Difference between revisions of "Team:Georgia State/Design"

 
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<h1 style="color:#ffffff; background-color:#1F618D;; -moz-border-radius: 15px; -webkit-border-radius: 15px; padding:15px; text-align: center; font-family: Trebuchet MS">Human Chorionic Gonadotropin</h1>  <br>
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<h1 style="color:#ffffff; background-color:#1F618D;; -moz-border-radius: 15px; -webkit-border-radius: 15px; padding:15px; text-align: center; font-family: Trebuchet MS">Human Chorionic Gonadotropin</h1>  <br><br>
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<center><img src="https://static.igem.org/mediawiki/2017/f/f5/T--Georgia_State--recombiantHCGPCRsufixpreffix_.jpg"  alt="Horseshoe Crab in Aquarium" width="800" height="250" style="float:center;"></center><br><br>
 
When designing this part we used the recombinant<b> human chorionic gonadotropin </b> cDNA sequence, sequenced by The National Institutes of Health Mammalian Gene Collection (MGC) Program . While the same amino acids are present, the cDNA sequence is altered. To detect the activation of Factor C autocatalysis, a hCG-beta subunit sequence component was a necessary addition to our final Factor C cDNA sequence. Similar to the primers designed for Factor C, we designed a forward and a reverse complement primer with iGEM prefix and suffix to join Block 4 of Factor C and Block 5 of hCG-beta subunit together. For our idea of a detection system, we plan to use a pregnancy test to detect the recombinant hCG-beta subunit once Factor C is activated.
 
When designing this part we used the recombinant<b> human chorionic gonadotropin </b> cDNA sequence, sequenced by The National Institutes of Health Mammalian Gene Collection (MGC) Program . While the same amino acids are present, the cDNA sequence is altered. To detect the activation of Factor C autocatalysis, a hCG-beta subunit sequence component was a necessary addition to our final Factor C cDNA sequence. Similar to the primers designed for Factor C, we designed a forward and a reverse complement primer with iGEM prefix and suffix to join Block 4 of Factor C and Block 5 of hCG-beta subunit together. For our idea of a detection system, we plan to use a pregnancy test to detect the recombinant hCG-beta subunit once Factor C is activated.
 
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<h1 style="color:#ffffff; background-color:#1F618D;; -moz-border-radius: 15px; -webkit-border-radius: 15px; padding:15px; text-align: center; font-family: Trebuchet MS">Factor C-hCG Fusion </h1> <br>
 
<h1 style="color:#ffffff; background-color:#1F618D;; -moz-border-radius: 15px; -webkit-border-radius: 15px; padding:15px; text-align: center; font-family: Trebuchet MS">Factor C-hCG Fusion </h1> <br>
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<center><img src="https://static.igem.org/mediawiki/2017/c/c4/T--Georgia_State--FactorCfusion.jpg"  alt="Horseshoe Crab in Aquarium" width="800" height="250" style="float:right;"></center>
 
The basic mechanism for overlap begins with a PCR to generate two fragments (Block 1 and Block 2) that have ends modified by mispriming so that they have homologous regions. Through mixture, denaturation, and annealing of Block 1 5'-end of the top strand will anneal onto the 3'-end of the bottom strand of Block 2. Extension of the overlap product is used to form the recombinant product (the overlapping ends of the fragments are created by the forward primers and reverse complement primers to match the individual fragments). The method can be repeated to add together more than two DNA fragments (Block 3 and Block 4 + hCG-beta subunit). Together, all 5 g-blocks and a total of 10 primers would be joined via overlap extension PCR. If this joining of LFC blocks 1-4 and hCG-beta subunit block 5 is successful, the final product of <b>Limulus Clotting Factor C + hCG-beta subunit sequence</b> would be used as our complete detection system.  
 
The basic mechanism for overlap begins with a PCR to generate two fragments (Block 1 and Block 2) that have ends modified by mispriming so that they have homologous regions. Through mixture, denaturation, and annealing of Block 1 5'-end of the top strand will anneal onto the 3'-end of the bottom strand of Block 2. Extension of the overlap product is used to form the recombinant product (the overlapping ends of the fragments are created by the forward primers and reverse complement primers to match the individual fragments). The method can be repeated to add together more than two DNA fragments (Block 3 and Block 4 + hCG-beta subunit). Together, all 5 g-blocks and a total of 10 primers would be joined via overlap extension PCR. If this joining of LFC blocks 1-4 and hCG-beta subunit block 5 is successful, the final product of <b>Limulus Clotting Factor C + hCG-beta subunit sequence</b> would be used as our complete detection system.  
 
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Latest revision as of 03:37, 2 November 2017