Difference between revisions of "Team:UNOTT/Experiments"

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<p>We produced our gRNA plasmids in order to repress targeted fluorescent proteins on our reporter plasmid. This allows more combinations than possible with reporters alone.</p>
 
<p>We produced our gRNA plasmids in order to repress targeted fluorescent proteins on our reporter plasmid. This allows more combinations than possible with reporters alone.</p>
 
<h1>How</h1>
 
<h1>How</h1>
<p> Refer to step 2 for plasmid construction. The sgRNA plasmid uses static promoter J23119, and sgRNA in place of reporter proteins. We constructed plasmids that contain one gRNA each, although we could expand this to include 3 or more gRNAs per plasmid. In our lab book you can see that we can easily transform this plasmid into <i>E. coli</i> along with pReporter with high efficiency. The gRNA plasmid uses the same ligation strategy as pReporter which means that the process of creating more combinations is simple and minimises the cost associated with many enzymes.</p>
+
<p> Refer to step 2 for plasmid construction. The sgRNA plasmid uses constitutive promoter J23119, and sgRNA in place of reporter proteins. We constructed plasmids that contain one gRNA each, although we could expand this to include 3 or more gRNAs per plasmid. In our lab book you can see that we can easily transform this plasmid into <i>E. coli</i> along with pReporter with high efficiency. The gRNA plasmid uses the same ligation strategy as pReporter which means that the process of creating more combinations is simple and minimises the cost associated with many enzymes.</p>
 
<h1>Results</h1>
 
<h1>Results</h1>
 
<p>For the CRISPRi results check step 6.</p>
 
<p>For the CRISPRi results check step 6.</p>

Revision as of 03:43, 2 November 2017





EXPERIMENTS:

STEP 1: Create guideRNA Plasmid

STEP 2: Create Reporter Plasmid

STEP 3: Promoter Library

STEP 4: Random Ligations

STEP 5: Freeze Drying & Revival

STEP 6: CRISPRi & gRNA Efficiency