Difference between revisions of "Team:Newcastle/Results"

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<img class="FIM" style="width:100%" src="https://static.igem.org/mediawiki/2017/archive/a/a4/20171027205831%21T--Newcastle--MP_FimON-OFF_diagram.jpeg"/>
 
<img class="FIM" style="width:100%" src="https://static.igem.org/mediawiki/2017/archive/a/a4/20171027205831%21T--Newcastle--MP_FimON-OFF_diagram.jpeg"/>
 
<b>Figure 2:</b> <!--- Insert image name between tags. ---->
 
<b>Figure 2:</b> <!--- Insert image name between tags. ---->
Representation of the switching mechanism of the Fim Switch, in the native [OFF] state the eforRED reporter is expressed (shown in red) allowing direct visualisation of the cells.  Following the inversion of the promoter region (K1632004), eforRED expression is halted and the <i>rhlI</i> gene is expressed (J64718), this is now the [ON] state.
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Representation of the switching mechanism of the Fim Switch, in the native [OFF] state the eforRED reporter is expressed (shown in red) allowing direct visualisation of the cells.  Following the inversion of the promoter region (<a href="http://parts.igem.org/Part:BBa_K1632004">K1632004</a>), eforRED expression is halted and the <i>rhlI</i> gene is expressed (<a href="http://parts.igem.org/Part:BBa_J64718">J64718</a>), this is now the [ON] state.
 
<!--- Described what the diagram is showing. If biobricks are depicted give BBa_ numbers -->
 
<!--- Described what the diagram is showing. If biobricks are depicted give BBa_ numbers -->
 
<br /><br />
 
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           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> Design Stage </h2>
 
           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> Design Stage </h2>
           <p>To construct the Fim reporter switch 3 separate gBlocks were designed with overlapping adapter regions homologous to the iGEM prefix and suffix to allow for Gibson assembly into the pSB1C3 backbone whilst retaining biobrick compatibility.  The individual genes and other components are shown in (Table 1).  The 1st gBlock sequence starts with a RBS (B0034) upstream of the fimE ORF (K137007) with no promoter region, this is to allow for other promoters to be cloned in upstream of the part.  Downstream of the fimE gene is a double terminator (B0015).  All RBS and terminator sequences used are B0034 and B0015 respectively.  The switching mechanism consists of the Fim promoter sequence (K1632004) flanked by two RBS-ORF-Terminator sequences.  While in the native [OFF] state the Fim promoter drives expression of eforRed (K592012) and when flipped to the [ON] state drives expression of <i>rhlI</i> (J64718).  The rationale behind using the fimE gene instead of is that it permanently inverts the promoter region meaning weak induction signals can be amplified by the Fim switch. <br/><br/>
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           <p>To construct the Fim reporter switch 3 separate gBlocks were designed with overlapping adapter regions homologous to the iGEM prefix and suffix to allow for Gibson assembly into the pSB1C3 backbone whilst retaining biobrick compatibility.  The individual genes and other components are shown in (Table 1).  The 1st gBlock sequence starts with a RBS (<a href="http://parts.igem.org/Part:BBa_B0034">B0034</a>) upstream of the <i>fimE</i> ORF (<a href="http://parts.igem.org/Part:BBa_K137007">K137007</a>) with no promoter region, this is to allow for other promoters to be cloned in upstream of the part.  Downstream of the <i>fimE</i> gene is a double terminator (<a href="http://parts.igem.org/Part:BBa_B0015">B0015</a>).  All RBS and terminator sequences used are B0034 and B0015 respectively.  The switching mechanism consists of the Fim promoter sequence (<a href="http://parts.igem.org/Part:BBa_K1632004">K1632004</a>) flanked by two RBS-ORF-Terminator sequences.  While in the native [OFF] state the Fim promoter drives expression of eforRed (<a href="http://parts.igem.org/Part:BBa_K592012">K592012</a>) and when flipped to the [ON] state drives expression of <i>rhlI</i> (<a href="http://parts.igem.org/Part:BBa_J64718)">J64718)</a>.  The rationale behind using the <i>fimE</i> gene instead of is that it permanently inverts the promoter region meaning weak induction signals can be amplified by the Fim switch. <br/><br/>
 
<img class="FIM" style="width:100%" src="https://static.igem.org/mediawiki/2017/e/ee/--T--Newcastle--MP--Table_Fim.png"/>
 
<img class="FIM" style="width:100%" src="https://static.igem.org/mediawiki/2017/e/ee/--T--Newcastle--MP--Table_Fim.png"/>
<b>Table 1:</b>
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<b>Table 1:</b> Table of parts used for constructing the Fim Switch.<br/>
 
</p>
 
</p>
  

Revision as of 21:17, 27 October 2017

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Our Experimental Results

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