Team:BIT/project.html

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<div id="project_content" style="margin:15px 0 0 35px;" >
<div id="project_content" style="margin:15px 0 0 35px;" >
     <img id="BIT_project_logo" src="https://static.igem.org/mediawiki/2014/f/f4/BIT_project_logo.png" style="display:block; margin-left:25px;"/>
     <img id="BIT_project_logo" src="https://static.igem.org/mediawiki/2014/f/f4/BIT_project_logo.png" style="display:block; margin-left:25px;"/>
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<div id="Abstract" style=" background:url(../img/BIT_project_overview.png);margin:10px 0 30px 10px;">
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<h1>Abstract</h1>
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        <p>The mechanism of Sensor A engineering bacteria</p>
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<p>This gene circuit applies bistable mechanism, involving two types of promoters: recA and lac, which dividedly regulate the expression of the gene sequence of repressor lacl and lexA, whose product suppress promoter lac and recA. The reporter gene of lacl and lexA thereafter bring out RFP<b>(red fluorescent protein)</b> and GFP<b>(green fluorescent protein)</b>, both of which could ~~~~. As upstream and downstream gene promote and mutually repress, the whole system has two stable output state:</p>
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<p>State A: As promoter precA works, repressor lacl is expressed, then the product lexArepresses promoter lac, and repressor lexA is not expressed, thus cannot exert depressant action to promoter precA. When promoter recA works while promoter plac is shut down, the whole system remains perfectly stable. Afterwards, the downstream reporter gene of promoter precA, GFP, is turned on, then product can be detected.</p>
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<p>State B: promoter plac works, repressor lexA is expressed, then the product lexA represses promoter precA, and repressor lexA is not expressed, thus cannot exert depressant action to promoter plac. When promoter plac works while promoter precA is shut down, the whole system remains perfectly stable. Afterwards, the downstream reporter gene of promoter plac, RFP, is turned on, then product can be detected.</p>
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<p>Two external input signals: IPTG and radiation-produced SSB can separately counteract the inhibition of expression product of repressor lacl towards promoter plac and repressor lexA towards precA. Their involvement could make the whole system switch between the two states.</p>
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</div>
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<div id="sensorA" style=" background:url(../img/BIT_project_overview.png);margin:10px 0 30px 10px;">
<div id="sensorA" style=" background:url(../img/BIT_project_overview.png);margin:10px 0 30px 10px;">
<h1>SensorA</h1>
<h1>SensorA</h1>
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       <li class="animate" id="Abstract"> <a href="#sensorB"><p>Abstract
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         <li class="animate" id="achievement" ><a href="https://2014.igem.org/Team:BIT/achievement.html"><p>Achievement</p></a></li>
          
          
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Revision as of 18:59, 15 October 2014

radiation measurement

  • Radiation as a natural part of our environment. Annually, worldwide, more than 3,600 million X-ray examinations are performed, 37 million nuclear medicine procedures are carried

  • out, and 7.5 million radiotherapy treatments are given.”-from World Health Organization Website. Radiation correlates with us tightly. With technique development, the use of radiation in our life ascends. However inappropriate dosage may jeopardize h

  • ealth condition potentially. Most of the public are nevertheless not conscious of the latent risks. Therefore an engineered bio-system was constructed based on synthetic biology. The system is composed of amplifier and sensor. Once the sensor wa

  • s exposed to low dose radiation, it would produce signal molecules continuously. The signals would be conveyed to amplifier then and brought the amplifier into operation. Thus the amplifier would produce high massive signals for precise detection. And aiming at precise measurements, we equip the sensor with a switch to pause, hence we can detect the stable signal of the system.s exposed to low dose radiation, it would produce signal molecules continuously. The signals would be conveyed to amplifier then and brought the amplifier into operation. Thus the amplifier would produce high massive signals for precise detection. And aiming at precise measurements, we equip the sensor with a switch to pause, hence we can detect the stable signal of the system.s exposed to low dose radiation, it would produce signal molecules continuously. The signals would be conveyed to amplifier then and brought the amplifier into operation. Thus the amplifier would produce high massive signals for precise detection. And aiming at precise measurements, we equip the sensor with a switch to pause, hence we can detect the stable signal of the system.

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