Difference between revisions of "Part:BBa K738000"
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In cells, multienzymatic pathways are often physically and spatially organized onto scaffolds or clusters or into microcompartments. Spatial organization helps substrates flow between interacting proteins, limits cross-talk between signaling pathways, and increases yields of sequential metabolic reactions. | In cells, multienzymatic pathways are often physically and spatially organized onto scaffolds or clusters or into microcompartments. Spatial organization helps substrates flow between interacting proteins, limits cross-talk between signaling pathways, and increases yields of sequential metabolic reactions. | ||
This RNA scaffold is a discrete engineered RNA module for controling the spatial organization of bound proteins. We increased IAA output as a function of scaffold architecture. | This RNA scaffold is a discrete engineered RNA module for controling the spatial organization of bound proteins. We increased IAA output as a function of scaffold architecture. |
Revision as of 20:12, 24 September 2012
RNA Scaffold generator
Scaffold D0 was constructed from a single RNA module d0, which folded into a duplex with PP7 and MS2 aptamer domains that bind PP7 and MS2 fusion proteins
Usage and Biology
In cells, multienzymatic pathways are often physically and spatially organized onto scaffolds or clusters or into microcompartments. Spatial organization helps substrates flow between interacting proteins, limits cross-talk between signaling pathways, and increases yields of sequential metabolic reactions. This RNA scaffold is a discrete engineered RNA module for controling the spatial organization of bound proteins. We increased IAA output as a function of scaffold architecture.
Sequence and Features
Assembly Compatibility:
- 10COMPATIBLE WITH RFC[10]
- 12COMPATIBLE WITH RFC[12]
- 21COMPATIBLE WITH RFC[21]
- 23COMPATIBLE WITH RFC[23]
- 25COMPATIBLE WITH RFC[25]
- 1000COMPATIBLE WITH RFC[1000]