Team:SJTU-BioX-Shanghai/Project

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<img width="500px" height="300px" src="http://2014.igem.org/wiki/images/f/ff/SJTU14_Overview.png"></img>
<p>This year, our project intends to achieve protein polymerization with the help of TAL effector, a DNA-binding protein, which can recognize specific nucleic acid sequences. With circular DNA, plasmid, as the connection medium, expressed proteins in the host can form a complex selectively, so that a variety of enzyme combinations can be used to complete different tasks. Compared to traditional methods, the advantages of the project lie in selective polymerization of proteins, and the ability to mediate polymerization between more proteins..</p>
<p>This year, our project intends to achieve protein polymerization with the help of TAL effector, a DNA-binding protein, which can recognize specific nucleic acid sequences. With circular DNA, plasmid, as the connection medium, expressed proteins in the host can form a complex selectively, so that a variety of enzyme combinations can be used to complete different tasks. Compared to traditional methods, the advantages of the project lie in selective polymerization of proteins, and the ability to mediate polymerization between more proteins..</p>
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     <center><h2><a href="#top" title="Safety Form">Safety Form</a></h2></center>
     <center><h2><a href="#top" title="Safety Form">Safety Form</a></h2></center>

Revision as of 15:32, 16 October 2014

Overview

This year, our project intends to achieve protein polymerization with the help of TAL effector, a DNA-binding protein, which can recognize specific nucleic acid sequences. With circular DNA, plasmid, as the connection medium, expressed proteins in the host can form a complex selectively, so that a variety of enzyme combinations can be used to complete different tasks. Compared to traditional methods, the advantages of the project lie in selective polymerization of proteins, and the ability to mediate polymerization between more proteins..