Difference between revisions of "Team:BostonU/Parts"

Line 223: Line 223:
 
<p class="body-type mainwrap">&nbsp;</p>
 
<p class="body-type mainwrap">&nbsp;</p>
 
<p class="body-type mainwrap">BBa_K2411000: OR2-OR1 Promoter</p>
 
<p class="body-type mainwrap">BBa_K2411000: OR2-OR1 Promoter</p>
<p class="body-type mainwrap">&nbsp;</p>
 
 
<p class="body-type mainwrap">This is a constitutively active promoter that can be used in E. coli and E. coli derived transcription translation systems. This part is derived from the lambda bacteriaphage.</p>
 
<p class="body-type mainwrap">This is a constitutively active promoter that can be used in E. coli and E. coli derived transcription translation systems. This part is derived from the lambda bacteriaphage.</p>
 
<p class="body-type mainwrap">&nbsp;</p>
 
<p class="body-type mainwrap">&nbsp;</p>
<p class="inline-heading-type mainwrap">BBa_K2411002: T500 Terminator</p>
+
<p class="body-type mainwrap">BBa_K2411002: T500 Terminator</p>
 
<p class="body-type mainwrap">This is a bacterial terminator.</p>
 
<p class="body-type mainwrap">This is a bacterial terminator.</p>
 
<p class="body-type mainwrap">&nbsp;</p>
 
<p class="body-type mainwrap">&nbsp;</p>
 
<p class="body-type mainwrap">BBa_K2411004: Toehold 1</p>
 
<p class="body-type mainwrap">BBa_K2411004: Toehold 1</p>
 
<p class="body-type mainwrap">&nbsp;</p>
 
<p class="body-type mainwrap">&nbsp;</p>
<p class="inline-heading-type mainwrap">This sequence is the forward engineered toehold from Green et. al. This part contains the hairpin loop sequence that with the RBS. There is no gene associated with this toehold.</p>
+
<p class="body-type mainwrap">This sequence is the forward engineered toehold from Green et. al. This part contains the hairpin loop sequence that with the RBS. There is no gene associated with this toehold.</p>
 
<p class="body-type mainwrap">BBa_K2411007: Toehold 2</p>
 
<p class="body-type mainwrap">BBa_K2411007: Toehold 2</p>
<p class="body-type mainwrap">&nbsp;</p>
 
 
<p class="body-type mainwrap">This sequence is the second best performing forward engineered toehold from Green et. al. There is no gene associated with this toehold.</p>
 
<p class="body-type mainwrap">This sequence is the second best performing forward engineered toehold from Green et. al. There is no gene associated with this toehold.</p>
 
<p class="body-type mainwrap">&nbsp;</p>
 
<p class="body-type mainwrap">&nbsp;</p>
<p class="inline-heading-type mainwrap">In addition, the deGFP part utilized in our composite part was submitted under BBa_K2205001 by iGEM17_Newcastle.</p>
+
<p class="body-type mainwrap">In addition, the deGFP part utilized in our composite part was submitted under BBa_K2205001 by iGEM17_Newcastle.</p>
 
<p class="body-type mainwrap">&nbsp;</p>
 
<p class="body-type mainwrap">&nbsp;</p>
 
<p class="body-type mainwrap">The sequences for the promoter, terminator, and deGFP were obtained from the pBEST plasmid used to Vincent Noireaux and his lab with their cell-free system [1].</p>
 
<p class="body-type mainwrap">The sequences for the promoter, terminator, and deGFP were obtained from the pBEST plasmid used to Vincent Noireaux and his lab with their cell-free system [1].</p>
 
<p class="body-type mainwrap">&nbsp;</p>
 
<p class="body-type mainwrap">&nbsp;</p>
<p class="inline-heading-type mainwrap">The sequences for the toeholds were obtained from Green et al. [2].</p>
+
<p class="body-type mainwrap">The sequences for the toeholds were obtained from Green et al. [2].</p>
 
<p class="body-type mainwrap">A toehold switch part including a ribosomal binding site and a start codon.</p>
 
<p class="body-type mainwrap">A toehold switch part including a ribosomal binding site and a start codon.</p>
 
<p class="body-type mainwrap">&nbsp;</p>
 
<p class="body-type mainwrap">&nbsp;</p>
 
<p class="body-type mainwrap">[1]Shin, Jonghyeon, and Vincent Noireaux. "Efficient cell-free expression with the endogenous E. Coli RNA polymerase and sigma factor 70." Journal of biological engineering 4.1 (2010): 8.</p>
 
<p class="body-type mainwrap">[1]Shin, Jonghyeon, and Vincent Noireaux. "Efficient cell-free expression with the endogenous E. Coli RNA polymerase and sigma factor 70." Journal of biological engineering 4.1 (2010): 8.</p>
 
<p class="body-type mainwrap">&nbsp;</p>
 
<p class="body-type mainwrap">&nbsp;</p>
<p class="body-type mainwrap">
+
<p class="body-type mainwrap">[2] Green, Alexander A., et al. "Toehold switches: de-novo-designed regulators of gene expression." Cell 159.4 (2014): 925-939.</p>
[2] Green, Alexander A., et al. "Toehold switches: de-novo-designed regulators of gene expression." Cell 159.4 (2014): 925-939.</p>
+
 
</div>
 
</div>
 
<div id="backgroundimage2"><div class="background-gradient-up">
 
<div id="backgroundimage2"><div class="background-gradient-up">

Revision as of 02:13, 31 October 2017

OUR PARTS