Difference between revisions of "Team:BostonU/Results"

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   <p class="inline-heading-type mainwrap">Characterizing Toehold Switch Activity in Cell Free</p>
 
   <p class="inline-heading-type mainwrap">Characterizing Toehold Switch Activity in Cell Free</p>
   <p class="body-type mainwrap">The next step in validating the functionality of our project was to characterize toehold switch functionality in cell free. The best expression was achieved when activating the toehold switch with RNA trigger at 10,000X concentrations relative to the toehold. In this experiment, fluorescence from reactions with plasmid toeholds and RNA trigger was compared to fluorescence from reactions containing plasmid toehold switches alone, no DNA at all, and a plasmid containing a constitutively active deGFP. Measurable fluorescence is achieved from two different toehold switch/trigger pairs, but the expression is lower than that seen from the constitutively active deGFP. Larger amounts of RNA may allow for better fluorescence, but the methods we employed for transcribing the trigger DNA to RNA was not able to produce higher concentrations. </p>
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   <p class="body-type mainwrap">The next step in validating the functionality of our project was to characterize toehold switch functionality in cell free. The best expression was achieved when activating the toehold switch with RNA trigger at 10,000X concentrations relative to the toehold (Figure 2). In this experiment, fluorescence from reactions with plasmid toeholds and RNA trigger was compared to fluorescence from reactions containing plasmid toehold switches alone, no DNA at all, and a plasmid containing a constitutively active deGFP. Measurable fluorescence is achieved from two different toehold switch/trigger pairs, but the expression is lower than that seen from the constitutively active deGFP. Larger amounts of RNA may allow for better fluorescence, but the methods we employed for transcribing the trigger DNA to RNA was not able to produce higher concentrations. </p>
 
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   <p class="inline-heading-type mainwrap"> FIGURE </p>
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  <img src="https://static.igem.org/mediawiki/2017/4/48/T--BostonU--CreData.png"></img>
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   <p class="body-type"><strong>Figure 3.</strong> Caption for figure. This figure shows fluorescence from a cell free reaction in which 1 unit of Cre recombinase was added to 10 nM reporter plasmids in order to drive deGFP expression. This is compared to reactions containing no DNA, only reporter plasmid DNA, a plasmid with constitutively active deGFP, and a reaction with 1 unit of Cre added to the constitutive deGFP plasmid. </p>
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  </div>
 
   <p class="body-type mainwrap">&nbsp;</p>
 
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Revision as of 20:05, 29 October 2017

RESULTS