Team:Grenoble-EMSE-LSU/Project/Biology

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                                         <h2>Experimental Protocol for KillerRed Characterization</h2>
                                         <h2>Experimental Protocol for KillerRed Characterization</h2>
                                         <h3>Choice of the <em>E. coli</em> strain</h3>
                                         <h3>Choice of the <em>E. coli</em> strain</h3>
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                                         <p>We first decided to characterize KR in BW25113 bacteria, a wild-type (WT) strain derived from <em>E. coli</em> K12. Cells were successfully transformed with pQE30::KR and were shown to express the protein in response to IPTG induction. However, results of OD610 monitoring showed that BW25113 cells transformed with pQE30::KR grew really slowly (r = 0.08 h-1) as compared to WT cells (r = 0.77 h-1). One hypothesis was that repression of the pLac promoter by the endogeneous LacI repressor was not sufficient for preventing the expression of KR, a protein that could have affected cell growth even at low light levels.<br><br>
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                                         <p>We first decided to characterize KR in BW25113 bacteria, a wild-type (WT) strain derived from <em>E. coli</em> K12. Cells were successfully transformed with pQE30::KR and were shown to express the protein in response to IPTG induction. However, results of OD610 monitoring showed that BW25113 cells transformed with pQE30::KR grew really slowly (r = 0.08 h<sup>-1</sup>) as compared to WT cells (r = 0.77 h<sup>-1</sup>). One hypothesis was that repression of the pLac promoter by the endogeneous LacI repressor was not sufficient for preventing the expression of KR, a protein that could have affected cell growth even at low light levels.<br><br>
                                         We thus decided to switch to M15 cells (Qiagen), a commercial strain in which the lacI repressor is expressed at high levels from plasmid pREP4. M15 cells did express the KR protein in response to IPTG addition and displayed a faster growth rate than the BW25113 cells transformed with pQE30::KR (Fig. 2). For this reason, M15 cells were chosen to characterize KR.<br><br></p>
                                         We thus decided to switch to M15 cells (Qiagen), a commercial strain in which the lacI repressor is expressed at high levels from plasmid pREP4. M15 cells did express the KR protein in response to IPTG addition and displayed a faster growth rate than the BW25113 cells transformed with pQE30::KR (Fig. 2). For this reason, M15 cells were chosen to characterize KR.<br><br></p>
                                         <p align="center"><img src="https://static.igem.org/mediawiki/2013/f/fa/Strain_choice.png" alt="strain choice" height="350px"></p>
                                         <p align="center"><img src="https://static.igem.org/mediawiki/2013/f/fa/Strain_choice.png" alt="strain choice" height="350px"></p>

Revision as of 12:31, 2 October 2013

Grenoble-EMSE-LSU, iGEM


Grenoble-EMSE-LSU, iGEM

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