Team:SJTU-BioX-Shanghai/Project
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AleAlejandro (Talk | contribs) (→Background) |
AleAlejandro (Talk | contribs) (→Project Overview) |
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As some work has been done in reaction acceleration, people failed to control those reactions artificially and dynamically during biosynthetic process. ''Membrane Rudder'' device, however, offers a novel method to control the direction of reactions through light and chemical signals. More strikingly, we further combine ''Membrane Rudder'' system with genetic circuits by recruiting RNA aptamer and its corresponding binding protein. Thus both extracellular and intracellular signal would trigger the subsequent reaction. | As some work has been done in reaction acceleration, people failed to control those reactions artificially and dynamically during biosynthetic process. ''Membrane Rudder'' device, however, offers a novel method to control the direction of reactions through light and chemical signals. More strikingly, we further combine ''Membrane Rudder'' system with genetic circuits by recruiting RNA aptamer and its corresponding binding protein. Thus both extracellular and intracellular signal would trigger the subsequent reaction. | ||
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===Why MEMBRANE?=== | ===Why MEMBRANE?=== | ||
Why do we choose membrane as our primary scaffold to assemble enzymes? | Why do we choose membrane as our primary scaffold to assemble enzymes? | ||
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4.'''Ability to Receive Signal: ''' ''Membrane Scaffold'' provides a platform to receive environmental and internal signal. Thus reactions could be controlled through those signals. | 4.'''Ability to Receive Signal: ''' ''Membrane Scaffold'' provides a platform to receive environmental and internal signal. Thus reactions could be controlled through those signals. | ||
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Revision as of 13:10, 26 September 2012
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