Difference between revisions of "Team:Newcastle/Results"

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The aim of the Fim switch part was to make a processor module which can be visually inspected for functionality.  The Fim switch has been shown to expresses the eforRed chromoprotein under normal (uninduced) conditions which allows the user to both determine that the strain is alive and has maintained the Fim switch plasmid.  Following induction, the Fim promoter flips direction and begins expressing RhlI which synthesises the C4-AHL quorum sensing molecule.  This has been shown to successfully induce expression of sfGFP in the reporter strain (<a href="http://parts.igem.org/Part:BBa_K2205015">BBa_K2205015</a>).<br/><br/>
 
The aim of the Fim switch part was to make a processor module which can be visually inspected for functionality.  The Fim switch has been shown to expresses the eforRed chromoprotein under normal (uninduced) conditions which allows the user to both determine that the strain is alive and has maintained the Fim switch plasmid.  Following induction, the Fim promoter flips direction and begins expressing RhlI which synthesises the C4-AHL quorum sensing molecule.  This has been shown to successfully induce expression of sfGFP in the reporter strain (<a href="http://parts.igem.org/Part:BBa_K2205015">BBa_K2205015</a>).<br/><br/>

Revision as of 18:40, 1 November 2017

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Our Experimental Results


Below is a diagram of our Sensynova Framework. Clicking on each part of the framework (e.g. detector modules) links to the relevant results.

Alternatively, at the bottom of this page are tabs which will show you results for every part of the project



Framework

Framework Chassis

Biochemical Adaptor

Target

Detector Modules

Multicellular Framework Testing

C12 HSL: Connector 1

Processor Modules

Framework in Cell Free Protein Synthesis Systems

C4 HSL: Connector 2

Reporter Modules



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