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

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<p>We have designed Rop protein with an Anderson promoter and showed that it can reduce the copy number of single plasmid, and multiple plasmids non-specifically.</p>
 
<p>We have designed Rop protein with an Anderson promoter and showed that it can reduce the copy number of single plasmid, and multiple plasmids non-specifically.</p>
  
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         <h5>Rop protein results</h5>
 
         <h5>Rop protein results</h5>
 
         <p>We have first decided to verify the expression of Rop protein to make sure that our designed Rop gene gives appropriate mRNA which is translated in the cell correctly. Rop gene was then placed under inducible T7 promoter. After two hours of growth, E. coli DH5α cells containing plasmid with Rop gene were induced using 1 mM IPTG. Soluble proteins from the cell lysates were separated by centrifugation and then used for SDS-PAGE. Size of Rop protein is 7,5 kDa, so it can be seen below 10 kDa size standard mark. Figure 1 shows, that Rop protein was induced successfully and its quantity increases by prolonging cell growth. It is found in soluble protein fraction which strongly suggests that Rop protein possibly forms an active spatial structure in vivo and might have influence to RNA I-RNA II duplex formation.</p>
 
         <p>We have first decided to verify the expression of Rop protein to make sure that our designed Rop gene gives appropriate mRNA which is translated in the cell correctly. Rop gene was then placed under inducible T7 promoter. After two hours of growth, E. coli DH5α cells containing plasmid with Rop gene were induced using 1 mM IPTG. Soluble proteins from the cell lysates were separated by centrifugation and then used for SDS-PAGE. Size of Rop protein is 7,5 kDa, so it can be seen below 10 kDa size standard mark. Figure 1 shows, that Rop protein was induced successfully and its quantity increases by prolonging cell growth. It is found in soluble protein fraction which strongly suggests that Rop protein possibly forms an active spatial structure in vivo and might have influence to RNA I-RNA II duplex formation.</p>
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<p>We then wanted to see if we can add a constitutive Anderson promoter to Rop gene in order to change the copy numbers of a plasmid group. We have cloned 3 different anderson promoters next to Rop gene and then moved it next to RNA I. We then moved these 3 intermediate parts (BBa_K2259072, BBa_K2259073, BBa_K2259074) into the minimal SynORI vector (BBa_K2259092)  next to RNA II (BBa_K2259075, BBa_K2259053, BBa_K2259052). We have then calculated the copy number.</p>
 
<p>We then wanted to see if we can add a constitutive Anderson promoter to Rop gene in order to change the copy numbers of a plasmid group. We have cloned 3 different anderson promoters next to Rop gene and then moved it next to RNA I. We then moved these 3 intermediate parts (BBa_K2259072, BBa_K2259073, BBa_K2259074) into the minimal SynORI vector (BBa_K2259092)  next to RNA II (BBa_K2259075, BBa_K2259053, BBa_K2259052). We have then calculated the copy number.</p>
<p> GRAFIKAS</p>
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<p>As seen in in the figure above, our Rop protein constructs successfully lower the plasmid copy number. Each anderson promoter increases Rop concentration and consequently, lowers plasmid copy number.</p>
 
<p>As seen in in the figure above, our Rop protein constructs successfully lower the plasmid copy number. Each anderson promoter increases Rop concentration and consequently, lowers plasmid copy number.</p>
 
    <p>We have also investigated Rop protein with inducible Rhamnose promoter in order to have a viable option of inducible copy number control. We have cloned Rop gene next to rhamnose promoter and RNA I (BBa_K2259070) and then placed this construct next to RNA II (BBa_K2259076) in SynORI minimal vector (BBa_K2259092).</p>
 
    <p>We have also investigated Rop protein with inducible Rhamnose promoter in order to have a viable option of inducible copy number control. We have cloned Rop gene next to rhamnose promoter and RNA I (BBa_K2259070) and then placed this construct next to RNA II (BBa_K2259076) in SynORI minimal vector (BBa_K2259092).</p>
<p> GRAFIKAS</p>
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<p>These results show that rhamnose promoter is too strong for Rop protein expression, because even the leakage of promoter at 0 percent induction leads to copy decrease to average 1 copy per cell. That means that cells can barely survive and if they do, the inhibition level is so high they cannot maintain more than one plasmid. </p>
 
<p>These results show that rhamnose promoter is too strong for Rop protein expression, because even the leakage of promoter at 0 percent induction leads to copy decrease to average 1 copy per cell. That means that cells can barely survive and if they do, the inhibition level is so high they cannot maintain more than one plasmid. </p>
 
<p>Despite the high expression level this device can still prove to be useful in the future, for example if characterized with an active partitioning system this construct could become a useful tool for extremely low copy plasmid group generator.</p>
 
<p>Despite the high expression level this device can still prove to be useful in the future, for example if characterized with an active partitioning system this construct could become a useful tool for extremely low copy plasmid group generator.</p>

Revision as of 03:17, 2 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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