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− | <a id="Summary"> | + | <a id="section1"> |
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| Summary | | Summary |
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| </h2> | | </h2> |
− | <p>Since the wet-lab has designed the circuits, it is natural for us to think of this question: how does the circuits work, or can we actually achieve the desired function in reality? And there are also many questions which we may not find it easy to answer: how does the amount of drug molecules produced and metabolized change? What will happen when we adjust the concentration of NO?</p> | + | <p>Since the wet-lab has designed the circuits, it is natural for us to think of this question: how does the circuits work, or can we actually achieve the desired function in reality? And there are also many questions which we may find it not easy to answer: how does the amount of drug molecules produced and metabolized change? What will happen when we adjust the concentration of NO?</p> |
| <p>Furthermore, we also want to get to know about the logical relationship between the promoter, terminator, protein, inducer, and so on of the genetic circuits. And it is one of the most important things we concern about that whether the results obtained in the experiment consistent with those obtained in the simulation or not.</p> | | <p>Furthermore, we also want to get to know about the logical relationship between the promoter, terminator, protein, inducer, and so on of the genetic circuits. And it is one of the most important things we concern about that whether the results obtained in the experiment consistent with those obtained in the simulation or not.</p> |
| <p>With these questions, we conducted simulation modeling for the genetic circuits. We hope to provide references for the selection of the wet-lab scheme by changes of the relative concentration of each factor in the simulated circuits, and further verify the correctness and feasibility of our circuits. </p> | | <p>With these questions, we conducted simulation modeling for the genetic circuits. We hope to provide references for the selection of the wet-lab scheme by changes of the relative concentration of each factor in the simulated circuits, and further verify the correctness and feasibility of our circuits. </p> |
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| </div> | | </div> |
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| </div> | | </div> |
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| </div> | | </div> |
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| + | <p>The modeling process is showed below. Since ARG2 works the same way as ARG1, we just show one model of them.</p> |
| + | <p>Establishing the ODE equations for each circuit and representing them as diagrams.</p> |
| + | <!--********************* storage_box template **************************--> |
| | | |
| + | <div class="storage_box"> |
| + | |
| + | <ul class="storage_box_list"> |
| + | <li class="storage_box_ele"> |
| + | |
| + | <div class="storage_header"> |
| + | |
| + | <p>No.1 Circuit(Locating and Imaging)</p> |
| + | <img /> |
| + | |
| + | </div> |
| + | |
| + | <div class="storage_text"> |
| + | <p><strong>ODEs:</strong><br/> |
| + | d(mRNA_OmpA)/dt = ReactionFlux1 - ReactionFlux2<br/> |
| + | d(protein_azurin)/dt = ReactionFlux4 - ReactionFlux6<br/> |
| + | d(mRNA_azurin)/dt = -ReactionFlux3 + ReactionFlux5<br/> |
| + | <strong>Fluxes:</strong><br/> |
| + | ReactionFlux1 = k1*DNA_OmpA<br/> |
| + | ReactionFlux2 = k3*mRNA_OmpA<br/> |
| + | ReactionFlux3 = k7*mRNA_azurin<br/> |
| + | ReactionFlux4 = k6*mRNA_azurin<br/> |
| + | ReactionFlux5 = k5*DNA_azurin<br/> |
| + | ReactionFlux6 = k8*protein_azurin<br/> |
| + | <strong>Parameter Values:</strong><br/> |
| + | k1 = 0.2 mol/second<br/> |
| + | k2 = 10 mol/second<br/> |
| + | k3 = 1.5 mol/second<br/> |
| + | k4 = 1 mol/second<br/> |
| + | k7 = 1 mol/second<br/> |
| + | k6 = 15 mol/second<br/> |
| + | k5 = 0.2 mol/second<br/> |
| + | k8 = 1 mol/second<br/> |
| + | unnamed = 1 liter<br/> |
| + | <strong>Initial Conditions:</strong><br/> |
| + | mRNA_OmpA = 0 molecule<br/> |
| + | protein_azurin = 0 molecule<br/> |
| + | mRNA_azurin = 0 molecule<br/> |
| + | protein_OmpA = 0 molecule<br/> |
| + | DNA_OmpA = 50 molecule<br/> |
| + | DNA_azurin = 50 molecule</p> |
| + | |
| + | <p><strong>Diagram</strong></p> |
| + | <div class="img_in_text "> |
| + | <img style="width:100%;" src="https://static.igem.org/mediawiki/2018/0/0d/T--SJTU-BioX-Shanghai--ompa_diagram.png"/> |
| + | |
| + | </div> |
| + | </div> |
| + | |
| + | </li> |
| + | <li class="storage_box_ele"> |
| + | <div class="storage_header"> |
| + | |
| + | <p>No.2 Circuit(Drug Synthesis)</p> |
| + | <img /> |
| + | |
| + | </div> |
| + | |
| + | <div class="storage_text"> |
| + | <p><strong>ODEs:</strong><br/> |
| + | d(mRNA_ARG1)/dt = ReactionFlux1 - ReactionFlux3<br/> |
| + | d(protein_ARG1)/dt = ReactionFlux2 - ReactionFlux4<br/> |
| + | <strong>Fluxes:</strong><br/> |
| + | ReactionFlux1 = k1*DNA_ARG1<br/> |
| + | ReactionFlux2 = k2*mRNA_ARG1<br/> |
| + | ReactionFlux3 = k3*mRNA_ARG1<br/> |
| + | ReactionFlux4 = k4*protein_ARG1<br/> |
| + | <strong>Parameter Values:</strong><br/> |
| + | k1 = 0.2 mol/second<br/> |
| + | k2 = 20 mol/second<br/> |
| + | k3 = 1.5 mol/second<br/> |
| + | k4 = 1 mol/second<br/> |
| + | unnamed = 1 liter<br/> |
| + | <strong>Initial Conditions:</strong><br/> |
| + | mRNA_ARG1 = 0 molecule<br/> |
| + | protein_ARG1 = 0 molecule<br/> |
| + | DNA_ARG1 = 50 molecule<br/> |
| + | |
| + | <p><strong>Diagram</strong></p> |
| + | <div class="img_in_text "> |
| + | <img style="width:100%;" src="https://static.igem.org/mediawiki/2018/9/96/T--SJTU-BioX-Shanghai--arg1_diagram.png"/> |
| + | |
| + | </div> |
| + | |
| + | </div> |
| + | |
| + | </li> |
| + | <li class="storage_box_ele"> |
| + | <div class="storage_header"> |
| + | |
| + | <p>No.3 Circuit(Cell Lysis)</p> |
| + | <img /> |
| + | |
| + | </div> |
| + | |
| + | <div class="storage_text"> |
| + | |
| + | <p> |
| + | <strong>ODEs:</strong><br/> |
| + | d(mRNA_X17E)/dt = ReactionFlux1 - ReactionFlux3<br/> |
| + | d(protein_X17E)/dt = ReactionFlux2 - ReactionFlux4<br/> |
| + | <strong>Fluxes:</strong><br/> |
| + | ReactionFlux1 = k1*DNA_X17E<br/> |
| + | ReactionFlux2 = k2*mRNA_X17E<br/> |
| + | ReactionFlux3 = k3*mRNA_X17E<br/> |
| + | ReactionFlux4 = k4*protein_X17E<br/> |
| + | <strong>Parameter Values:</strong><br/> |
| + | k1 = 0.2 mol/second<br/> |
| + | k2 = 20 mol/second<br/> |
| + | k3 = 1.5 mol/second<br/> |
| + | k4 = 1 mol/second<br/> |
| + | unnamed = 1 liter<br/> |
| + | <strong>Initial Conditions:</strong><br/> |
| + | mRNA_X17E = 0 molecule<br/> |
| + | protein_X17E = 0 molecule<br/> |
| + | DNA_X17E = 30 molecule</p> |
| + | |
| + | <p><strong>Diagram</strong></p> |
| + | <div class="img_in_text "> |
| + | <img style="width:90%;" src="https://static.igem.org/mediawiki/2018/2/2b/T--SJTU-BioX-Shanghai--X17E_diagram.png"/> |
| + | </div> |
| + | </div> |
| + | </li> |
| + | |
| + | |
| + | </ul> |
| + | |
| + | </div> |
| + | |
| + | <!--/********************* storage_box template **************************--> |
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| + | |
| + | |
| + | |
| <h2> | | <h2> |
| <a id="section3"> | | <a id="section3"> |
| <span class="place_holder"></span> | | <span class="place_holder"></span> |
− | Section3 | + | Results |
| </a> | | </a> |
| </h2> | | </h2> |
− | <p>xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx. The text-link template is here.</p> | + | <p>By solving the ODE equations for simulation, we obtained the figures of the change of factor concentration over time in several circuits as shown below. |
− | <a title="https://static.igem.org/mediawiki/2018/0/09/2018_InterLab_Plate_Reader_Protocol.pdf" href="https://static.igem.org/mediawiki/2018/0/09/2018_InterLab_Plate_Reader_Protocol.pdf">2018 Interlab Plate Reader Protocol</a> <br/>
| + | <div class="img_in_text "> |
− | <a title="http://parts.igem.org/Help:Protocols/Transformation" href="http://parts.igem.org/Help:Protocols/Transformation">Protocols/Transformation</a>
| + | <img src="https://static.igem.org/mediawiki/2018/8/8e/T--SJTU-BioX-Shanghai--ompa.png"/> |
| + | </div> |
| + | <div class="img_in_text "> |
| + | <img src="https://static.igem.org/mediawiki/2018/6/65/T--SJTU-BioX-Shanghai--fansile.png"/> |
| + | </div> |
| + | <div class="img_in_text "> |
| + | <img src="https://static.igem.org/mediawiki/2018/4/47/T--SJTU-BioX-Shanghai--X174E.png"/> |
| + | </div> |
| + | </p> |
| + | |
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| <h2> | | <h2> |
| <a id="section4"> | | <a id="section4"> |
| <span class="place_holder"></span> | | <span class="place_holder"></span> |
− | section4 | + | Analysis |
| </a> | | </a> |
| </h2> | | </h2> |
− | <p> xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx The figure template is here.</p> | + | <p> It can be seen from the above simulation curves that all the target proteins we need can be successfully expressed, especially azurin protein is very sensitive to the promoter. So as long as the NO concentration is sufficient, azurin protein can be induced. </p> |
− |
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− |
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− | <!--******************************Fig 1****************************-->
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− | <div class="img_in_text zoom_out_able">
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− | <img src="https://static.igem.org/mediawiki/2018/6/64/T--SJTU-BioX-Shanghai--interlab_Fig1.jpg"/>
| + | |
− | <p class="fig_illustration">Fig 1. The particle standard curve obtained form the 2nd calibration experiment.</p>
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− | </div>
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− |
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− | <!--****************************************************************-->
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− | <p> xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx xxx.</p>
| + | |
− | <p>The table template is here.</p>
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− |
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− |
| + | |
− | <!--*****************************Table 1****************************-->
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− | <div class="table_in_text">
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− | <p class="table_illustration">Table 1. Colony forming units per 0.1 OD<sub>600</sub></p>
| + | |
− | <table style="border-collapse: collapse; ">
| + | |
− | <tr style="border-top:2px solid #000;">
| + | |
− | <th rowspan="2">samples</th>
| + | |
− | <th colspan="3">dilution factor</th>
| + | |
− | <th rowspan="2">CFU/mL</th>
| + | |
− | </tr>
| + | |
− |
| + | |
− | <tr>
| + | |
− | <td>8×10<sup>4</sup></td>
| + | |
− | <td>8×10<sup>5</sup></td>
| + | |
− | <td>8×10<sup>6</sup></td>
| + | |
− | </tr>
| + | |
− |
| + | |
− | <tr style="border-top:2px solid #000;">
| + | |
− | <td>1.1</td> <td>TNTC</td> <td>48</td> <td>11</td> <td>3.84E+07</td>
| + | |
− | </tr>
| + | |
− | <tr>
| + | |
− | <td>1.2</td> <td>248</td> <td>41</td> <td>10</td> <td>3.28E+07</td>
| + | |
− | </tr>
| + | |
− | <tr>
| + | |
− | <td>1.3</td> <td>172</td> <td>54</td> <td>5</td> <td>4.32E+07</td>
| + | |
− | </tr>
| + | |
− | <tr>
| + | |
− | <td>2.1</td> <td>TNTC</td> <td>143</td> <td>20</td> <td>1.14E+08</td>
| + | |
− | </tr>
| + | |
− | <tr>
| + | |
− | <td>2.2</td> <td>TNTC</td> <td>153</td> <td>25</td> <td>1.22E+08</td>
| + | |
− | </tr>
| + | |
− | <tr>
| + | |
− | <td>2.3</td> <td>TNTC</td> <td>151</td> <td>18</td> <td>1.21E+08</td>
| + | |
− | </tr>
| + | |
− | <tr>
| + | |
− | <td>3.1</td> <td>TNTC</td> <td>119</td> <td>16</td> <td>9.52E+07</td>
| + | |
− | </tr>
| + | |
− | <tr>
| + | |
− | <td>3.2</td> <td>TNTC</td> <td>125</td> <td>19</td> <td>1.00E+08</td>
| + | |
− | </tr>
| + | |
− | <tr>
| + | |
− | <td>3.3</td> <td>TNTC</td> <td>89</td> <td>18</td> <td>7.12E+07</td>
| + | |
− | </tr>
| + | |
− | <tr>
| + | |
− | <td>4.1</td> <td>TNTC</td> <td>209</td> <td>16</td> <td>1.67E+08</td>
| + | |
− | </tr>
| + | |
− | <tr>
| + | |
− | <td>4.2</td> <td>TNTC</td> <td>130</td> <td>17</td> <td>1.04E+08</td>
| + | |
− | </tr>
| + | |
− | <tr style="border-bottom:2px solid #000;">
| + | |
− | <td>4.3</td> <td>TNTC</td> <td>164</td> <td>10</td> <td>1.31E+08</td>
| + | |
− | </tr>
| + | |
− | | + | |
− | </table>
| + | |
− | </div>
| + | |
− |
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