Team:EPF-Lausanne/Our Project/Reporter Systems/tetR

From 2011.igem.org

(Difference between revisions)
(TetR mutant characterization)
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By looking at the dose-response graph, we can see a significant increase between 0 and 200 ng/microL ATC; then the RFU values begin to plateau. The graph shows that the TetR-Ptet interaction has a strong impact on RFP expression. The highest RFUs measured here correspond to the levels of the Ptet-RFP construct alone (in the absence of the the TetR plasmid), showing that we can demonstrate complete TetR suppression in our experiments.
By looking at the dose-response graph, we can see a significant increase between 0 and 200 ng/microL ATC; then the RFU values begin to plateau. The graph shows that the TetR-Ptet interaction has a strong impact on RFP expression. The highest RFUs measured here correspond to the levels of the Ptet-RFP construct alone (in the absence of the the TetR plasmid), showing that we can demonstrate complete TetR suppression in our experiments.
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=== TetR mutant characterization ===
=== TetR mutant characterization ===
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Gene expression with a TetR mutant not recognizing Ptet:
Gene expression with a TetR mutant not recognizing Ptet:
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[[File:EPFL_2reporters_mutant.JPG|360px]]
[[File:EPFL_2reporters_mutant.JPG|360px]]
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Based on this graph, we can estimate the binding affinity of the mutants to consensus Ptet:
Based on this graph, we can estimate the binding affinity of the mutants to consensus Ptet:
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* 1 2 and 3 plateau near 2500 normalized RFUs, which is the value observer for the wild-type without ATC. This means that these mutants can recognize and repress Ptet with the same strength as the wild-type.
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* V36F, V36F W43S and E37A W43S T141A mutants plateau near 2500 normalized RFUs, which is the value observer for the wild-type without ATC. This means that these mutants can recognize and repress Ptet with the same strength as the wild-type.
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* 4 reaches about 5000 normalized RFUs; this value is quite low compared to Ptet intrinsic strength but it is twice higher than RFP expression induced by the wild-type
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* Y42F K108E mutant reaches about 5000 normalized RFUs; this value is quite low compared to Ptet intrinsic strength but it is twice higher than RFP expression induced by the wild-type, indicating that this mutant recognizes and represses Ptet with less power that the wild-type
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* 5 and 6 induce very high RFP expression, 25000 RFUs being the maximal fluorescence obtained by the promoter alone. These data them hint at the fact that the two mutants are not able to bind and repress Ptet.
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* P39K and P39Q Y42M mutants induce very high RFP expression, 25000 RFUs being the maximal fluorescence obtained by the promoter alone. These data them hint at the fact that the two mutants are not able to bind and repress Ptet.
2000 ng/ml ATC:
2000 ng/ml ATC:
[[File:EPFL_TetR-ATC2000-induction.png|600px]]
[[File:EPFL_TetR-ATC2000-induction.png|600px]]
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These data tell us that some mutants are not as much repressed as the others. P39K, P39Q Y42M and Y42F K108E mutants seem to be completely repressed, reaching the maximal RFUs of 25000 (based on Ptet characterization and wild-type TetR data). However, V36F, V36F W43S and E37A W43S T141A only plateau at 15000 RFUs. Still, their dose-response curves do indicate that we reached maximal TetR inhibition. A plausible explanation for this is that these 3 mutants cannot bind ATC properly anymore.
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''Summary''
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With our reporter system, we were able to deduce the following informations for each mutant:
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* V36F: same affinity as the wild-type for Ptet, altered ATC binding
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* V36F W43S: same affinity as the wild-type for Ptet, altered ATC binding
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* E37A W43S T141A: same affinity as the wild-type for Ptet, altered ATC binding
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* Y42F K108E: reduced affinity for Ptet
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* P39K: no affinity for Ptet
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* P39Q Y42M: affinity for Ptet
{{:Team:EPF-Lausanne/Templates/Footer}}
{{:Team:EPF-Lausanne/Templates/Footer}}

Revision as of 00:07, 22 September 2011