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

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<img src="https://static.igem.org/mediawiki/2021/1/1b/T--UParis_BME--Fig2.png" alt="picture" style="height: 70%; width: 70%; display: block; margin-left: auto; margin-right: auto;">
 
<img src="https://static.igem.org/mediawiki/2021/1/1b/T--UParis_BME--Fig2.png" alt="picture" style="height: 70%; width: 70%; display: block; margin-left: auto; margin-right: auto;">
<caption>Figure 2: GFP fragment amplified via PCR controlled on an agarose gel.  
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<caption><b>Figure 2: GFP fragment amplified via PCR controlled on an agarose gel. </b>
 
Samples and NEB 100bp ladder were run on a 1.2% agarose gel for 30min. The NEB 100bp ladder was loaded in the first well. The DNA fragment encoding for GFP is labeled in the red box, with a size between 800 and 700 bp (expected size= 738bp).</caption>
 
Samples and NEB 100bp ladder were run on a 1.2% agarose gel for 30min. The NEB 100bp ladder was loaded in the first well. The DNA fragment encoding for GFP is labeled in the red box, with a size between 800 and 700 bp (expected size= 738bp).</caption>
 
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<img src="https://static.igem.org/mediawiki/2021/c/c0/T--UParis_BME--wiki-resukts-pet24disgested.png" alt="picture" style="height: 30%; width: 30%; display: block; margin-left: auto; margin-right: auto;">
 
<img src="https://static.igem.org/mediawiki/2021/c/c0/T--UParis_BME--wiki-resukts-pet24disgested.png" alt="picture" style="height: 30%; width: 30%; display: block; margin-left: auto; margin-right: auto;">
<caption>Figure 3: Digested pET-24d(+) controlled on a gel.
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<caption><b>Figure 3: Digested pET-24d(+) controlled on a gel.</b>
 
Samples were run on a 1.2% agarose gel for 30min. The two first wells are loaded with pET24d(+) plasmid which was previously digested using EcorI and XhoI restriction enzymes and show the band of linearized DNA. The third well has been loaded with undigested pET24d(+) plasmid, showing the two bands of circular and supercoiled forms.</caption>
 
Samples were run on a 1.2% agarose gel for 30min. The two first wells are loaded with pET24d(+) plasmid which was previously digested using EcorI and XhoI restriction enzymes and show the band of linearized DNA. The third well has been loaded with undigested pET24d(+) plasmid, showing the two bands of circular and supercoiled forms.</caption>
 
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<img src="https://static.igem.org/mediawiki/2021/2/25/T--UParis_BME--pET24LigationResults2.png" alt="picture" style="height: 70%; width: 70%; display: block; margin-left: auto; margin-right: auto;">
 
<img src="https://static.igem.org/mediawiki/2021/2/25/T--UParis_BME--pET24LigationResults2.png" alt="picture" style="height: 70%; width: 70%; display: block; margin-left: auto; margin-right: auto;">
<caption>Figure 4: pET-24d(+) and EGFP Ligation results
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<caption><b>Figure 4: pET-24d(+) and EGFP Ligation results.</b>
 
1.2% Agarose Gel with NEB Ladder 100Bp. This figure presents the results of PCR performed on the different clones obtained through the transformation.
 
1.2% Agarose Gel with NEB Ladder 100Bp. This figure presents the results of PCR performed on the different clones obtained through the transformation.
 
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<img src="https://static.igem.org/mediawiki/2021/9/94/T--UParis_BME--wiki-results_vectormap.png" alt="picture" style="height: 70%; width: 70%; display: block; margin-left: auto; margin-right: auto;">
 
<img src="https://static.igem.org/mediawiki/2021/9/94/T--UParis_BME--wiki-results_vectormap.png" alt="picture" style="height: 70%; width: 70%; display: block; margin-left: auto; margin-right: auto;">
<caption>Figure 5: Vector map of pET-24d(+)_GFP created by assembly of GFP insert and pET-24d(+) (BBa_K3878000). Created with SnapGene with the sequencing results.  
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<caption><b>Figure 5: Vector map of pET-24d(+)_GFP created by assembly of GFP insert and pET-24d(+) (BBa_K3878000).</b> Created with SnapGene with the sequencing results.  
 
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<p class="textContent">We named this newly engineered plasmid pET-24d(+)_GFP and it contains the part BBa_K3878000 (EGFP followed by a T7terminator); its vector map is detailed on Figure 5. This plasmid pET-24d(+)_GFP is the receiving vector to insert the variable part of the toehold switch. The plasmid keeps the T7 promoter and most of the restriction site. One point that can be addressed is the disparition of the EcorI site.</p>
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<p class="textContent">We named this newly engineered plasmid pET-24d(+)_GFP and it contains the part <a href="http://parts.igem.org/Part:BBa_K3878000">BBa_K3878000</a> (EGFP followed by a T7terminator); its vector map is detailed on Figure 5. This plasmid pET-24d(+)_GFP is the receiving vector to insert the variable part of the toehold switch. The plasmid keeps the T7 promoter and most of the restriction site. One point that can be addressed is the disparition of the EcorI site.</p>
  
 
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<img src="https://static.igem.org/mediawiki/2021/c/c1/T--UParis_BME--toehold.png" alt="picture" style="height: 30%; width: 30%; display: block; margin-left: auto; margin-right: auto;">
 
<img src="https://static.igem.org/mediawiki/2021/c/c1/T--UParis_BME--toehold.png" alt="picture" style="height: 30%; width: 30%; display: block; margin-left: auto; margin-right: auto;">
<caption>Figure 6: Scheme of a toehold switch. In our project ExoSwitch, we define the variable part of the toehold switch the part that differs depending on the target RNA. Indeed, the Toehold part is complementary to the target miRNA. Thus, the  complementary nucleotide at the root of the hairpin differs with the target miRNA.  
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<caption><b>Figure 6: Scheme of a toehold switch.</b> In our project ExoSwitch, we define the variable part of the toehold switch the part that differs depending on the target RNA. Indeed, the Toehold part is complementary to the target miRNA. Thus, the  complementary nucleotide at the root of the hairpin differs with the target miRNA.  
 
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<img src="https://static.igem.org/mediawiki/2021/4/4a/T--UParis_BME--siki-results-SOE.png" alt="picture" style="height: 70%; width: 70%; display: block; margin-left: auto; margin-right: auto;">
 
<img src="https://static.igem.org/mediawiki/2021/4/4a/T--UParis_BME--siki-results-SOE.png" alt="picture" style="height: 70%; width: 70%; display: block; margin-left: auto; margin-right: auto;">
<caption>Figure 7: Electrophoretic analysis of the SOE PCR products obtained with the first set of backward primers. EGFP is used as the starting sequence for the Toehold Switch synthesis. NEB Ladder 1KBp is used as a reference for all three gels (A,B and C). Three consecutive SOE PCRs were performed: PCR1 (taking GFP as the starting sequence, Xho1 as a forward primer, and the first backward primer), PCR2 (taking PCR1 product as the starting sequence, Xho1 as a forward primer, and the second backward primer), PCR3 (taking PCR2 product as the starting sequence, Xho1 as a forward primer, and the third backward primer). A: Post-PCR1 gel electrophoresis. The starting sequence (GFP) is successfully elongated. B: Post-PCR2 gel electrophoresis. The PCR1 product is successfully elongated. C: Post-PCR3 gel electrophoresis The PCR2 seems to be of higher molecular weight compared to the PCR3 product, no elongation of the PCR2 product was observed.
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<caption><b>Figure 7: Electrophoretic analysis of the SOE PCR products obtained with the first set of backward primers.</b> EGFP is used as the starting sequence for the Toehold Switch synthesis. NEB Ladder 1KBp is used as a reference for all three gels (A,B and C). Three consecutive SOE PCRs were performed: PCR1 (taking GFP as the starting sequence, Xho1 as a forward primer, and the first backward primer), PCR2 (taking PCR1 product as the starting sequence, Xho1 as a forward primer, and the second backward primer), PCR3 (taking PCR2 product as the starting sequence, Xho1 as a forward primer, and the third backward primer). <b>A: Post-PCR1 gel electrophoresis.</b> The starting sequence (GFP) is successfully elongated. <b>B: Post-PCR2 gel electrophoresis.</b> The PCR1 product is successfully elongated. <b>C:</b> Post-PCR3 gel electrophoresis The PCR2 seems to be of higher molecular weight compared to the PCR3 product, no elongation of the PCR2 product was observed.
 
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Revision as of 16:56, 21 October 2021