Team:ETH Zurich/modeling/whole

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Under ideal conditions, there is no leakiness or cross-talk. The figure shows the production of GFP as a function of four different combinations of inputs in an ideal whole cell. No GFP is produced when there is no LasAHL and LuxAHL or when both are present. GFP is produced only when one of the input AHLs are present, thus emulating an XOR system. In the second case, the rate of production of GFP reduces after three hours. This could be attributed to the delayed production of LasAHL from LasI.
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From our experimental data, we observed some basal leakiness for P<sub>Lux</sub> and P<sub>Las</sub> even after using riboregulators. From the model we see that, this small basal leakiness is amplified downstream. The basal leakiness results in production of integrases which further act on the XOR module and cause the switching of the terminator. Thus, there is GFP and LasI produced, and the LasI produced further catalyses the production of more LasAHL. Thus, we observe some GFP even without inputs.
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However, if we measure the fluorescence at around 150 mins, we observe a good and acceptable XOR behaviour. Therefore, one of the solutions we propose is to kill or freeze the cells in each row after 3 hours.  
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<!-- Alternatively, we propose a modified construct, where production of LasI is regulated by a weaker promoter and is induced by a protein, whose production is coupled with production of GFP. -->
=== With Leakiness and Crosstalk ===
=== With Leakiness and Crosstalk ===

Revision as of 14:06, 13 October 2014

iGEM ETH Zurich 2014