Team:Oxford/biosensor construction
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Unfortunately after multiple attempts to construct this pSRK Gm pdcmAsfGFP construct we were unable to do so through Gibson assembly. Since we plan to prove this system can work in E. coli we were able to re-design this construct to use a different vector with a origin of replication compatible with our other construct pOXON-2 (containing dcmR). | Unfortunately after multiple attempts to construct this pSRK Gm pdcmAsfGFP construct we were unable to do so through Gibson assembly. Since we plan to prove this system can work in E. coli we were able to re-design this construct to use a different vector with a origin of replication compatible with our other construct pOXON-2 (containing dcmR). | ||
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We chose to use plasmid backbone pJ404 since it contains a pBR322 origin of replication which is compatible with p15A origin of replication present in pOXON-2. | We chose to use plasmid backbone pJ404 since it contains a pBR322 origin of replication which is compatible with p15A origin of replication present in pOXON-2. | ||
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Since DcmR is predicted to regulate expression of DcmA as well as auto regulation of its own expression we decided to insert this promoter-containing intergenic region with GFP at both positions. These positions correspond to the equivalent position of dcmA (labelled as ‘forward’) or the equivalent position of dcmR (labelled as ‘reverse’). | Since DcmR is predicted to regulate expression of DcmA as well as auto regulation of its own expression we decided to insert this promoter-containing intergenic region with GFP at both positions. These positions correspond to the equivalent position of dcmA (labelled as ‘forward’) or the equivalent position of dcmR (labelled as ‘reverse’). | ||
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These are shown below: | These are shown below: | ||
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Revision as of 21:45, 13 October 2014