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{{Team:Paris_Saclay/project_header|titre=Experimental Strategy}} | {{Team:Paris_Saclay/project_header|titre=Experimental Strategy}} | ||
− | + | We designed a bring DNA closer tool (BDC tool) and a visualization tool, as mentioned [[Team:Paris_Saclay/Design#design|there]]. In order to characterize our tools, we set up an experimental strategy exposed bellow. | |
=Characterization strategy= | =Characterization strategy= | ||
− | ==Tripartit Split-GFP and FRB FKBP12 dimerization systems== | + | ==Tripartit Split-GFP and FRB-FKBP12 dimerization systems== |
− | Preliminary we have designed two biobricks to test the FRB*/FKBP12 interaction and the tripartite GFP. FRB* | + | Preliminary we have designed two biobricks to test the FRB*/FKBP12 interaction and the tripartite GFP system. FRB* was fused with one subunit of GFP (GFP 11) and FKBP12 was fused with another one (GFP10). |
[[Image:Image4design.jpg|frameless|upright=2.5|center|]] | [[Image:Image4design.jpg|frameless|upright=2.5|center|]] | ||
− | In order to test the system we built a plasmid containing three biobricks to express the full system. Then we | + | In order to test the system, we built a plasmid containing three biobricks to express the full system. Then we transformed it in ''E. coli'' to asess it. The system would be tested by measuring GFP fluorescence with rapalog and without (rapamycin analog). We also plan to test it in bacterial containing just two parts (FRB-GFP11 and FKBP12-GFP10) instead of the three (without GFP1-9). |
[[Image:Image5design.jpg|frameless|upright=2.5|center|]] | [[Image:Image5design.jpg|frameless|upright=2.5|center|]] |
Revision as of 13:47, 9 October 2016