Team:LMU-Munich/Data/Anderson

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Eleven of the nineteen promoters of the [http://partsregistry.org/Part:BBa_J23100 '''Anderson collection'''] (J23100, J23101, J23102, J23103, J23106, J23107, J23113, J23114, J23115, J23117, J23118) were evaluated. Therefore we used the reporter vector pSB<sub>''Bs''</sub>3C-''luxABCDE'' from the BioBrickBox containing the ''lux'' operon [[File:Lux operon.png|100px]] as a reporter for promoter activity. The promoter activity leads to the expression of the ''lux'' operon and to the production of the enzyme luciferase. The luminescence which is produced by the luciferase can be measured with the plate reader ''Synergy2'' (BioTek) ('''Fig.1'''). All clones show a usual growth behaviour. The activity of the promoters increases during transition from log to stationary phase. This maximum (t=1h) reaches from 200Lumi/OD<sub>600</sub> (promoter J23115) to a maximum of 1500 Lumi/OD<sub>600</sub> for the strongest promoter (J23101). Afterwards the activity goes down to the beginning level (t=2h). The oscillation of luminescence (Lumi/ OD<sub>600</sub>) in the beginning of the curves are due to the small OD<sub>600</sub> values and do not mean a high promoter activity. One clone of J23107 and J23114 shows significantly lower promoter activity. Therefore additional clones should be measured. In comparison to all the other evaluated ''Bacillus'' promoters these Anderson promoters showed a very low acitivity in ''B. subtilis''.
Eleven of the nineteen promoters of the [http://partsregistry.org/Part:BBa_J23100 '''Anderson collection'''] (J23100, J23101, J23102, J23103, J23106, J23107, J23113, J23114, J23115, J23117, J23118) were evaluated. Therefore we used the reporter vector pSB<sub>''Bs''</sub>3C-''luxABCDE'' from the BioBrickBox containing the ''lux'' operon [[File:Lux operon.png|100px]] as a reporter for promoter activity. The promoter activity leads to the expression of the ''lux'' operon and to the production of the enzyme luciferase. The luminescence which is produced by the luciferase can be measured with the plate reader ''Synergy2'' (BioTek) ('''Fig.1'''). All clones show a usual growth behaviour. The activity of the promoters increases during transition from log to stationary phase. This maximum (t=1h) reaches from 200Lumi/OD<sub>600</sub> (promoter J23115) to a maximum of 1500 Lumi/OD<sub>600</sub> for the strongest promoter (J23101). Afterwards the activity goes down to the beginning level (t=2h). The oscillation of luminescence (Lumi/ OD<sub>600</sub>) in the beginning of the curves are due to the small OD<sub>600</sub> values and do not mean a high promoter activity. One clone of J23107 and J23114 shows significantly lower promoter activity. Therefore additional clones should be measured. In comparison to all the other evaluated ''Bacillus'' promoters these Anderson promoters showed a very low acitivity in ''B. subtilis''.
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[[File:Beta gal anderson promoter.png|thumb|right|400px| <p align="justify"> '''Fig. 2:''' β-galactosidase assays of the Anderson promoters J23100, J23102, J23103, J23106 in ''B. subtilis''. Results derive from one experiment and are only shown for one of Bacillus clone.</p>]]
[[File:Beta gal anderson promoter.png|thumb|right|400px| <p align="justify"> '''Fig. 2:''' β-galactosidase assays of the Anderson promoters J23100, J23102, J23103, J23106 in ''B. subtilis''. Results derive from one experiment and are only shown for one of Bacillus clone.</p>]]
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<p align="justify">To measure the activity not only with the ''lux'' reporter operon, four promoters of the Anderson collection were cloned into the reporter vector pSB<sub>''Bs''</sub>1C-''lacZ'' [[File:LacZ.png|50px]] to do β-galactosidase assays and then to compare the results of the strength of these promoters in ''B. subtilis'' ('''Fig. 2'''). The promoters
<p align="justify">To measure the activity not only with the ''lux'' reporter operon, four promoters of the Anderson collection were cloned into the reporter vector pSB<sub>''Bs''</sub>1C-''lacZ'' [[File:LacZ.png|50px]] to do β-galactosidase assays and then to compare the results of the strength of these promoters in ''B. subtilis'' ('''Fig. 2'''). The promoters
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Revision as of 07:59, 24 September 2012

iGEM Ludwig-Maximilians-Universität München Beadzillus

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