Difference between revisions of "Team:Vilnius-Lithuania/Design"

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       <p>The transcript of RNA II forms a RNA-DNA duplex and acts as a primer for DNA polymerase and for that reason is often called a replication initiator.</p>
 
       <p>The transcript of RNA II forms a RNA-DNA duplex and acts as a primer for DNA polymerase and for that reason is often called a replication initiator.</p>
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<img src="https://static.igem.org/mediawiki/parts/f/ff/T--Vilnius-Lithuania--plasmid3.png" alt="img">
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             <div class="img-label">Figure 3. Different plasmid groups can be co-maintained in a cell with a specific, pre-selected copy number. Copy number control principle is the same for every plasmid group, but both RNA I and RNA II molecules are only specific to their own. </div>
 
             <div class="img-label">Figure 3. Different plasmid groups can be co-maintained in a cell with a specific, pre-selected copy number. Copy number control principle is the same for every plasmid group, but both RNA I and RNA II molecules are only specific to their own. </div>
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       <p>These different plasmid groups can then be co-maintained in cell with a specific, pre-selected copy number. Copy number control principle is the same for every group, but each group is only specific to its own group.</p>
 
       <p>These different plasmid groups can then be co-maintained in cell with a specific, pre-selected copy number. Copy number control principle is the same for every group, but each group is only specific to its own group.</p>
  
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   <p>The first step in experimentally choosing the suitable RNA I-RNA II pairs was done by employing a system that was able to measure the trans-acting effect of each RNA I type of group A has on the RNA II group A (BBa_K2259000) (RNA I types: WT (BBa_K2259005), NC (BBa_K2259024) and GC (BBa_K2259006)). By co-transforming base vector 2.0 (BBa_K2259081) having an A group RNA II together with pSB4A5 plasmid, which is constantly expressing one the mentioned RNA I. The plasmid copy number per cell was determined for each co-transformation using the absolute quantification qPCR.
 
   <p>The first step in experimentally choosing the suitable RNA I-RNA II pairs was done by employing a system that was able to measure the trans-acting effect of each RNA I type of group A has on the RNA II group A (BBa_K2259000) (RNA I types: WT (BBa_K2259005), NC (BBa_K2259024) and GC (BBa_K2259006)). By co-transforming base vector 2.0 (BBa_K2259081) having an A group RNA II together with pSB4A5 plasmid, which is constantly expressing one the mentioned RNA I. The plasmid copy number per cell was determined for each co-transformation using the absolute quantification qPCR.
 
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             <img src="http://placehold.it/800x450" alt="img">
 
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             <div class="img-label">Figure 4. The trans-acting effect each RNA I type has on A group RNA II plasmid copy number
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             <div class="img-label">Figure 4. The trans-acting effect each RNA I type has on A group RNA II plasmid copy number</div>
 
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</p><p>    As seen from the results, the GC type RNA I has the lowest tendency to cross interact with the RNA 2 initiator of replication from group A, as the copy number of the base vector 2.0 drops by the smallest amount. RNA I of NC type has the biggest cross-interaction level as it inhibits the plasmid replication the most.  
 
</p><p>    As seen from the results, the GC type RNA I has the lowest tendency to cross interact with the RNA 2 initiator of replication from group A, as the copy number of the base vector 2.0 drops by the smallest amount. RNA I of NC type has the biggest cross-interaction level as it inhibits the plasmid replication the most.  
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After the degree of interactions have been established amid A groups of all types RNA II-RNA I, GC stem loop structures have been chosen for further group interaction assessment. First of all, we turned to determining the copy number each group of RNA II (A - BBa_K2259000, B - BBa_K2259001, C - BBa_K2259002, D - BBa_K2259003 and E - BBa_K2259004) establishes in the cell with and without its corresponding RNA I constantly expressed by the Anderson promoter in the same vector.
 
After the degree of interactions have been established amid A groups of all types RNA II-RNA I, GC stem loop structures have been chosen for further group interaction assessment. First of all, we turned to determining the copy number each group of RNA II (A - BBa_K2259000, B - BBa_K2259001, C - BBa_K2259002, D - BBa_K2259003 and E - BBa_K2259004) establishes in the cell with and without its corresponding RNA I constantly expressed by the Anderson promoter in the same vector.
 
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             <img src="https://static.igem.org/mediawiki/parts/a/ab/RNA_II_%28A%29_and_RNA_II_%28B%29_%284%29.png" alt="img">
 
             <img src="https://static.igem.org/mediawiki/parts/a/ab/RNA_II_%28A%29_and_RNA_II_%28B%29_%284%29.png" alt="img">
 
             <div class="img-label">Figure 5. Plasmid copy number each group of RNA II establishes in the cell with and without its corresponding, constantly expressed, RNA I.
 
             <div class="img-label">Figure 5. Plasmid copy number each group of RNA II establishes in the cell with and without its corresponding, constantly expressed, RNA I.
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Revision as of 09:41, 16 November 2017

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Determining the plasmid copy number

Design and Results

Preparing for the framework: standard curve generation and plasmid copy number evaluation.

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