Team:NYU Gallatin/Project/Cloning
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<li class="menu-308"><a href="/Team:NYU_Gallatin/Parts" title="Our work with the parts registry.">Parts</a></li> | <li class="menu-308"><a href="/Team:NYU_Gallatin/Parts" title="Our work with the parts registry.">Parts</a></li> | ||
<li class="menu-310"><a href="/Team:NYU_Gallatin/Modeling" title="How we put it all together.">Modeling</a></li> | <li class="menu-310"><a href="/Team:NYU_Gallatin/Modeling" title="How we put it all together.">Modeling</a></li> | ||
- | <li class="menu- | + | <li class="menu-584"><a href="/Team:NYU_Gallatin/Notebook" title="Lab notebooks, news, and photos.">Notebook</a></li> |
<li class="menu-312"><a href="/Team:NYU_Gallatin/Safety" title="Our commitment to safety.">Safety</a></li> | <li class="menu-312"><a href="/Team:NYU_Gallatin/Safety" title="Our commitment to safety.">Safety</a></li> | ||
<li class="menu-313"><a href="/Team:NYU_Gallatin/Attributions" title="Give credit where credit is due.">Attributions</a></li> | <li class="menu-313"><a href="/Team:NYU_Gallatin/Attributions" title="Give credit where credit is due.">Attributions</a></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">Cloning</h1> |
<div class="tabs"></div> | <div class="tabs"></div> | ||
<div class="region region-content"> | <div class="region region-content"> | ||
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</ul><p>This worked very well, and resulted in the submission of three new parts to the BioBrick Library (Bba_K850000, Bba_K850001, Bba_K850002). We then set out to fuse these three genes into a single pSB1C3-based plasmid. PCR primers were synthesized to bracket each of the three genes and also add sequernce that would facilitate Gibson assembly of the entire pathway. Our reasoning was that we could then use Gibson assembly to piece together the three genes in the pathway together into pSB1C3. The sequences of these primers is shown below. We included two forward primers dfor the AGM1 gene- one that included the T7 promoter (known to work in Acetobacter, whose own promoters are not clearly understood yet), and one that did not.</p> | </ul><p>This worked very well, and resulted in the submission of three new parts to the BioBrick Library (Bba_K850000, Bba_K850001, Bba_K850002). We then set out to fuse these three genes into a single pSB1C3-based plasmid. PCR primers were synthesized to bracket each of the three genes and also add sequernce that would facilitate Gibson assembly of the entire pathway. Our reasoning was that we could then use Gibson assembly to piece together the three genes in the pathway together into pSB1C3. The sequences of these primers is shown below. We included two forward primers dfor the AGM1 gene- one that included the T7 promoter (known to work in Acetobacter, whose own promoters are not clearly understood yet), and one that did not.</p> | ||
+ | <p></p><center><img src="http://farm9.staticflickr.com/8035/8049080716_3bef9f0a16_n.jpg" class="border" /> Â <img src="http://farm9.staticflickr.com/8319/8049081732_b72fe60544_n.jpg" /></center> | ||
<h1>Primers</h1> | <h1>Primers</h1> | ||
<ul><li><a onclick="javascript:$('#f-agm1').toggle();">Forward AGM1 (biobrick plasmid + promoter</a><br /><div id="f-agm1" style="display: none"> | <ul><li><a onclick="javascript:$('#f-agm1').toggle();">Forward AGM1 (biobrick plasmid + promoter</a><br /><div id="f-agm1" style="display: none"> | ||
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</ul><p>The primers for the NAG5 and UAP1 genes worked well, resulting in PCR products of the expected size. However, the AGM1 primers did not result in a PCR product even when used under a variety of conditions. We then altered our cloning strategy and attempeted to use traditional BioBrick assembly. The plasmid containing AGM1 (Bba_K850000) was digested with Spe1 and Pst1, and the product gel-purified and treated with Antarctic phosphatase. The NAG5 gene was cut out of the Bba_K850001 plasmid using Xba1 and Pst1 and gel-purified. These two pieces of DNA were ligated together to produce a plasmid containing the AGM1 and Xba1 parts of the pathway in a BioBrick format. This construct was then cut with Spe1 and Pst1, and the process repeated with the UDP1 gene cut from the Bba_K850002 BioBrick plasmid with Xba1 and Pst1.</p> | </ul><p>The primers for the NAG5 and UAP1 genes worked well, resulting in PCR products of the expected size. However, the AGM1 primers did not result in a PCR product even when used under a variety of conditions. We then altered our cloning strategy and attempeted to use traditional BioBrick assembly. The plasmid containing AGM1 (Bba_K850000) was digested with Spe1 and Pst1, and the product gel-purified and treated with Antarctic phosphatase. The NAG5 gene was cut out of the Bba_K850001 plasmid using Xba1 and Pst1 and gel-purified. These two pieces of DNA were ligated together to produce a plasmid containing the AGM1 and Xba1 parts of the pathway in a BioBrick format. This construct was then cut with Spe1 and Pst1, and the process repeated with the UDP1 gene cut from the Bba_K850002 BioBrick plasmid with Xba1 and Pst1.</p> | ||
<p>This resulted in a plasmid containing the entire pathway (AGM1, NAG5 and UDP1) but no promoter. To test the pathway in Acetobacter, we cut it out of the BioBrick vector using EcoR1 and Pst1 and cloned it into the MCS of pUC18 which has a T7 promoter.</p> | <p>This resulted in a plasmid containing the entire pathway (AGM1, NAG5 and UDP1) but no promoter. To test the pathway in Acetobacter, we cut it out of the BioBrick vector using EcoR1 and Pst1 and cloned it into the MCS of pUC18 which has a T7 promoter.</p> | ||
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<p><a href="/Team:NYU_Gallatin/Project/Cloning/Primers">Learn how to design primers</a> from Julie Wolf.</p> | <p><a href="/Team:NYU_Gallatin/Project/Cloning/Primers">Learn how to design primers</a> from Julie Wolf.</p> | ||
<h1>Protocols</h1> | <h1>Protocols</h1> | ||
<p>Here are some protocols we used in our cloning process.</p> | <p>Here are some protocols we used in our cloning process.</p> | ||
<ul><li><a href="/Team:NYU_Gallatin/Project/Cloning/Protocols/Transformation">Transformation Protocol</a></li> | <ul><li><a href="/Team:NYU_Gallatin/Project/Cloning/Protocols/Transformation">Transformation Protocol</a></li> | ||
- | </ul></div></div></div> </div> | + | </ul><h1>Gibson Assembly</h1> |
+ | <p></p><center><br /><img src="http://farm9.staticflickr.com/8041/8048773499_8b8e3875bc_z.jpg" /><br /><img src="http://farm9.staticflickr.com/8458/8048773043_b64baa80e9_z.jpg" /><br /><img src="http://farm9.staticflickr.com/8315/8048773361_603f32760b_z.jpg" /><br /><img src="http://farm9.staticflickr.com/8310/8048773201_2bbaec290f_z.jpg" /><br /></center> | ||
+ | </div></div></div> </div> | ||
Revision as of 01:59, 3 October 2012