Difference between revisions of "Team:Newcastle/Results"

Line 618: Line 618:
 
           </br></br>
 
           </br></br>
 
           This section of the project is based on testing the modularity of the system by replacing the IPTG detector part of the Sensynova design with different detecting parts. In particular, an Arsenic sensing part will be used.</p>
 
           This section of the project is based on testing the modularity of the system by replacing the IPTG detector part of the Sensynova design with different detecting parts. In particular, an Arsenic sensing part will be used.</p>
 +
</br>
  
 
           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> Background Information </h2>
 
           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> Background Information </h2>
Line 629: Line 630:
  
 
           <p>This part consists of the promoter of the  <i> E. coli</i>  JM109 chromosomal arsenic detoxification operon (ars operon), including the ArsR repressor binding site and the <i>arsR</i> gene encoding the arsR repressor protein, together with its ribosome binding site. Addition of any other genes to the 3' end of this part will result in their expression being dependent on the presence of sodium arsenate or sodium arsenite. Arsenite or arsenite anion binds to the repressor protein ArsR, resulting in inability to repress the promoter. Based on Edinburgh's 2006 team experiments, a concentration of 1 micromolar sodium arsenate in LB is sufficient for essentially full expression, though this will vary according to conditions.</p>
 
           <p>This part consists of the promoter of the  <i> E. coli</i>  JM109 chromosomal arsenic detoxification operon (ars operon), including the ArsR repressor binding site and the <i>arsR</i> gene encoding the arsR repressor protein, together with its ribosome binding site. Addition of any other genes to the 3' end of this part will result in their expression being dependent on the presence of sodium arsenate or sodium arsenite. Arsenite or arsenite anion binds to the repressor protein ArsR, resulting in inability to repress the promoter. Based on Edinburgh's 2006 team experiments, a concentration of 1 micromolar sodium arsenate in LB is sufficient for essentially full expression, though this will vary according to conditions.</p>
 +
</br>
  
 
           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> Design Stage </h2>
 
           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> Design Stage </h2>
Line 701: Line 703:
  
 
<p>The preliminary qualitative assay above shows that there is no significant difference among the samples when inoculated with Arsenic in different concentrations and the controls (no Arsenic). Optimisation of the Arsenic detection into the Sensynova framework is required. </p>
 
<p>The preliminary qualitative assay above shows that there is no significant difference among the samples when inoculated with Arsenic in different concentrations and the controls (no Arsenic). Optimisation of the Arsenic detection into the Sensynova framework is required. </p>
 +
</br>
  
  
Line 706: Line 709:
 
</br>
 
</br>
 
           <p>The results demonstrate that further characterisation needs to be conducted in order to optimise the Arsenic detector variant in the Sensynova platform. However, due to time constraints, we adapted the IPTG framework modelling results to the preliminary experiments conducted for the framework customised as the Arsenic biosensor. In order for future characterisation of this part, the model should be modified in order to guide <i>in vivo</i> efforts accordingly.
 
           <p>The results demonstrate that further characterisation needs to be conducted in order to optimise the Arsenic detector variant in the Sensynova platform. However, due to time constraints, we adapted the IPTG framework modelling results to the preliminary experiments conducted for the framework customised as the Arsenic biosensor. In order for future characterisation of this part, the model should be modified in order to guide <i>in vivo</i> efforts accordingly.
 
 
</p>
 
</p>
 +
</br>
  
 
           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> References </h2>
 
           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> References </h2>
Line 720: Line 723:
  
 
           <h2  style="font-size: 1em"> BioBricks used: <a href="http://parts.igem.org/Part:BBa_K2205023">BBa_K2205023 (New)</a>, <a href="http://parts.igem.org/Part:BBa_K2448006">BBa_K2448006 (Evry Paris-Saclay 2017)</a>, <a href="http://parts.igem.org/Part:BBa_K2448050">BBa_K2448050  (Evry Paris-Saclay 2017)</a> </h2>
 
           <h2  style="font-size: 1em"> BioBricks used: <a href="http://parts.igem.org/Part:BBa_K2205023">BBa_K2205023 (New)</a>, <a href="http://parts.igem.org/Part:BBa_K2448006">BBa_K2448006 (Evry Paris-Saclay 2017)</a>, <a href="http://parts.igem.org/Part:BBa_K2448050">BBa_K2448050  (Evry Paris-Saclay 2017)</a> </h2>
 +
</br>
  
 
           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> Rationale and Aim </h2>
 
           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> Rationale and Aim </h2>
Line 726: Line 730:
 
           </br></br>
 
           </br></br>
 
           This section of the project is based on testing the modularity of the system by implementing the biosensor created by the 2017 Evry Paris-Saclay iGEM team into the Sensynova platform as part of our <a href="https://2017.igem.org/Team:Newcastle/Collaborations#eps_collab">collaboration</a> requirement.</p>
 
           This section of the project is based on testing the modularity of the system by implementing the biosensor created by the 2017 Evry Paris-Saclay iGEM team into the Sensynova platform as part of our <a href="https://2017.igem.org/Team:Newcastle/Collaborations#eps_collab">collaboration</a> requirement.</p>
 +
</br>
  
 
           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> Background Information </h2>
 
           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> Background Information </h2>
Line 780: Line 785:
 
           </br></br>
 
           </br></br>
 
           Colonies picked from streaked plates and cultures were prepared for <a href="https://static.igem.org/mediawiki/2017/e/e1/T--Newcastle--Miniprep.pdf">miniprepping</a>. DNA samples were then sent off for <a href="https://www.gatc-biotech.com/en/index.html">sequencing</a> to ensure that the constructs were correct. Sequencing data can be found on the <a href="https://2017.igem.org/Team:Newcastle/Parts">Parts page</a>.</p>
 
           Colonies picked from streaked plates and cultures were prepared for <a href="https://static.igem.org/mediawiki/2017/e/e1/T--Newcastle--Miniprep.pdf">miniprepping</a>. DNA samples were then sent off for <a href="https://www.gatc-biotech.com/en/index.html">sequencing</a> to ensure that the constructs were correct. Sequencing data can be found on the <a href="https://2017.igem.org/Team:Newcastle/Parts">Parts page</a>.</p>
 +
</br>
  
 
<h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> Characterisation</h2>
 
<h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> Characterisation</h2>
Line 790: Line 796:
 
<img src="https://static.igem.org/mediawiki/2017/d/de/Psi_pellets_gfp2.jpg" width="360px"/>
 
<img src="https://static.igem.org/mediawiki/2017/d/de/Psi_pellets_gfp2.jpg" width="360px"/>
 
<p class="legend"><center><strong>Figure 8:</strong> Pellets collected after overnight co-cultures of Psicose detector (<a href="http://parts.igem.org/Part:BBa_K2205023">BBa_K2205022</a>) + processor (<a href="http://parts.igem.org/Part:BBa_K2205012">BBa_K2205012</a>) + sfGFP reporter (<a href="http://parts.igem.org/Part:BBa_K2205015">BBa_K2205015</a>) in ratio 1:1:13, with and without PSI.</center></p>
 
<p class="legend"><center><strong>Figure 8:</strong> Pellets collected after overnight co-cultures of Psicose detector (<a href="http://parts.igem.org/Part:BBa_K2205023">BBa_K2205022</a>) + processor (<a href="http://parts.igem.org/Part:BBa_K2205012">BBa_K2205012</a>) + sfGFP reporter (<a href="http://parts.igem.org/Part:BBa_K2205015">BBa_K2205015</a>) in ratio 1:1:13, with and without PSI.</center></p>
 +
</br>
  
 
           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> Conclusions and Future Work </h2>
 
           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> Conclusions and Future Work </h2>
Line 796: Line 803:
 
           </br></br>
 
           </br></br>
 
We also lacked the time to co-culture this part with the Sensynova platform's multiple modules in order for the creation of variants for the Evry Paris-Saclay. The part <a href="http://parts.igem.org/Part:BBa_K2205023"> BBa_K2205023</a>, the Evry Paris-Saclay's psicose biosensor system as the detecting unit of the platform, has been submitted to the iGEM registry for future work and characterisation by future teams.</p>
 
We also lacked the time to co-culture this part with the Sensynova platform's multiple modules in order for the creation of variants for the Evry Paris-Saclay. The part <a href="http://parts.igem.org/Part:BBa_K2205023"> BBa_K2205023</a>, the Evry Paris-Saclay's psicose biosensor system as the detecting unit of the platform, has been submitted to the iGEM registry for future work and characterisation by future teams.</p>
 +
</br>
  
 
           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> References </h2>
 
           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> References </h2>

Revision as of 17:28, 1 November 2017

spacefill

Our Experimental Results


Below is a diagram of our Sensynova Framework. Clicking on each part of the framework (e.g. detector modules) links to the relevant results.

Alternatively, at the bottom of this page are tabs which will show you results for every part of the project



Framework

Framework Chassis

Biochemical Adaptor

Target

Detector Modules

Multicellular Framework Testing

C12 HSL: Connector 1

Processor Modules

Framework in Cell Free Protein Synthesis Systems

C4 HSL: Connector 2

Reporter Modules



Looking for Interlab Study
related results? Click below!