Difference between revisions of "Team:Paris Bettencourt/Project/Continuity"
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<h2 id="the-chassis">The chassis</h2> | <h2 id="the-chassis">The chassis</h2> | ||
− | Let us see how it works under the hood.<br/> | + | <p>Let us see how it works under the hood.<br/> |
− | Before addition of any metabolic pathways, this is what our empty chassis would look like. The following cassette is integrated in the chromosome. | + | Before addition of any metabolic pathways, this is what our empty chassis would look like. The following cassette is integrated in the chromosome. All proteins' coding regions are preceded by a RBS (<em>Ribosome Binding Site</em>) and followed by a transcription terminator.</p> |
<br/> | <br/> | ||
<br/> | <br/> | ||
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</a> | </a> | ||
<br/> | <br/> | ||
− | |||
<br/> | <br/> | ||
<br/> | <br/> | ||
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<p><img src="https://static.igem.org/mediawiki/2015/8/8f/PB_colibow_sequence.png"/></p> | <p><img src="https://static.igem.org/mediawiki/2015/8/8f/PB_colibow_sequence.png"/></p> | ||
<span class="caption"><b>Map of the DNA sequence we constructed.</b> The promoter BBaJ23199 is constitutive. mCherry, mCerulean, mVenus are fluorescent proteins of different colours.</span> | <span class="caption"><b>Map of the DNA sequence we constructed.</b> The promoter BBaJ23199 is constitutive. mCherry, mCerulean, mVenus are fluorescent proteins of different colours.</span> | ||
+ | <br/> | ||
+ | <br/> | ||
<div class="column-left"> | <div class="column-left"> | ||
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<div class="column-right"> | <div class="column-right"> | ||
<img src="https://static.igem.org/mediawiki/2015/a/a7/PB_colibow_integrated.png" style="width:80%"/> | <img src="https://static.igem.org/mediawiki/2015/a/a7/PB_colibow_integrated.png" style="width:80%"/> | ||
+ | <br/> | ||
<span class="caption"><b>Gel electrophoresis after PCR for checking the integration.</b> We amplified the junctions between the artificial cassette and <i>E. coli </i>'s chromosome. For every screened clone, the two bands have the expected sizes, which proves that the cassette is integrated in the correct locus.</span> | <span class="caption"><b>Gel electrophoresis after PCR for checking the integration.</b> We amplified the junctions between the artificial cassette and <i>E. coli </i>'s chromosome. For every screened clone, the two bands have the expected sizes, which proves that the cassette is integrated in the correct locus.</span> | ||
</div> | </div> | ||
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<div class="column-left"> | <div class="column-left"> | ||
<img src="https://static.igem.org/mediawiki/2015/5/5b/PB_colibow_proteins.png" style="width:80%"/> | <img src="https://static.igem.org/mediawiki/2015/5/5b/PB_colibow_proteins.png" style="width:80%"/> | ||
+ | <br/> | ||
<span class="caption"><b>Gel electrophoresis after PCR for checking the presence of the three fluorescent proteins.</b> For the clone shown here, it means that all three proteins ORFs are present on the chromosome, even though only the first one is actually expressed.</span> | <span class="caption"><b>Gel electrophoresis after PCR for checking the presence of the three fluorescent proteins.</b> For the clone shown here, it means that all three proteins ORFs are present on the chromosome, even though only the first one is actually expressed.</span> | ||
</div> | </div> | ||
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<h2>Induction of the differentiation</h2> | <h2>Induction of the differentiation</h2> | ||
+ | <div class="column-left">We then aimed to trigger the differentiation of our newly constructed strain. A strain carrying the plasmid pFHC2938, that allows for expression of the CRE recombinase upon arabinose induction (Nielsen 2006), was aquired.<br/> | ||
+ | Unfortunately, all our attempts at transforming our strain with it have been unsuccesful. | ||
+ | transformation? | ||
+ | strain? | ||
+ | plasmid? | ||
+ | </div> | ||
+ | |||
+ | <div class="column-right"> | ||
+ | <img src="https://static.igem.org/mediawiki/2015/d/da/PB_beforeaftercre.png"/> | ||
+ | <br/> | ||
+ | <span class="caption"><b>Troubleshooting of the transformation.</b> <em>A.</em> Strain carrying the integrated cassette before transformation.<em>B.</em> Cells picked from the lawn after pFHC2938 transformation. <em>C.</em> Colony picked after the transformation with a control plasmid (pSB1C3-mRFP).</span> | ||
+ | </div> | ||
+ | |||
+ | <div style="clear:both"></div> | ||
<img src="https://static.igem.org/mediawiki/2015/c/c1/PB_empty.png" /> | <img src="https://static.igem.org/mediawiki/2015/c/c1/PB_empty.png" /> | ||
<p class="caption">caption</p></p> | <p class="caption">caption</p></p> | ||
− | + | ||
<h1>Outlook</h1> | <h1>Outlook</h1> | ||
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<li>Missirlis et al., 2006. "A high-throughput screen identifying sequence and promiscuity characteristics of the loxP spacer region in Cre-mediated recombination". BMC Genomics 7: 73. </li> | <li>Missirlis et al., 2006. "A high-throughput screen identifying sequence and promiscuity characteristics of the loxP spacer region in Cre-mediated recombination". BMC Genomics 7: 73. </li> | ||
<li>Saint-Pierre et al., 2013. "One-step cloning and chromosomal integration of DNA". ACS synthetic biology 20;2(9):537-41.</li> | <li>Saint-Pierre et al., 2013. "One-step cloning and chromosomal integration of DNA". ACS synthetic biology 20;2(9):537-41.</li> | ||
+ | <li>Nielsen et al., 2006. "Dynamics of chromosome segregation in <em>Escherichia coli</em>. BioCentrum, Ph.D thesis.</li> | ||
</ul> | </ul> | ||
Revision as of 01:00, 19 September 2015