Team:UIUC-Illinois

From 2012.igem.org

(Difference between revisions)
 
(80 intermediate revisions not shown)
Line 12: Line 12:
</head>
</head>
-
<body>
 
-
<!--Content Start-->
 
-
<div id=intro>
 
-
<center><h1>Mission Statement</h1></center>
 
-
<p>The ultimate goal of the University of Illinois 2012 iGEM team is to construct an RNA based protein scaffold to use in the optimization of multi-step enzymatic pathways like that involved in the production of Piceatannol from less complex molecules. We aim to improve the versatility and cost efficiency of biological production systems by use of our PUF project RNA scaffold and to prove its viability through the implementation of such a system in our PHAT project's Piceatannol production in E.Coli.</p>
 
-
</div>
 
-
<div id="content-containertop">
 
-
    <div id="content-topleft">
 
-
<p>Why?<p>
 
-
        </div>
 
-
    <div id="content-topright">
 
-
<p>How?<p>
 
-
    </div>
 
-
</div>
 
Line 35: Line 21:
$(document).ready(function(){
$(document).ready(function(){
     $('a').click(function () {
     $('a').click(function () {
-
         var divname= name.id;
+
         var divname= this.name;
         $("#"+divname)
         $("#"+divname)
.fadeIn(300)
.fadeIn(300)
Line 44: Line 30:
</script>
</script>
 +
 +
<body>
 +
 +
<!--Content Start-->
 +
 +
<div id=intro>
 +
<center><h1>Mission Statement</h1></center>
 +
<p>The ultimate goal of the University of Illinois 2012 iGEM team is to construct an RNA-based PUF protein toolkit which can be utilized for the manipulation of gene expression. Customizable manipulation will involve gene silencing by specific RNA scission. Also, the PUF protein's properties are suited for optimizing multi-step enzymatic pathways. In this way, we aim to improve the versatility and cost efficiency of biological production systems. With a protein-based RNA-binding toolkit, researchers will be able to transmute the biobricked PUF for use in their scientific endeavors. In addition, we seek to standardize and characterize the nature of PUF. <br/><center><font size="5"><a href="https://2012.igem.org/Team:UIUC-Illinois/Project"> Click here to read our project abstract.</a></font></center></p><br/>
 +
</div>
 +
 +
<div id="ancillaryIntro">
 +
<center><h2>Our Research Outside of PUF Itself</h2></center><br/>
 +
<p>Aside from researching the RNA specific affinity of PUF and its endonuclease fusion protein variants, we have also explored and tested other potential applications for PUF. Mainly, our ancillary projects directly related to PUF include our RNA scaffold and an <a href="https://2012.igem.org/Team:UIUC-Illinois/Project/Future/AssemblyLine">enzymatic assembly line</a> based on such a scaffold. Additionally, <a href="https://2012.igem.org/Team:UIUC-Illinois/Project/Future/Petrobrick">we have characterized</a> the 2011 University of Washington iGEM team's Petrobrick <a href="http://partsregistry.org/wiki/index.php?title=Part:BBa_K590025">(BBa_K590025)</a>.<br/><br/>
 +
 +
Outside the dry and wet labs, we have invested ourselves in a human practices project and public awareness and education about synthetic biology and science in general. To learn more, please visit <a href="https://2012.igem.org/Team:UIUC-Illinois/Outreach">our Outreach section</a>.
 +
</div>
 +
<div id="content-containertop">
 +
</div>
<div id="maincontentnav">
<div id="maincontentnav">
Line 50: Line 54:
                     <li><a name="main1"><img src="https://static.igem.org/mediawiki/2012/e/e2/Cascadeuiuc.png" /></a></li>
                     <li><a name="main1"><img src="https://static.igem.org/mediawiki/2012/e/e2/Cascadeuiuc.png" /></a></li>
                     <li><a name="main2"><img src="https://static.igem.org/mediawiki/2012/6/66/Pufuiuc.png" /></a></li>
                     <li><a name="main2"><img src="https://static.igem.org/mediawiki/2012/6/66/Pufuiuc.png" /></a></li>
-
                     <li><a name="main4"><img src="https://static.igem.org/mediawiki/2012/2/29/Stemloops2uiuc.png" /></a></li>
+
</div>
 +
<div id="maincontentselection3">
 +
                     <li><a name="main4"><img src="https://static.igem.org/mediawiki/2012/2/29/Stemloops2uiuc.png"   /></a></li>
</div>
</div>
Line 60: Line 66:
<div id="maincontentdesc">
<div id="maincontentdesc">
 +
 +
<font size="5">
 +
<center><p>Click above on a part of our project that you want to read about.</p></center></font>
<div id="main1" style="display:none">
<div id="main1" style="display:none">
-
Cascade info
+
<center><h2><a href="https://2012.igem.org/Team:UIUC-Illinois/Project/Future/AssemblyLine">Enzymatic Assembly Line</a></h2><br/><center>
 +
<center>
 +
<p>In utilizing the versatility of the PUF based toolkit we are developing, our current research involves an engineered metabolic pathway. The characterization and standardization of these genes in biobrick format is underway. Future goals involving the PUF toolkit will focus on tethering enzymes of productive artificial or natural pathways for kinetic favorability.</p>
 +
</center>
</div>
</div>
<div id="main2" style="display:none">
<div id="main2" style="display:none">
-
<Puf info
+
<center><h2><a href="https://2012.igem.org/Team:UIUC-Illinois/Project">PUF</a></h2><br/></center>
 +
<center>
 +
<p>This is the PUF protein found on the PUM1 gene in humans. Our main focus and cause of interest in this protein is its ability to recognize single stranded RNA with specificity. The ability to modify PUF with tethered or fused proteins allows for the development of a customizable RNA binding toolkit. Depending on what fusion or tether is used, the functionality of the PUF protein is modified as well.</p>
 +
</center>
</div>
</div>
<div id="main3" style="display:none">
<div id="main3" style="display:none">
-
Scissor info
+
<center><h2><a href="https://2012.igem.org/Team:UIUC-Illinois/Project">RNA scission</a></h2><br/></center>
 +
<center>
 +
<p>In fusion the PUF protein to a restriction endonuclease, the fusion protein demonstrates the ability to cleave single stranded RNA molecules with customizable specificity up to eight base pairs. Considering this ability, we believe PUF can prove itself as a promising new tool in researching and developing new types of gene therapy as it can silence genes with seqeunces specific to a reseachers interest.></p>
 +
</center>
</div>
</div>
<div id="main4" style="display:none">
<div id="main4" style="display:none">
-
Stemloop info
+
<center><h2><a href="https://2012.igem.org/Team:UIUC-Illinois/Project/Future/Scaffold">RNA scaffold utilization</a></h2><br/></center>
 +
<center>
 +
<p>Since PUF has affinity towards RNA molecules, it is possible to synthesize or utilize existing stemloop structures in RNA in order to provide a kinetically favorable platform for tethered proteins to interact. </p>
 +
</center>
</div>
</div>
</div>
</div>
Line 81: Line 102:
<div id="sponsorbox">
<div id="sponsorbox">
-
<center><h2>Sponsors</h2></center>
+
<center><h2><font size="5"> Sponsors</font></h2></center>
<br/>
<br/>
Line 91: Line 112:
</a>
</a>
<a href="http://www.genscript.com/">
<a href="http://www.genscript.com/">
-
<img border="0" src="https://static.igem.org/mediawiki/2012/e/e4/Genscriptlogo.gif" Hspace="30" Vspace="5" alt="genscriptlogo" />
+
<img border="0" src="https://static.igem.org/mediawiki/2012/e/e4/Genscriptlogo.gif" height=25% width=30% Hspace="30" Vspace="5" alt="genscriptlogo" />
</a>
</a>
<a href="http://www.octochem.com/">
<a href="http://www.octochem.com/">
Line 104: Line 125:
<center>
<center>
<a href="http://www.biotech.uiuc.edu/">
<a href="http://www.biotech.uiuc.edu/">
-
<img border="0" src="https://static.igem.org/mediawiki/2012/9/9a/Royj.png" Hspace="30" Vspace="5" alt="royjlogo" />
+
<img border="0" src="https://static.igem.org/mediawiki/2012/9/9a/Royj.png" Hspace="10" Vspace="5" alt="royjlogo" />
</a>
</a>
-
<a href="http://www.sarstedt.com/php/main.php">
+
<a href="http://www.las.illinois.edu/">
-
<img border="0" src="https://static.igem.org/mediawiki/2012/5/56/Sras.png" Hspace="30" Vspace="5" alt="sarstlogo" />
+
<img border="0" src="https://static.igem.org/mediawiki/2012/1/1c/LasUIUC.png" Hspace="10" Vspace="5" alt="laslogo" />
</a>
</a>
 +
 +
</center>
</center>
</div>
</div>
Line 120: Line 143:
<img border="0" src="https://static.igem.org/mediawiki/2012/e/e7/Igb_logo.png" Hspace="30" Vspace="5" alt="igblogo" />
<img border="0" src="https://static.igem.org/mediawiki/2012/e/e7/Igb_logo.png" Hspace="30" Vspace="5" alt="igblogo" />
</a>
</a>
 +
 +
<a href="http://www.sarstedt.com/php/main.php">
 +
<img border="0" src="https://static.igem.org/mediawiki/2012/5/56/Sras.png" Hspace="10" Vspace="5" alt="sarstlogo" />
 +
</a>
 +
 +
</center>
</center>
</div>
</div>

Latest revision as of 08:17, 15 February 2013

Header

Main

Mission Statement

The ultimate goal of the University of Illinois 2012 iGEM team is to construct an RNA-based PUF protein toolkit which can be utilized for the manipulation of gene expression. Customizable manipulation will involve gene silencing by specific RNA scission. Also, the PUF protein's properties are suited for optimizing multi-step enzymatic pathways. In this way, we aim to improve the versatility and cost efficiency of biological production systems. With a protein-based RNA-binding toolkit, researchers will be able to transmute the biobricked PUF for use in their scientific endeavors. In addition, we seek to standardize and characterize the nature of PUF.

Click here to read our project abstract.


Our Research Outside of PUF Itself


Aside from researching the RNA specific affinity of PUF and its endonuclease fusion protein variants, we have also explored and tested other potential applications for PUF. Mainly, our ancillary projects directly related to PUF include our RNA scaffold and an enzymatic assembly line based on such a scaffold. Additionally, we have characterized the 2011 University of Washington iGEM team's Petrobrick (BBa_K590025).

Outside the dry and wet labs, we have invested ourselves in a human practices project and public awareness and education about synthetic biology and science in general. To learn more, please visit our Outreach section.

  • Click above on a part of our project that you want to read about.

    Sponsors


    goldbiologo genscriptlogo octochemlogo

    royjlogo laslogo

    Retrieved from "http://2012.igem.org/Team:UIUC-Illinois"