Team:NYU Gallatin/Project/Cloning
From 2012.igem.org
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<li class="leaf"><a href="/Team:NYU_Gallatin/Project/Growing" title="">Growing</a></li> | <li class="leaf"><a href="/Team:NYU_Gallatin/Project/Growing" title="">Growing</a></li> | ||
<li class="leaf"><a href="/Team:NYU_Gallatin/Project/Designing" title="">Designing</a></li> | <li class="leaf"><a href="/Team:NYU_Gallatin/Project/Designing" title="">Designing</a></li> | ||
- | <li class="leaf"><a href="/Team:NYU_Gallatin/Project/Technology" title=""> | + | <li class="leaf"><a href="/Team:NYU_Gallatin/Project/Technology" title="">Developing</a></li> |
<li class="last leaf"><a href="/Team:NYU_Gallatin/Project/Socializing" title="">Socializing</a></li> | <li class="last leaf"><a href="/Team:NYU_Gallatin/Project/Socializing" title="">Socializing</a></li> | ||
</ul></li> | </ul></li> | ||
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</div></div> <!-- /.section, /#sidebar-first --> | </div></div> <!-- /.section, /#sidebar-first --> | ||
<div id="igem-content" class="column"><div class="igem-section"> | <div id="igem-content" class="column"><div class="igem-section"> | ||
- | <h1 class="title" id="page-title"> | + | <h1 class="title" id="page-title">Clone</h1> |
<div class="tabs"></div> | <div class="tabs"></div> | ||
<div class="region region-content"> | <div class="region region-content"> | ||
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<p>The yeast Candida albicans produces chitin and uses it in spore formation. To incorporate NAG into Acetobacter cellulose, we focused on three yeast genes (the pathway consisting of NAG5 (GlcNac kinase) catalyzes the conversion to GlcNac-6P, AGM1 (Phosphoacetyl-glucosamine mutase) which converts GlcNac-6-P to GlcNac-1-P, and UAP1 (UDP-GlcNac pyrophosphorylase) which adds UDP. </p> | <p>The yeast Candida albicans produces chitin and uses it in spore formation. To incorporate NAG into Acetobacter cellulose, we focused on three yeast genes (the pathway consisting of NAG5 (GlcNac kinase) catalyzes the conversion to GlcNac-6P, AGM1 (Phosphoacetyl-glucosamine mutase) which converts GlcNac-6-P to GlcNac-1-P, and UAP1 (UDP-GlcNac pyrophosphorylase) which adds UDP. </p> | ||
<p>The most efficient method was to use Gibson assembly to piece together each gene from small, ovelapping fragments of between 300 and 500bp (�G-blocks�) and clone it into pSB1C3 separately. We could not construct the entire pathway with G-blocks because it was too large, and there is a limit of six fragments for efficient Gibson assembly. The coding sequences were modified to reflect codon usage in Acetobacter, and an Acetobacter RBS was added in front of each gene. The G-blocks that we had synthesized for each gene are shown below:</p> | <p>The most efficient method was to use Gibson assembly to piece together each gene from small, ovelapping fragments of between 300 and 500bp (�G-blocks�) and clone it into pSB1C3 separately. We could not construct the entire pathway with G-blocks because it was too large, and there is a limit of six fragments for efficient Gibson assembly. The coding sequences were modified to reflect codon usage in Acetobacter, and an Acetobacter RBS was added in front of each gene. The G-blocks that we had synthesized for each gene are shown below:</p> | ||
- | < | + | <ul><li><a onclick="javascript:$('#g-agm1').show();">G-blocks for AGM1</a></li> |
- | < | + | </ul><div id="g-agm1" style="display: none"> |
+ | GAATTTCAGATAAAAAAAATCCTTAGCTTTCGCTAAGGATGATTTCTGGAATTCGCGGCCGCTTCTAGAGTGAGGAGGATGAACGACGCATGTCAATTGAACAAACATTATCACAATATTTACCATCACATCCAAAACCACAAGGTGTGACATTTACTTATGGGACAGCAGGATTCCGTATGAAAGCTGATAAATTAGATTATGTCACTTTTACCGTTGGGATCATTGCTTCATTAAGATCGAAATATTTACAAGGGAAAACCGTTGGTGTTATGATTACTGCTTCTCATAATCCCCCGGAAGATAATGGGGTTAAAGTTGTTGATCCATTAGGTAGTATGTTGGAAAGTTCATGGGAAAAATATGCTACTGATTTAGCCAATGCTTCTCCTTCTCCTTCTA 402 | ||
+ | </div> | ||
<p>TATGCTACTGATTTAGCCAATGCTTCTCCTTCTCCTTCTAACGATTCAGAAGGGGAAAAAAATCTGTTGGTGGAAGTTATTAAAAATTTGGTTTCTGATTTGAAAATTGATTTATCTATTCCTGCTAATGTTGTTATTGCTAGGGATTCAAGAGAATCTAGTCCAGCATTATCAATGGCAACTATTGATGGATTTCAAAGTGTTCCCAACACTAAATATCAAGATTTTGGATTATTTACTACCCCAGAATTACATTATGTTACTAGAACATTAAACGATCCCGATTTTGGTAAACCAACTGAAGATGGTTATTATTCTAAATTAGCAAAATCTTTCCAAGAAATTTATACCATTTGTGAATCTAATAATGAAAAAATCGATATAACTATTGATGCTGCTAATGGTGTTGGAGCCCCCAAA 420</p> | <p>TATGCTACTGATTTAGCCAATGCTTCTCCTTCTCCTTCTAACGATTCAGAAGGGGAAAAAAATCTGTTGGTGGAAGTTATTAAAAATTTGGTTTCTGATTTGAAAATTGATTTATCTATTCCTGCTAATGTTGTTATTGCTAGGGATTCAAGAGAATCTAGTCCAGCATTATCAATGGCAACTATTGATGGATTTCAAAGTGTTCCCAACACTAAATATCAAGATTTTGGATTATTTACTACCCCAGAATTACATTATGTTACTAGAACATTAAACGATCCCGATTTTGGTAAACCAACTGAAGATGGTTATTATTCTAAATTAGCAAAATCTTTCCAAGAAATTTATACCATTTGTGAATCTAATAATGAAAAAATCGATATAACTATTGATGCTGCTAATGGTGTTGGAGCCCCCAAA 420</p> | ||
<p>TATAACTATTGATGCTGCTAATGGTGTTGGAGCCCCCAAAATTCAAGAATTATTAGAAAAATATTTACATAAAGAAATCAGTTTTACCGTGGTTAACGGTGATTATAAACAACCAAATTTATTAAATTTTGATTGTGGAGCTGATTATGTCAAGACTAATCAAAAATTACCTAAAAATGTCAAACCAGTAAATAATAAATTATATGCTTCATTTGATGGCGATGCGGATAGATTAATATGTTATTATCAAAACAATGATAATAAATTCAAATTATTAGATGGTGATAAATTATCGACGTTATTTGCGTTATTTTTACAACAATTATTTAAACAAATTGACCCCACTAAGATTTCATTGAATATTGGTGTGGTTCAAACTGC 381</p> | <p>TATAACTATTGATGCTGCTAATGGTGTTGGAGCCCCCAAAATTCAAGAATTATTAGAAAAATATTTACATAAAGAAATCAGTTTTACCGTGGTTAACGGTGATTATAAACAACCAAATTTATTAAATTTTGATTGTGGAGCTGATTATGTCAAGACTAATCAAAAATTACCTAAAAATGTCAAACCAGTAAATAATAAATTATATGCTTCATTTGATGGCGATGCGGATAGATTAATATGTTATTATCAAAACAATGATAATAAATTCAAATTATTAGATGGTGATAAATTATCGACGTTATTTGCGTTATTTTTACAACAATTATTTAAACAAATTGACCCCACTAAGATTTCATTGAATATTGGTGTGGTTCAAACTGC 381</p> |
Revision as of 03:32, 2 October 2012