Team:SJTU-BioX-Shanghai
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<p>This year, SJTU-BioX-Shanghai iGEM team is trying to build a “factory” on E.coli’s membrane, where enzyme assemblies can be manipulated so that biochemical reactions can be accelerated and further controlled. </p> | <p>This year, SJTU-BioX-Shanghai iGEM team is trying to build a “factory” on E.coli’s membrane, where enzyme assemblies can be manipulated so that biochemical reactions can be accelerated and further controlled. </p> | ||
- | <p>We aimed at constructing a set of protein assemblies on E.coli | + | <p>We aimed at constructing a set of protein assemblies on E.coli inner membrane as carriers of various enzymes. Distinct from previous synthetic scaffold system, our device limits the reaction space to a two-dimensional surface. In such system, the membrane functions as an extensive scaffold for proteins to anchor without limitation of scaffold amount. Membrane as scaffold also has privilege in receiving external and internal regulating signals. Based on Membrane Scaffold, we built two universal devices.</p> |
- | <p> | + | <p>In Membrane Accelerator device, by gathering downstream enzymes through interacting protein domains, the reaction can be accelerated sharply. Production of fatty acid was enhanced by more than 24 fold through recruiting membrane accelerator system, which has a promising application prospect in biofuel production.</p> |
- | <p>In | + | <p>In Membrane Rudder device, we successfully changed the direction of Violacein synthetic pathway through light signal. </p> |
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Revision as of 00:57, 26 October 2012
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