Difference between revisions of "Team:Uppsala/Transcriptomics/PolyA Tailing"

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                 <li class="toclevel tocsection"><a href="#Project_Description" class="scroll"> <span id="whereYouAre"> Project Description </span> </a>
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                 <li class="toclevel tocsection"><a href="#Project_Description" class="scroll"> <span id="whereYouAre"> Transciptomics </span> </a>
 
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                             <li class="toclevel nav-item active"><a href="#top" class="nav-link scroll"> Overview </a></li>
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                             <li class="toclevel nav-item active"><a href="#top" class="nav-link scroll"> Poly(A)-Tailing</a></li>
                             <li class="toclevel nav-item"><a href="#Problem" class="nav-link scroll">  Problem  </a></li>
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                             <li class="toclevel nav-item"><a href="#Exp" class="nav-link scroll">  Experiment</a></li>
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                            <li class="toclevel nav-item"><a href="#Buzz" class="nav-link scroll"> Buzzwords</a></li>
 
                             <li class="toclevel nav-item"><a href="#References" class="nav-link scroll"> References </a></li>
 
                             <li class="toclevel nav-item"><a href="#References" class="nav-link scroll"> References </a></li>
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<h1>Poly(A)-Tailing</h1>
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<h1 id="top">Poly(A)-Tailing</h1>
 
                
 
                
  
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Because poly(A)-tails are a long sequence of the same nucleotide, they make good targets for primers of genes with otherwise unknown sequences. In the next step, we will be using primers that will bind to poly(A)-tails and thus, we need to synthesize them onto our RNA samples.</p>  
 
Because poly(A)-tails are a long sequence of the same nucleotide, they make good targets for primers of genes with otherwise unknown sequences. In the next step, we will be using primers that will bind to poly(A)-tails and thus, we need to synthesize them onto our RNA samples.</p>  
  
<h2>Experiment</h2>
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<h2 id="Exp">Experiment</h2>
 
<p>The purified RNA sample retrieved from previous mRNA purification step is dissolved in nuclease free water and ready to use. The key reagent is the poly(A) polymerase, an enzyme that attach the adenosine nucleotides onto the mRNA that is directly added into the sample. <br><br>
 
<p>The purified RNA sample retrieved from previous mRNA purification step is dissolved in nuclease free water and ready to use. The key reagent is the poly(A) polymerase, an enzyme that attach the adenosine nucleotides onto the mRNA that is directly added into the sample. <br><br>
  
 
As you might already know no work is done for free, and that is the case for the poly(A) polymerase. Thereby ATP is added, which is an energy molecule that activates the poly(A) polymerase. The mRNA is then analyzed with gel-electrophoresis to confirm that the poly(A) tail attachment was a success. It can be noted that we had some difficulties in acquiring good results initially from this step, which included degradation and apparent non-existing tailing of the samples. After several attempts however, and a complete change in Poly(A)-tailing reagents, the procedure started to work properly.</p>
 
As you might already know no work is done for free, and that is the case for the poly(A) polymerase. Thereby ATP is added, which is an energy molecule that activates the poly(A) polymerase. The mRNA is then analyzed with gel-electrophoresis to confirm that the poly(A) tail attachment was a success. It can be noted that we had some difficulties in acquiring good results initially from this step, which included degradation and apparent non-existing tailing of the samples. After several attempts however, and a complete change in Poly(A)-tailing reagents, the procedure started to work properly.</p>
  
<h2>Result</h2>
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<h2>Buzzwords</h2>
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<h2 id="Buzz">Buzzwords</h2>
  
 
<p><b>Primers:</b> A primer is a short sequence of DNA or RNA, that will work as a starting point for DNA synthesis. The DNA polymerase used to catalyze this process can only add new nucleotides to an already existing strand of DNA. The polymerase attaches to the primer and progressing the synthesis at the 3’end, while copying the opposite strand.<br><br>
 
<p><b>Primers:</b> A primer is a short sequence of DNA or RNA, that will work as a starting point for DNA synthesis. The DNA polymerase used to catalyze this process can only add new nucleotides to an already existing strand of DNA. The polymerase attaches to the primer and progressing the synthesis at the 3’end, while copying the opposite strand.<br><br>
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<h2>References</h2>
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<h2 id="References">References</h2>
  
 
<p><b>[1]</b> Wu X, Brewer G. 2012. The regulation of mRNA stability in Mammalian Cells: 2.0. Gene 500(1): 10-21.</p><br>
 
<p><b>[1]</b> Wu X, Brewer G. 2012. The regulation of mRNA stability in Mammalian Cells: 2.0. Gene 500(1): 10-21.</p><br>

Revision as of 22:33, 17 October 2018