Team:ETH Zurich/pre proc

From 2013.igem.org

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<p align="justify">In the bio-game, the mines are the sender cells and the non-mines are the receiver cells. The mines constitutively express LuxI under  ([http://parts.igem.org/Part:BBa_J23110 promoter] and hence ([https://2013.igem.org/Team:ETH_Zurich/Experiments_2 AHL]. This molecule then diffuses through the agar and can be processed by the non-mines.  
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<p align="justify">In the bio-game, the mines are the sender cells and the non-mines are the receiver cells. The mines constitutively express LuxI under  [http://parts.igem.org/Part:BBa_J23110 promoter (Part BBa_J23110)] and hence ([https://2013.igem.org/Team:ETH_Zurich/Experiments_2 AHL]. This molecule then diffuses through the agar and can be processed by the non-mines.  
The non-mines produce luxR and so the incoming AHL will bind to the luxR protein to form an active complex AHL-luxR. The non-mines also contain promoters that are tuned to different AHL sensitivities. The AHL-luxR complex will bind to the promoters and drive the expression of the reporter hydrolases.
The non-mines produce luxR and so the incoming AHL will bind to the luxR protein to form an active complex AHL-luxR. The non-mines also contain promoters that are tuned to different AHL sensitivities. The AHL-luxR complex will bind to the promoters and drive the expression of the reporter hydrolases.
Depending on the amount of AHL that is processed, different expression of output colors give the player the cue for the next move in the bio-game. </p>
Depending on the amount of AHL that is processed, different expression of output colors give the player the cue for the next move in the bio-game. </p>

Revision as of 08:19, 27 October 2013

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80px-Eth igem logo.png

LuxR signaling system

LuxR system.png

Natural Lux signalling system

As our system is based on a sender-receiver module, we use the lux signalling system in our bio-game. In Vibriofischeri, the lux gene encodes for the enzyme that catalyses the production of the signalling molecule N-acyl-homoserine lactone, AHL. The AHl molecule is able to diffuse in and out of cells. This molecule then binds to the inactive luxR protein. Binding of AHL to the luxR forms an active AHL-luxR complex. This complex then binds to the Plux promoter and drives the gene expression forward.


Exploiting the lux signalling system in Colisweeper


MIne and non mine circuit.png


In the bio-game, the mines are the sender cells and the non-mines are the receiver cells. The mines constitutively express LuxI under promoter (Part BBa_J23110) and hence (AHL. This molecule then diffuses through the agar and can be processed by the non-mines. The non-mines produce luxR and so the incoming AHL will bind to the luxR protein to form an active complex AHL-luxR. The non-mines also contain promoters that are tuned to different AHL sensitivities. The AHL-luxR complex will bind to the promoters and drive the expression of the reporter hydrolases. Depending on the amount of AHL that is processed, different expression of output colors give the player the cue for the next move in the bio-game.