Team:ETH Zurich/achievements

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(Characterizing and lowering leakiness in quorum sensing systems)
(Integrase theoretical characterization)
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We quantitatively characterized leakiness of the three quorum sensing systems. We have designed a new biobrick for lowering leakiness of these systems and proved its efficiency on the lux system, which is the most leaky of the three.
We quantitatively characterized leakiness of the three quorum sensing systems. We have designed a new biobrick for lowering leakiness of these systems and proved its efficiency on the lux system, which is the most leaky of the three.
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=== Integrase theoretical characterization ===
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=== [https://2014.igem.org/Team:ETH_Zurich/modeling/int Integrase theoretical characterization] ===
Basing our investigation on Bonnet et al.'s paper "Amplifying genetic logic gates" <sup>[[Team:ETH_Zurich/project/references#refEmergence|[9]]]</sup>, we used their experimenta data and a very detailed model in order to characterize integrases, and could in particular find a significant number of parameters unknown from the literature, such as binding affinity of integrases to their sites.
Basing our investigation on Bonnet et al.'s paper "Amplifying genetic logic gates" <sup>[[Team:ETH_Zurich/project/references#refEmergence|[9]]]</sup>, we used their experimenta data and a very detailed model in order to characterize integrases, and could in particular find a significant number of parameters unknown from the literature, such as binding affinity of integrases to their sites.

Revision as of 23:48, 11 October 2014

iGEM ETH Zurich 2014