Difference between revisions of "Team:UParis BME/Wetlab"

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<p class="textContent">We found that 3 reverse primers (of the average length 20-50bp) would be sufficient to synthesize the whole Toehold Switch sequence. The team of our supervisor Pierre Nioche provided us with the DNA sequence encoding for eGFP, thus we took eGFP as the starting DNA piece for the SOE. After designing and ordering the primers we dedicated 1.5 months of wet lab work to testing the technique. Please find the results following the link.</p>
 
<p class="textContent">We found that 3 reverse primers (of the average length 20-50bp) would be sufficient to synthesize the whole Toehold Switch sequence. The team of our supervisor Pierre Nioche provided us with the DNA sequence encoding for eGFP, thus we took eGFP as the starting DNA piece for the SOE. After designing and ordering the primers we dedicated 1.5 months of wet lab work to testing the technique. Please find the results following the link.</p>
  
<p class="textContent"><a href="https://static.igem.org/mediawiki/2021/d/d3/T--UParis_BME--protcol_SOE.pdf">Protocol SOE</a></p>
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<p class="textContent"><a href="https://static.igem.org/mediawiki/2021/d/d3/T--UParis_BME--protcol_SOE.pdf">Protocol DNA synthesis by SOE PCR</a></p>
  
 
                                 </div>
 
                                 </div>
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<p class="textContent">We achieved the ligation step between digested GFP insert and digested pET-24d(+) using NEB T4 ligase as described in the protocol below.  We then introduced the plasmid (containing the part BBa_K3878000)  into E.coli 10-beta to amplify it. </p>
 
<p class="textContent">We achieved the ligation step between digested GFP insert and digested pET-24d(+) using NEB T4 ligase as described in the protocol below.  We then introduced the plasmid (containing the part BBa_K3878000)  into E.coli 10-beta to amplify it. </p>
  
<p class="textContent"><a href="https://static.igem.org/mediawiki/2021/8/88/T--UParis_BME--cloning_RE.pdf">Protocol cloning RE</a></p>  
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<p class="textContent"><a href="https://static.igem.org/mediawiki/2021/8/88/T--UParis_BME--cloning_RE.pdf">Protocol molecular cloning using Restriction Enzymes</a></p>  
  
 
<p class="textContent">We designed the variable part of the toehold switch candidates with the T7 promoter and the restriction sites BamHI and BglII. We ordered the variable part from the toehold switch targeting the human miR-141 on IDT. The synthesized fragments, the variable part of the toehold switch, are received into plasmids from IDT, they are resuspended in an elution buffer and amplified into E. coli 10beta bacteria. Plasmids are then extracted from bacteria cultured in liquid TB media overnight using BioBasic EZ-10 Spin Column Plasmid DNA Miniprep Kit. We digested the variable part of the toehold switch candidates and the previously created plasmid (containing the part BBa_K3878000) with the restriction enzymes BamH1 and BglII (Fig. 3). The digested DNAs were purified and ligated using the same protocol as before. </p>
 
<p class="textContent">We designed the variable part of the toehold switch candidates with the T7 promoter and the restriction sites BamHI and BglII. We ordered the variable part from the toehold switch targeting the human miR-141 on IDT. The synthesized fragments, the variable part of the toehold switch, are received into plasmids from IDT, they are resuspended in an elution buffer and amplified into E. coli 10beta bacteria. Plasmids are then extracted from bacteria cultured in liquid TB media overnight using BioBasic EZ-10 Spin Column Plasmid DNA Miniprep Kit. We digested the variable part of the toehold switch candidates and the previously created plasmid (containing the part BBa_K3878000) with the restriction enzymes BamH1 and BglII (Fig. 3). The digested DNAs were purified and ligated using the same protocol as before. </p>
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<p class="textContent">The synthesized variable part of the toehold switch was amplified into E. coli 10beta bacteria. Plasmids were then extracted from bacteria cultured in liquid TB media using BioBasic EZ-10 Spin Column Plasmid DNA Miniprep Kit. The variable parts of the toehold switch were amplified via PCR technique to raise the quantity of insert as in the protocol below. Synthesized inserts are then amplified via polymerase chain reaction (PCR). We followed the protocol given by NEB® Golden Gate Assembly Kit (BsaI-HF®v2) for the assembly of one insert. (Fig. 5) </p>  
 
<p class="textContent">The synthesized variable part of the toehold switch was amplified into E. coli 10beta bacteria. Plasmids were then extracted from bacteria cultured in liquid TB media using BioBasic EZ-10 Spin Column Plasmid DNA Miniprep Kit. The variable parts of the toehold switch were amplified via PCR technique to raise the quantity of insert as in the protocol below. Synthesized inserts are then amplified via polymerase chain reaction (PCR). We followed the protocol given by NEB® Golden Gate Assembly Kit (BsaI-HF®v2) for the assembly of one insert. (Fig. 5) </p>  
<p class="textContent"><a href="https://static.igem.org/mediawiki/2021/a/af/T--UParis_BME--cloning_GA.pdf">Protocol cloning GA</a></p>  
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<p class="textContent"><a href="https://static.igem.org/mediawiki/2021/a/af/T--UParis_BME--cloning_GA.pdf">Protocol molecular cloning using Golden Gate assembly</a></p>  
  
 
                                 </div>
 
                                 </div>

Revision as of 17:17, 20 October 2021