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

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<div id="cellprep" style="display: none;">
 
<div id="cellprep" style="display: none;">
 
<h3>Preparation of <i>E. coli</i> competent cells :</h3>
 
<h3>Preparation of <i>E. coli</i> competent cells :</h3>
<p>
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<p><br>
 
<u>E. coli Calcium Chloride competent cell protocol</u><br>
 
<u>E. coli Calcium Chloride competent cell protocol</u><br>
 
<br>
 
<br>
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<div id="compet" style="display: none;">
 
<div id="compet" style="display: none;">
 
<h3>Preparation of <i>B. subtilis</i> competent cells</h3>
 
<h3>Preparation of <i>B. subtilis</i> competent cells</h3>
<p>Streak out the strain to be made competent on an LB agar plate as a large patch and incubate overnight at 30°C</p>
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<p><br>Streak out the strain to be made competent on an LB agar plate as a large patch and incubate overnight at 30°C<br>The following morning scrape the cell growth off the plate and use to inoculate fresh, pre-warmed, SpC medium (20 ml) to give an OD600 reading of about 0.5.<br>Incubate the culture at 37°C with vigorous aeration and take periodic OD readings (OD600) to assess cell growth.<br>When the rate of cell growth is seen to depart from exponential (i.e. no significant change in cell density over 20-30 min) inoculate 200 ml of pre-warmed, SpII medium with 2 ml of stationary-phase culture and continue incubation at 37°C with slower aeration<br>After 90 min incubation, pellet the cells by centrifugation (8,000 g, 5min) at room temperature.<br>Carefully decant the supernatant into a sterile container and save.<br>Gently resuspended the cell pellet in 18 ml of the saved supernatant and add 2 ml of sterile glycerol; mix gently<br>Aliquot the competent cell (0.5 ml) in sterile tubes, freeze rapidly in liquid nitrogen or a dry-iced/ethanol bath or ice/isopropanol bath and store -70°C.</p>
<p>The following morning scrape the cell growth off the plate and use to inoculate fresh, pre-warmed, SpC medium (20 ml) to give an OD600 reading of about 0.5. </p>
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<p>Incubate the culture at 37°C with vigorous aeration and take periodic OD readings (OD600) to assess cell growth.</p>
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<p>When the rate of cell growth is seen to depart from exponential (i.e. no significant change in cell density over 20-30 min) inoculate 200 ml of pre-warmed, SpII medium with 2 ml of stationary-phase culture and continue incubation at 37°C with slower aeration </p>
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<p>After 90 min incubation, pellet the cells by centrifugation (8,000 g, 5min) at room temperature.</p>
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<p>Carefully decant the supernatant into a sterile container and save.</p>
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<p>Gently resuspended the cell pellet in 18 ml of the saved supernatant and add 2 ml of sterile glycerol; mix gently </p>
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<p>Aliquot the competent cell (0.5 ml) in sterile tubes, freeze rapidly in liquid nitrogen or a dry-iced/ethanol bath or ice/isopropanol bath and store -70°C.</p>
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<h3>Transformation of <i>B. subtilis</i> competent cells</h3>
 
<h3>Transformation of <i>B. subtilis</i> competent cells</h3>
  
<p>Thaw competent cells rapidly by immersing frozen tubes in a 37°C water bath</p>
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<p><br>Thaw competent cells rapidly by immersing frozen tubes in a 37°C water bath<br>Immediately, add one volume of SpII + EGTA to the Thawed cells; mix gently<br>In a sterile test tube add competent cell (0.2~0.5 ml) to the DNA solution (<0.1 ml) and incubate in a roller drum at 37.<br>Dilute the transformed cells as appropriate in T base containing 0.5% glucose and plate immediately onto selective media.</p>
<p>Immediately, add one volume of SpII + EGTA to the Thawed cells; mix gently </p>
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<p>In a sterile test tube add competent cell (0.2~0.5 ml) to the DNA solution (<0.1 ml) and incubate in a roller drum at 37.</p>
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<p>Dilute the transformed cells as appropriate in T base containing 0.5% glucose and plate immediately onto selective media.</p>
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<div class="image" id="TransfoPic1"/></div>
 
<div class="image" id="TransfoPic1"/></div>
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<div id="BSub" style="display: none;">
 
<div id="BSub" style="display: none;">
 
<h3>Digestion :</h3>
 
<h3>Digestion :</h3>
<p>Select restriction enzymes to digest your DNA. Determine an appropriate reaction buffer by reading the instructions for your enzyme. </p>
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<p><br>Select restriction enzymes to digest your DNA. Determine an appropriate reaction buffer by reading the instructions for your enzyme.<br>In a 1.5mL tube combine the following:</p>
<p>In a 1.5mL tube combine the following:</p>
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<ol>
 
<ol>
 
<li>➟ DNA </li>
 
<li>➟ DNA </li>
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<li>➟ dH2O up to total volume</li>
 
<li>➟ dH2O up to total volume</li>
 
</ol>
 
</ol>
<p>Mix gently by pipetting. </p>
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<p><br>Mix gently by pipetting.<br>Incubate tube at appropriate temperature (usually 37°C) for 1 hour.<br>Always follow the manufacturer’s instructions.<br>To visualize the results of your digest, conduct gel electrophoresis</p>
 
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<p>Incubate tube at appropriate temperature (usually 37°C) for 1 hour. </p>
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<p>Always follow the manufacturer’s instructions. </p>
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<p>To visualize the results of your digest, conduct gel electrophoresis</p>
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<h3>Vector Preparation :</h3>
 
<h3>Vector Preparation :</h3>
<p>Combine the following in a PCR or Eppendorf tube:</p>
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<p><br>Combine the following in a PCR or Eppendorf tube:</p>
 
<ol>
 
<ol>
 
<li>➟ Vector DNA</li>
 
<li>➟ Vector DNA</li>
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<li>➟ H20 to a total of 10μL</li>
 
<li>➟ H20 to a total of 10μL</li>
 
<li>  To dertermine the amount of DNA needed, we used the NEB calculator</li></ol>
 
<li>  To dertermine the amount of DNA needed, we used the NEB calculator</li></ol>
<p>Incubate at room temperature for 2hr, or at 16°C overnight (following the manufacturer’s instructions).</p>
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<p><br>Incubate at room temperature for 2hr, or at 16°C overnight (following the manufacturer’s instructions).</p>
 
</div>
 
</div>
  

Revision as of 22:26, 18 October 2016