Team:UQ-Australia
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Our network is controlled by an engineered promoter, Plac/ara, which features both an activator and a repressor domain. This controls the production of downstream genes to activate other inducible promoters, pBAD and GlnAp2, eventually leading to the production of a repressor protein, lacI, which inhibits Plac/ara, resulting in oscillatory expression. This project shows the feasibility of standardising the biological clock in E. coli and grounds further development for applications in regulated drug/hormone delivery and ion channel control. | Our network is controlled by an engineered promoter, Plac/ara, which features both an activator and a repressor domain. This controls the production of downstream genes to activate other inducible promoters, pBAD and GlnAp2, eventually leading to the production of a repressor protein, lacI, which inhibits Plac/ara, resulting in oscillatory expression. This project shows the feasibility of standardising the biological clock in E. coli and grounds further development for applications in regulated drug/hormone delivery and ion channel control. | ||
- | Find us on [http://www.facebook.com/pages/UQ-iGEM-2011/174356539258535 Facebook]! | + | '''Find us on [http://www.facebook.com/pages/UQ-iGEM-2011/174356539258535 Facebook]!''' |
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! width="125" |[[File:IGEM basic Logo stylized.png|125x125px|link=https://2011.igem.org]] | ! width="125" |[[File:IGEM basic Logo stylized.png|125x125px|link=https://2011.igem.org]] | ||
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|[[File:UQ-Australia_logo_2011.png|125x125px|link=https://2011.igem.org/Team:UQ-Australia]] | |[[File:UQ-Australia_logo_2011.png|125x125px|link=https://2011.igem.org/Team:UQ-Australia]] | ||
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Revision as of 22:57, 5 October 2011