Difference between revisions of "Team:Newcastle/Results"

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           <img src="https://static.igem.org/mediawiki/2017/7/70/Vave4.png" class="img-fluid border border-dark rounded" style="margin: 2%; max-width: 70%">
 
           <img src="https://static.igem.org/mediawiki/2017/7/70/Vave4.png" class="img-fluid border border-dark rounded" style="margin: 2%; max-width: 70%">
 
            
 
            
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        <b>Figure 4:</b> <!--- Insert image name between tags. ---->
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        <i> <b> Such and such </i> </b> <!--- Described what the diagram is showing. If biobricks are depicted give BBa_ numbers -->
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</p>
 
           <p> In the presence of arsenic, the repression will be avoided by binding the repressor ArsR This bound allows the transcription of the downstream gene, lasI. This gene encodes for the quorum sensing molecule C12, which acts as a connector to the processing cell.</p>
 
           <p> In the presence of arsenic, the repression will be avoided by binding the repressor ArsR This bound allows the transcription of the downstream gene, lasI. This gene encodes for the quorum sensing molecule C12, which acts as a connector to the processing cell.</p>
 
            
 
            
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           <p>Expression of the <i>E. coli</i> type 1 fimbriae gene is tightly regulated and phase dependent, i.e expression is either completely [ON] or [OFF] (Klemm., 1986). This change in expression is controlled by the action of two proteins <i>FimB</i> and <i>FimE</i> which independently act upon a 300bp promoter region upstream of the fimbriae gene.  The 300bp promoter region is inverted to either activate or suppress expression (McClain <I>et</I> al., 1991). Typical gene regulation mechanisms rely on up or down regulation of a promoter from a baseline expression, the fimbriae mechanism of ‘ALL’ or ‘NONE’ makes it a useful tool for synthetic biology applications.  While the <i>FimB</i> protein inverts the promoter back and forth between [ON] and [OFF] states the <i>FimE</i> protein permanently inverts the promoter from [ON] to [OFF].  This inversion can be used to amplify weak or inconsistent induction signals.<br/><br/>
 
           <p>Expression of the <i>E. coli</i> type 1 fimbriae gene is tightly regulated and phase dependent, i.e expression is either completely [ON] or [OFF] (Klemm., 1986). This change in expression is controlled by the action of two proteins <i>FimB</i> and <i>FimE</i> which independently act upon a 300bp promoter region upstream of the fimbriae gene.  The 300bp promoter region is inverted to either activate or suppress expression (McClain <I>et</I> al., 1991). Typical gene regulation mechanisms rely on up or down regulation of a promoter from a baseline expression, the fimbriae mechanism of ‘ALL’ or ‘NONE’ makes it a useful tool for synthetic biology applications.  While the <i>FimB</i> protein inverts the promoter back and forth between [ON] and [OFF] states the <i>FimE</i> protein permanently inverts the promoter from [ON] to [OFF].  This inversion can be used to amplify weak or inconsistent induction signals.<br/><br/>
 
Since the part we are making is designed to amplify a weak signal which can then be detected by a downstream ‘reporter’ cell the quorum sensing system from P. aeruginosa was adapted to allow for signal transfer between cells.  The <i>rhlI</i> gene from P. aeruginosa produces the quorum sensing molecule N-butyryl-AHL (C4-AHL) (Parsek et al.,2000),  this molecule is membrane permeable and able to induce expression of a promoter upstream of sfGFP in another cell.<br/><br/>
 
Since the part we are making is designed to amplify a weak signal which can then be detected by a downstream ‘reporter’ cell the quorum sensing system from P. aeruginosa was adapted to allow for signal transfer between cells.  The <i>rhlI</i> gene from P. aeruginosa produces the quorum sensing molecule N-butyryl-AHL (C4-AHL) (Parsek et al.,2000),  this molecule is membrane permeable and able to induce expression of a promoter upstream of sfGFP in another cell.<br/><br/>
LINNNNKKKK HHHEEEEEERRRRRREEEE!!!!!!!!!!
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<a href="https://static.igem.org/mediawiki/parts/b/b1/--T--Newcastle--MP--Protocol--Fim--96.pdf">BBa_K2205005 (New)</a>
 
<img class="FIM" style="width:100%" src="https://static.igem.org/mediawiki/2017/a/a4/T--Newcastle--MP_FimON-OFF_diagram.jpeg"/>
 
<img class="FIM" style="width:100%" src="https://static.igem.org/mediawiki/2017/a/a4/T--Newcastle--MP_FimON-OFF_diagram.jpeg"/>
 
<b>Figure 2:</b> <!--- Insert image name between tags. ---->
 
<b>Figure 2:</b> <!--- Insert image name between tags. ---->
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High fidelity amplification of the 3 gBlock fragments for assembly of the Fim Switch.  The gBlock-1 amplification is shown in lanes 1+2 (819 bp), gBlock-2 amplification is shown in lanes 3+4 (1148 bp) and the gBlock-3 amplification is shown in lanes 5+6 (939bp).
 
High fidelity amplification of the 3 gBlock fragments for assembly of the Fim Switch.  The gBlock-1 amplification is shown in lanes 1+2 (819 bp), gBlock-2 amplification is shown in lanes 3+4 (1148 bp) and the gBlock-3 amplification is shown in lanes 5+6 (939bp).
 
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The Gibson assembly reaction re-forms the iGEM prefix and suffix regions at the 5’ and 3’ ends of the Fim switch part making the component biobrick compatible while leaving no scarring regions.  Following assembly, the plasmid was transformed into chemically competent DH5a <i>E. coli</i> >>Protocol link<< and colonies patched onto LB Chloramphenicol agar plates.  A single patch showed the correct red colour indicative of the eforRed chromoprotein Figure 3. <br/><br/>
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The Gibson assembly reaction re-forms the iGEM prefix and suffix regions at the 5’ and 3’ ends of the Fim switch part making the component biobrick compatible while leaving no scarring regions.  Following assembly, the plasmid was transformed into chemically competent DH5a <i>E. coli</i> https://static.igem.org/mediawiki/parts/b/b1/--T--Newcastle--MP--Protocol--Fim--96.pdf and colonies patched onto LB Chloramphenicol agar plates.  A single patch showed the correct red colour indicative of the eforRed chromoprotein Figure 3. <br/><br/>
 
<img class="FIM" style="width:100%" src="https://static.igem.org/mediawiki/2017/6/62/--T--Newcastle--MP--Fim_Red_Plates.jpeg"/>
 
<img class="FIM" style="width:100%" src="https://static.igem.org/mediawiki/2017/6/62/--T--Newcastle--MP--Fim_Red_Plates.jpeg"/>
 
<b>Figure 4:</b> <!--- Insert image name between tags. ---->
 
<b>Figure 4:</b> <!--- Insert image name between tags. ---->

Revision as of 20:33, 27 October 2017

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Our Experimental Results

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