Difference between revisions of "Team:UPMC-Paris/Experiments"

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<p>Gel Extraction:</p>
 
<p>Gel Extraction:</p>
 
<p><br>
 
<p><br>
We followed the protocol provided in the kit, <a href="https://www.qiagen.com/fr/resources/download.aspx?id=f4ba2d24-8218-452c-ad6f-1b6f43194425&lang=en">you can dowload it</a>.<br>
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We followed the protocol provided in the kit, <a href="https://www.qiagen.com/fr/resources/download.aspx?id=f4ba2d24-8218-452c-ad6f-1b6f43194425&lang=en">you can dowload it here</a>.<br>
 
We resuspended DNA in 50 uL water.<br>
 
We resuspended DNA in 50 uL water.<br>
  
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<p><br>
 
<p><br>
 
We followed the quick protocol provided in the kit, <a href="https://www.neb.com/protocols/2015/12/08/quick-protocol-for-monarch-plasmid-miniprep-kit-t1010">you can see it here</a>.<br>
 
We followed the quick protocol provided in the kit, <a href="https://www.neb.com/protocols/2015/12/08/quick-protocol-for-monarch-plasmid-miniprep-kit-t1010">you can see it here</a>.<br>
 +
We resuspended DNA in 30 - 50 uL of DNase free water.<br>
 +
 +
<p>PCR Purification:</p>
 +
<p><br>
 +
We followed the quick protocol provided in the kit, <a href="https://www.qiagen.com/fr/resources/download.aspx?id=390a728a-e6fc-43f7-bf59-b12091cc4380&lang=en">you can download it here</a>.<br>
 +
We resuspended our purified PCR products in 50 uL water.<br>
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 +
<p>PCR:</p>
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<p><br>
 +
We followed the protocol provided by the manufacturer, <a href="https://www.neb.com/protocols/1/01/01/pcr-protocol-m0530">you can see it here</a>.<br>
 +
We use different cycles programs depending on what we wanted. You can see our <a href="https://2016.igem.org/Team:UPMC-Paris/Notebook">notebook</a> for more informations.<br>
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 +
<p>Colony PCR</p>
 +
 +
<p>Ligation</p>
 +
<p><br>
 +
Using T4 DNA Ligase we perform this protocol:<br>
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 +
<u>Reaction setup</u><br>
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 +
<table>
 +
<tr>
 +
<th>Component</th>
 +
<th>Voplume (μl)</th>
 +
<th>Final Concentration</th>
 +
</tr>
 +
<tr>
 +
<td>10X T4 DNA Ligase Buffer</td>
 +
<td>2 μl</td>
 +
<td> 1X </td>
 +
</tr>
 +
<tr>
 +
<td>Vector 10 1x</td>
 +
<td>X μl</td>
 +
<td>1-10 ng/µL</td>
 +
</tr>
 +
<tr>
 +
<td>Insert</td>
 +
<td>X μl</td>
 +
<td>1-10 ng/µL</td>
 +
</tr>
 +
<tr>
 +
<td>T4 DNA Ligase (120 U/μl)</td>
 +
<td>1 μl</td>
 +
<td>6 U/µL</td>
 +
</tr>
 +
<tr>
 +
<td>Sterile water</td>
 +
<td>X μl</td>
 +
<td>N/A</td>
 +
</tr>
 +
<tr>
 +
<td>Total Volume</td>
 +
<td>20 μl</td>
 +
</tr></table>
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<p>
 +
Total reaction volume can be adjusted as needed.<br></p>
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<ol>
 +
<li>1. Add all of above components to a clean reaction vessel, mix well by pipetting.</li>
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<li>2. Incubate at 25 °C for 30 minutes.</li>
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<li>3. Immediately purify DNA using PCR clean-up column and elute in ~50 µL.</li>
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<li>4. OR - Immediately dilute (at least 1:10, but enough such that 0.1-10 ng of ligation product will be transformed) in TE or water </li>
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<li>5. Transform 0.1-10 ng of ligation product into chemically or electrocompetent cell line that is compatible with vector</li>
  
<p>Un autre truc Step 1 :</p>
 
<img src="aaa" width="50px"/>
 
<p>Un autre truc Step 2 :</p>
 
<img src="aaa" width="50px"/>
 
 
</div>
 
</div>
  

Revision as of 09:34, 19 October 2016