  
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We used the modeling program BCT (ref) to determine the level of ''CheZ'' gene expression necessary to produce dephosphorylated CheY and directed movement. Increasing intracellular concentrations of CheZ leads to increased CheY in the unphosphorylated state (Figure 1a)...  
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We used the modeling program BCT (ref) to determine the level of ''CheZ'' gene expression necessary to produce dephosphorylated CheY and directed movement. Increasing intracellular concentrations of CheZ leads to increased CheY in the unphosphorylated state (Figure 1)...  
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[[Image:Chez_hjfigure.jpg|400px]]
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{| class=wikitable style="background:transparent; color:white"
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<font color=white> Figure 1
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|<!--col2-->[[Image:Igem_chez_combo.jpg|460px]]
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|<!--col1-->[[Image:Chez_pzmfigure.gif|480px]]
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|<!--col2-->align="center" |<font color=white> <font color=white> Possible Figure 1 -need to add 2nd axes title
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|<!--col1-->align="center" |<font color=white>  Prizm version of Figure 1
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Revision as of 14:44, 29 October 2008

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Our Project

For our project, we decided to create a synthetic bacterium which could move towards and degrade an environmental pollutant. To direct the movement of our modified "Bacuum Cleaner," we reprogrammed the chemotaxis pathway by using a toxin-responsive riboswitch to control expression of the motility protein CheZ. CheZ catalyzes the dephosphorylation of the motility protein CheY, which promotes directed movement (chemotaxis) over the "tumbling" state of the bacterium.

We used the modeling program BCT (ref) to determine the level of CheZ gene expression necessary to produce dephosphorylated CheY and directed movement. Increasing intracellular concentrations of CheZ leads to increased CheY in the unphosphorylated state (Figure 1)...


Chez hjfigure.jpg

Figure 1


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