Difference between revisions of "Team:Nottingham/Lab"

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<h4>Vector design details</h4>
 
<h4>Vector design details</h4>
 
<p>
 
<p>
After thorough consideration, plasmid pMTL84121 was chosen to express our future construct as it contained all the necessary parts for successful cloning:
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After thorough consideration, plasmid pMTL84121 was chosen to express our future construct as it contained all the necessary parts for successful cloning:
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</p>
- pCD6 Gram-positive replicon – for stable maintenance of the vector in <em>C. difficile</em>
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<div class="ui bulleted list">
- p15a+tra Gram-negative replicon – for stable maintenance of the vector in <em>E.coli</em>
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<div class="ui item"><strong>pCD6 gram+ replicon</strong> – for stable maintenance of the vector in <em>C. difficile</em></div>
- <em>catP</em> gene – gives chloramphenicol resistance to bacteria and is used as a selection marker
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<div class="ui item"><strong>p15a+tra gram- replicon</strong> – for stable maintenance of the vector in <em>E.coli</em> </div>
- Multiple cloning sites (MCS) - provides cloning sites for inserts
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<div class="ui item"><strong>catP gene</strong> – gives chloramphenicol resistance to bacteria and is used as a selection marker</div>
To test our experiment in <em>E. coli</em> and <em>C. difficile</em>, we constructed the following vector: pMTL84121-PthI-dCas9-Pfdx-tcdR-T10-PtcdA/PtcdB-gusA-T14 + gRNA.  
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<div class="ui item"><strong>Multiple cloning sites (MCS)</strong> - provides cloning sites for inserts</div>
 +
</div>
 +
<p>
 +
To test our experiment in E. coli and C. difficile, we constructed the following vector: pMTL84121-PthI-dCas9-Pfdx-tcdR-T10-PtcdA/PtcdB-gusA-T14 + gRNA.  
  
 
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</p>
What Why
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<table class="ui celled table">
pthI Promoter for dCas9.
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<thead>
dCas9 Cas protein that binds to DNA and blocks transcription due to steric hindrance
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<tr>
Pfdx Promoter for <em>tcdR</em>. Our team results showed this promoter had the strongest activity in <em>C.difficile</em> than any other chosen promoter aimed at <em>E. coli</em> (link to asRNA)
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<th>What</th>
tcdR An important regulatory gene in <em>C.difficile</em>, which affects synthesis of toxins A and B as well as other important chemical reactions
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<th>Why</th>
T10 Terminator for <em>tcdR</em>. It produces termination of <em>tcdR</em> transcription
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</tr>
PtcdA/PtcdB Promoters for toxin A and B respectively
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</thead>
GusA Reporter gene
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<tbody>
T14 Terminator for reporter gene <em>gusA</em>. It produces termination of <em>gusA</em> transcription
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<tr>
sgRNA Constructed sgRNA complementary to specific region of PtcdA/PtcdB
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<td>pthI</td>
 +
<td>Promoter for dCas9.</td>
 +
</tr>
 +
<tr>
  
 
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<td>dCas9</td>
 
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<td>Cas protein that binds to DNA and blocks transcription due to steric hindrance.</td>
Experimental plan:  
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</tr>
After carrying our initial planning of the components for our experiment, we came up with a following experimental proposal:
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<tr>
 
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<td>Pfdx</td>
1. Cloning of PthI-dCas9 insert into pMTL84121: pMTLdCas9
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<td>Promoter for tcdR. Promoter team results showed the strongest activity of this promoter in C.difficile than any other chosen promoter aimed at <em>E. coli</em> (link to asRNA)</td>
2. Cloning of ptcdA/ptcdB-GusA-TB0014 into pMTL84121-PthI-dCas9: pMTSdCas9-GusA
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</tr>
3. Cloning of pfdx-tcdR-TB0010 into pMTL84121-PthI-dCas9-ptcdA/ptcdB-GusA-TB0014
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<tr>
4. Cloning of sgRNA (A1-A7, B1-B5) into pMTL84121-PthI-dCas9-Pfdx-tcdR-T10-PtcdA/PtcdB-gusA-T14: pMTLdCas9-GusA-sgRNA
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<td>tcdR</td>
5. Transformation of full vector pMTL84121-PthI-dCas9-Pfdx-tcdR-T10-PtcdA/PtcdB-gusA-T14 + gRNA into <em>E.coli</em>
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<td>An important regulatory gene in C.difficile, which affects synthesis of toxins A and B as well as other important chemical reactions</td>
6. Checking the repression of GusA by targeting ptcdA/ptcdB with respective sgRNA via GusA assay.
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</tr>
7. Transform potentially suppressing sgRNAs into <em>C. difficile</em>.
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<tr>
8. Test sgRNA with signs of repression in <em>C. difficile</em> via cytotoxicity assay.
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<td>T10</td>
</p>
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<td>Terminator for tcdR. It produces termination of tcdR transcription.</td>
                       
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</tr>
 +
<tr>
 +
<td>PtcdA/PtcdB</td>
 +
<td>Promoters for toxin A and B respectively.</td>
 +
</tr>
 +
<tr>
 +
<td>GusA</td>
 +
<td>Reporter gene</td>
 +
</tr>
 +
<tr>
 +
<td>T14</td>
 +
<td>Terminator for reporter gene GusA. It produces termination of GusA transcription.</td>
 +
</tr>
 +
<tr>
 +
<td>gRNA</td>
 +
<td>Constructed gRNA complementary to specific region of PtcdA/PtcdB.</td>
 +
</tr>
 +
</tbody>
 +
</table>
 +
<p>
 +
<strong>Experimental plan:</strong>
 +
<br>
 +
After carrying our initial planning of the components for our experiment, we came up with a following experimental proposal:
 +
<div class="ui ordered list">
 +
<div class="ui item">Cloning of PthI-dCas9 insert into pMTL84121: pMTLdCas9</div>
 +
<div class="ui item">Cloning of ptcdA/ptcdB-GusA-TB0014 into pMTL84121-PthI-dCas9: pMTSdCas9-GusA</div>
 +
<div class="ui item">Cloning of pfdx-tcdR-TB0010 into pMTL84121-PthI-dCas9-ptcdA/ptcdB-GusA-TB0014</div>
 +
<div class="ui item">Cloning of gRNA (A1-A7, B1-B5) into pMTL84121-PthI-dCas9-Pfdx-tcdR-T10-PtcdA/PtcdB-gusA-T14: pMTLdCas9-GusA-sgRNA</div>
 +
<div class="ui item">Transformation of full vector pMTL84121-PthI-dCas9-Pfdx-tcdR-T10-PtcdA/PtcdB-gusA-T14 + gRNA into E.coli</div>
 +
<div class="ui item">Checking the repression of GusA by targeting ptcdA/ptcdB with respective gRNA via GusA assay.</div>
 +
<div class="ui item">Transform potentially supressing gRNAs into C. difficile.</div>
 +
<div class="ui item">Test gRNA with signs of repression in C. difficile via cytotoxicity assay.</div>
 +
</div>
 +
</p>   
 
                         <div class="ui divider"></div>
 
                         <div class="ui divider"></div>
 
<h3>Antisense RNA</h3>
 
<h3>Antisense RNA</h3>

Revision as of 21:31, 17 October 2018

Clostridium dTox Project Human Practices Public Engagement Lab Modelling Collaborations Achievements Team Attributions