Team:ETH Zurich/project/overview

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(Integrases)
(Implementation in E. coli)
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=== Implementation in ''E. coli'' ===
=== Implementation in ''E. coli'' ===
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Mosai''coli'' involves three main constructs per cell, one for quorum sensing, one for production of integrases, and the last with the integrase based XOR logic gate to perform computation. Each cell can receive two orthogonal AHLs - the RhlI and LuxI products.  The Rhl-AHL or the Lux-AHL received by the cell bind to their corresponding receptor proteins  RhlR and LuxR, thus activating them. The LuxR-Lux-AHL or RhlR-Rhl-AHL complex bind to the corresponding promoters Prhl and Plux on the second plasmid and positively regulate the expression of two integrases ΦC31 and Bxb1 respectively. Additionally, we use riboregulators to regulate the expression of the integrases thus reducing the leakiness of promoters Plux or Prhl<sup>[[#refWilliams|[10]]]</sup>.
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Mosai''coli'' involves three main constructs per cell, one for quorum sensing, one for production of integrases, and the last with the integrase based XOR logic gate to perform computation. Each cell can receive two orthogonal AHLs - the RhlI product C<sub>4</sub>-HSL and LuxI product 3OC<sub>6</sub>-HSL.  The C<sub>4</sub>-HSL or the 3OC<sub>6</sub>-HSL received by the cell bind to their corresponding receptor proteins  RhlR and LuxR, thus activating them. The LuxR-3OC<sub>6</sub>-HSL or RhlR-C<sub>4</sub>-HSL complex bind to the corresponding promoters Prhl and Plux on the second plasmid and positively regulate the expression of two integrases ΦC31 and Bxb1 respectively. Additionally, we use riboregulators to regulate the expression of the integrases thus reducing the leakiness of promoters Plux or Prhl<sup>[[#refWilliams|[10]]]</sup>.
[[File:ETHZurich molbio simplified.png |500px|center|]]
[[File:ETHZurich molbio simplified.png |500px|center|]]

Revision as of 07:56, 12 August 2014

iGEM ETH Zurich 2014

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