Difference between revisions of "Team:TU Darmstadt"

 
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<center><img style="width:100%" src="https://static.igem.org/mediawiki/2016/a/a0/T--TU_Darmstadt--startViki.png"/></center></div>
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<center><div style="background-color:#2a2a2f;width:100%;padding-top:70px;padding-bottom:120px;"><img src="https://static.igem.org/mediawiki/2016/2/2a/T--TU_Darmstadt--colSQ_20.10.png" style="width:42%;"/></div></center>
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<center><div class="startIMG"><img src="https://static.igem.org/mediawiki/2016/9/93/T--TU_Darmstadt--Killswitch.png" style="width:100%;"></div>
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<div class="startText">WETLAB</div>
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<div class="startSubText">our work at making synbio safer can be found <a href="https://2016.igem.org/Team:TU_Darmstadt/Lab">here</a></div></center>
 
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    <h2> iGEM TU Darmstadt 2016</h2>
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<div class="startText">Modeling</div><div class="startSubText">information about the molecular dynamics simulations of our proteins can be found <a href="https://2016.igem.org/Team:TU_Darmstadt/Model">here</a></div></center>
 
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    <h3>Glow before you go (working title)</h3>
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<center><div class="startIMG"><img src="https://static.igem.org/mediawiki/2016/c/c6/T--TU_Darmstadt--printer_landing.png" style="width:100%;"></div>
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<div class="startText">Robotics</div><div class="startSubText">information about our robot can be found <a href="https://2016.igem.org/Team:TU_Darmstadt/Hardware">here</a></div></center>
        The critical evaluation of the project’s safety is required from each iGEM Team participating in the competition. Therefore the iGEM HQ created an entire subpage on their website where the teams can find all the necessary information, such as risk levels or general safety requirements. Unfortunately there is no chance to look up complete, working safety approaches from previous teams.
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<div class="startText">Human Practices</div><div class="startSubText">all our work involving human beings can be found <a href="https://2016.igem.org/Team:TU_Darmstadt/Human_Practices">here</a></div></center>
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            It should be easy for teams to choose a well characterized safety approach which is suitable for their own project out of a catalog and directly see how to easily incorporate it. Our project is supposed to lead the way into that direction.  
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        In our 2016 project we focus on easily enabling teams to work safely with <i>E.coli</i>. By integrating genetic circuits into the <i>E.coli</i> genome we ensure that genetically modified bacteria cannot survive outside of the required lab with the particular conditions they need. The genetic circuit is based on the availability of an unnatural amino acid (UAA) and is regulated within two steps:<br>
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            <li>When the concentration of the unnatural amino acid is low a reporter protein is expressed which signalizes the low level of UAA.</li>
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            <li>When the UAA concentration reaches zero (which is also the case if bacteria get out of the lab) the expression of colic in is induced which then kills the bacteria.</li><br>
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        Additionally we hope to facilitate and accelerate the molecular cloning process of DNA through a new standard based on the RFC10 standard. We use riboswitches to show a successful ligation without additional testing procedures.<br>
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Latest revision as of 23:15, 19 October 2016

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WETLAB
our work at making synbio safer can be found here
Modeling
information about the molecular dynamics simulations of our proteins can be found here
Robotics
information about our robot can be found here
Human Practices
all our work involving human beings can be found here