Difference between revisions of "Biomod/2013/Todai/Result"

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     <p class="paragraph">
 
     <p class="paragraph">
 
Fast-migrating species upon agarose-gel electrophoresis was yielded at 20mM MgCl<sub>2</sub> condition.
 
Fast-migrating species upon agarose-gel electrophoresis was yielded at 20mM MgCl<sub>2</sub> condition.
Correctly folded structures were yielded at 20mM of MgCl<sub>2</sub>, because they were more compact than misfolded versions.
+
Correctly folded structures were yielded at 20mM of MgCl<sub>2</sub>, because they were more compact than misfolded versions. Also, the structures at high concentration (30 and 40mM) of MgCl<sub>2</sub> tend to aggregate because of positive charge.
(The structures at high concentration (30 and 40mM) of MgCl<sub>2</sub> tend to aggregate because of positive charge.)
 
 
     </p>
 
     </p>
 
     <div class="res-conclusion">
 
     <div class="res-conclusion">
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     <p class="paragraph">
 
     <p class="paragraph">
  The structure assembled for 4h becomes most compact. The band for 4h is fast migrated and strong.   
+
  The structure assembled for 4h or longer are compact. The band for 4h is fast migrated and strong.   
 
     </p>
 
     </p>
  

Revision as of 06:25, 31 August 2013

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    <li><a href="http://openwetware.org/wiki/Biomod/2013/Todai">Home</a>
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    <li><a href="http://openwetware.org/wiki/Biomod/2013/Todai/Project">Project</a>
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    <li><a href="http://openwetware.org/wiki/Biomod/2013/Todai/Design">Design</a>
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    <li><a href="http://openwetware.org/wiki/Biomod/2013/Todai/Result">Result</a>
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          Pilot Study</a></li>
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          Protocols</a></li>
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<body>

<!--◆◆Result◆◆-->

  <h1 class="big-title"><a name="Result">&nbsp;Result</a></h1>
  <br>
    <div style="position:relative;left:30px;">
      <h3>We focus on pilot study now, so please visit 
      <a target="_blank" 
      href="http://openwetware.org/wiki/Biomod/2013/Todai/Experiment#PilotStudy"   
      style="color:#e00000">
      Pilot Study
      </a>
      ,too.
      </h3>
    </div>
    <br>

<!--◆◆A.Cylinder in barrel by DNA origami◆◆-->

  <h1 class="heading"><a name="A.Cylinder in barrel by DNA origami">&nbsp;A. Cylinder in barrel by DNA origami</a></h1>

<!--◆◆1.BarrelMaking◆◆-->

    <article>
     <h2 class="small-title"><a name="STEPA-1">&nbsp;STEP1. DNA strands assemble to form designed structures.</a></h2>

<!--Method-->

    <div class="zairyou-heading">[Method]</div>
      <figure class="figure-left">
        <img style="float:left; margin:0;margin-right:-10px;margin-bottom:10px;"
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      </figure>
    <div id ="step1Introduction">
      <p class="paragraph">
      First, the DNA nanostructure,
      <a target="_bramk" href="http://openwetware.org/wiki/Biomod/2013/Todai/Design#2.Cylinder in barrel by DNA origami" style="color:#e00000">
      "Cylinder in barrel"
      </a>
      , was used for pilot study. 
      </p>
     <p class ="paragraph">

To know the optimum condition of the structure assembly, we did experiments in three conditions as follows. <ul style="position:relative;left:30px;"> <li>At different concentration of MgCl<sub>2</sub></li> <li>At different incubate temperature</li> <li>At different length of incubate time</li>

       </ul>
       (<a target="_blank" href="http://openwetware.org/wiki/Biomod/2013/Todai/Experiment#Protocols" style="color:#e00000;">
       protocols
       </a>
       )
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   <br>

<!--Result&Discussion1-->

     <div class="zairyou-heading">[Result & Discussion]</div>
    <div class="res-conclusion">
    To decide optimum concentration of MgCl<sub>2</sub>
    </div>
      <figure>
       <center>
        <img src="http://openwetware.org/images/a/a9/Result-SA1-MgCl2-Todai-new.png" width=480px height=360px>
           <figcaption> <b>Agarose-gel electrophoresis to research the optimum concentration of MgCl<sub>2</sub></b>
           </figcaption>
       </center>
      </figure>
    <p class="paragraph">

Fast-migrating species upon agarose-gel electrophoresis was yielded at 20mM MgCl<sub>2</sub> condition. Correctly folded structures were yielded at 20mM of MgCl<sub>2</sub>, because they were more compact than misfolded versions. Also, the structures at high concentration (30 and 40mM) of MgCl<sub>2</sub> tend to aggregate because of positive charge.

    </p>
    <div class="res-conclusion">
    --->> Optimum concentration of MgCl<sub>2</sub>: 20mM   
    </div>
    <br>
    <br>

<!--Result&Discussion2-->

    <div class="res-conclusion">
    To decide optimum incubate temparature
    </div>
  
    <figure>
       <center>
          <img src="http://openwetware.org/images/3/3b/Result-SA1-Temp-Todai-new.png" width=480px height=360px >
          <figcaption>
          <b>Agarose-gel electrophoresis to research the optimum temperature</b>
          </figcaption>
       </center>
    </figure>
   <p class="paragraph">

Fast-migrating species upon agarose-gel electrophoresis was yielded at 47.7 or 51.6 degree C. The band at 47.7 degree C is more clear than that of at 51.6 degree C. The band of 47.7 degree C is fast migrated and strong.

    </p>
    <div class="res-conclusion">
    --->> Optimum temparature : 47.7 degree C  
    </div>
    <br>
    <br>

<!--Result&Discussion2-->

    <div class="res-conclusion">
    To decide optimum length of incubate time
    </div>
      <figure>
        <center>
          <img src="http://openwetware.org/images/d/d2/Result-StepA1-Time-Todai.png" width=480px height=360px >
          <figcaption>
          <b>Agarose-gel electrophoresis to research the optimum time</b>
          </figcaption>
       </center>
      </figure>
   <p class="paragraph">
The structure assembled for 4h or longer are compact. The band for 4h is fast migrated and strong.   
    </p>
    <div class="res-conclusion">
    --->> Optimum incubate time : 4h 
    </div>
    <br>
    </article>
    <br>

<!--◆◆2.溶液中、バレルで多量体できるか◆◆-->

    <article>
     <h2 class="small-title"><a name="STEPA-2">&nbsp;STEP2-5.</a></h2>
     <br>
    <div style="font-size:150%;font-weight:bolder;">
    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;Coming Soon...!!!
    </div>
    </article>
    <br>
    </article>
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