Difference between revisions of "Team:UC San Diego/Parts"

 
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                   <h1>List of Parts</h1>
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                   <h3>List of Parts</h3>
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The collection of parts described herein forms a modular platform to determine which of the enzymes of the fatty acid reductase complex is rate limiting. Each permutation of the complex’s genes is compatible for coexpression with the <i>lux</i>AB construct. This methodology of stoichiometric expression can also be used to determine rate-limiting steps in other metabolic systems.
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<div id='groupparts' style='min-height:100px;width:700px;'><div style='width:300px;margin:2px;padding:20px;color:#394053;border:1px dashed red'>Loading.....</div></div>
 
<div id='groupparts' style='min-height:100px;width:700px;'><div style='width:300px;margin:2px;padding:20px;color:#394053;border:1px dashed red'>Loading.....</div></div>
  
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<script>$('#groupparts').load('/cgi/api/groupparts.cgi', { t:'iGEM015', g:'UC_San_Diego' },function(){ $('#groupparts .tablesorter').tablesorter();} );</script>
 
<script>$('#groupparts').load('/cgi/api/groupparts.cgi', { t:'iGEM015', g:'UC_San_Diego' },function(){ $('#groupparts .tablesorter').tablesorter();} );</script>
 
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The collection of parts described herein forms a modular platform to determine which of the enzymes of the fatty acid reductase complex is rate-limiting. Each permutation of the complex’s genes is compatible for coexpression with the LuxAB construct. This methodology of stoichiometric expression can also be used to determine rate-limiting steps in other metabolic systems.
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                   <h1>K1842000</h1>
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                   <h3>K1842000</h3>
 
                 </div>
 
                 </div>
<p>LuxABfrp - Coding - Engineered LuxAB with Vibrio Harveyi frp; 2A linker present between each protein for stoichiometric expression.  
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<p><b>LuxABfrp - Coding</b> - Engineered <i>lux</i>AB with <i>Vibrio Harveyi frp</i>; 2A linker present between each protein for stoichiometric expression.  
 
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                   <h1>K1842001</h1>
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                   <h3>K1842001</h3>
 
                 </div>
 
                 </div>
 
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LuxCDEC - Coding - Photobacterium Phosphoreum fatty acid reductase complex with overexpressed synthetase; 2A linker present between each protein for stoichiometric expression. </p>
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<b>LuxCDEC - Coding</b> - <i>Photobacterium Phosphoreum</i> fatty acid reductase complex with overexpressed reductase; 2A linker present between each protein for stoichiometric expression. </p>
  
  
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                   <h3>K1842002</h3>
 
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LuxCDED - Coding -  Photobacterium Phosphoreum fatty acid reductase complex with overexpressed transferase; 2A linker present between each protein for stoichiometric expression.  
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<b>LuxCDED - Coding</b> <i>Photobacterium Phosphoreum</i> fatty acid reductase complex with overexpressed transferase; 2A linker present between each protein for stoichiometric expression.  
 
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                   <h1>K1842003</h1>
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                   <h3>K1842003</h3>
 
                 </div>
 
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<p>LuxCDEE - Coding - Photobacterium Phosphoreum fatty acid reductase complex with overexpressed reductase; 2A linker present between each protein for stoichiometric expression.  
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<p><b>LuxCDEE - Coding</b> - <i>Photobacterium Phosphoreum</i> fatty acid reductase complex with overexpressed synthetase; 2A linker present between each protein for stoichiometric expression.  
 
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                   <h1>K1842003</h1>
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                   <h3>K1842004</h3>
 
                 </div>
 
                 </div>
<p>LuxDEC - Coding - Photobacterium Phosphoreum fatty acid reductase complex with even stoichiometry for LuxCDE. 2A linker present between each protein for stoichiometric expression.  
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<p><b>LuxDEC - Coding</b> - <i>Photobacterium Phosphoreum</i> fatty acid reductase complex with even stoichiometry for LuxCDE. 2A linker present between each protein for stoichiometric expression.  
 
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Latest revision as of 21:19, 20 November 2015


List of Parts

The collection of parts described herein forms a modular platform to determine which of the enzymes of the fatty acid reductase complex is rate limiting. Each permutation of the complex’s genes is compatible for coexpression with the luxAB construct. This methodology of stoichiometric expression can also be used to determine rate-limiting steps in other metabolic systems.

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K1842000

LuxABfrp - Coding - Engineered luxAB with Vibrio Harveyi frp; 2A linker present between each protein for stoichiometric expression.

K1842001

LuxCDEC - Coding - Photobacterium Phosphoreum fatty acid reductase complex with overexpressed reductase; 2A linker present between each protein for stoichiometric expression.

K1842002

LuxCDED - Coding - Photobacterium Phosphoreum fatty acid reductase complex with overexpressed transferase; 2A linker present between each protein for stoichiometric expression.

K1842003

LuxCDEE - Coding - Photobacterium Phosphoreum fatty acid reductase complex with overexpressed synthetase; 2A linker present between each protein for stoichiometric expression.

K1842004

LuxDEC - Coding - Photobacterium Phosphoreum fatty acid reductase complex with even stoichiometry for LuxCDE. 2A linker present between each protein for stoichiometric expression.