Difference between revisions of "Team:BIT-China/Results"

(Undo revision 408388 by Yida (talk))
Line 106: Line 106:
 
             font-weight: bold;
 
             font-weight: bold;
 
         }
 
         }
.content-right{
 
  text-align: justify;
 
  text-justify: distribute-all-lines;
 
  text-align-last: justify;
 
  -moz-text-align-last: justify;
 
  -webkit-text-align-last: justify;
 
}
 
 
     </style>
 
     </style>
 
     <script src="https://2016.igem.org/Team:BIT-China/js/basic/bootstrap-3-3-6?action=raw&ctype=text/javascript"></script>
 
     <script src="https://2016.igem.org/Team:BIT-China/js/basic/bootstrap-3-3-6?action=raw&ctype=text/javascript"></script>
Line 193: Line 186:
 
                                     </div>
 
                                     </div>
 
                                     <div>
 
                                     <div>
                                         We used P<sub>BAD</sub> promoters in all three circuits. All the circuits contain a B0034 and a B0015. <a href="http://parts.igem.org/Part:BBa_K2120425" style="color:blue;">[part numbers]</a>
+
                                         We used P<sub>BAD</sub> promoters in all three circuits. All the circuits contain a B0034 and a B0015. <a href="http://parts.igem.org/Part:BBa_K2120303" style="color:blue;">[BBa_K2120303]</a><a href="http://parts.igem.org/Part:BBa_K2120304" style="color:blue;">[BBa_K2120304]</a><a href="http://parts.igem.org/Part:BBa_K2120304" style="color:blue;">[BBa_K2120304]</a>
                                       
+
 
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
Line 206: Line 199:
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
                                         We used the red fluorescent protein to replace the killer gene and constructed three circuits [part numbers] with different in-promoters (controlled by inhibitors). Two of them [part number] comes from DNA Distribution kit.
+
                                         We used the red fluorescent protein to replace the killer gene and constructed three circuits <a href="http://parts.igem.org/Part:BBa_K2120301" style="color:blue;">[BBa_K2120301]</a> with different in-promoters (controlled by inhibitors). Two of them <a href="http://parts.igem.org/Part:BBa_I13521" style="color:blue;">[BBa_I13521]</a><a href="http://parts.igem.org/Part:BBa_I6031" style="color:blue;">[BBa_I6031]</a> comes from DNA Distribution kit.
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
Line 231: Line 224:
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
 
                                         But when we added the arabinose, the RFP intensity increased, and it contradicted with expected results. We thought the terminator cannot completely isolate the two devices.
 
                                         But when we added the arabinose, the RFP intensity increased, and it contradicted with expected results. We thought the terminator cannot completely isolate the two devices.
                                         <b>So we change the promoter direction and add another B0015 to optimize the circuits.</b> [part numbers]
+
                                         <b>So we change the promoter direction and add another B0015 to optimize the circuits.</b> <a href="http://parts.igem.org/Part:BBa_K2120310" style="color:blue;">[BBa_K2120310]</a><a href="http://parts.igem.org/Part:BBa_K2120311" style="color:blue;">[BBa_K2120311]</a>
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
Line 243: Line 236:
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
                                         Also in order to reflect the inhibitor concentration, we constructed the following circuit. [part number]
+
                                         Also in order to reflect the inhibitor concentration, we constructed the following circuit. <a href="http://parts.igem.org/Part:BBa_K2120302" style="color:blue;">[BBa_K2120302]</a>
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
Line 255: Line 248:
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
                                         We constructed 16 (4*2*2) devices [part numbers] with the alteration of constitutive promoters (4 kinds), RBS (2 kinds) and inhibitors (2 kinds).
+
                                         We constructed 16 (4*2*2) devices <a href="http://parts.igem.org/Part:BBa_K2120312" style="color:blue;">[BBa_K2120312]</a><a href="http://parts.igem.org/Part:BBa_K2120313" style="color:blue;">[BBa_K2120313]</a><a href="http://parts.igem.org/Part:BBa_K2120314" style="color:blue;">[BBa_K2120314]</a><a href="http://parts.igem.org/Part:BBa_K2120315" style="color:blue;">[BBa_K2120315]</a><a href="http://parts.igem.org/Part:BBa_K2120317" style="color:blue;">[BBa_K2120317]</a><a href="http://parts.igem.org/Part:BBa_K2120318" style="color:blue;">[BBa_K2120318]</a><a href="http://parts.igem.org/Part:BBa_K2120319" style="color:blue;">[BBa_K2120319]</a><a href="http://parts.igem.org/Part:BBa_K2120321" style="color:blue;">[BBa_K2120321]</a><a href="http://parts.igem.org/Part:BBa_K2120323" style="color:blue;">[BBa_K2120323]</a><a href="http://parts.igem.org/Part:BBa_K2120325" style="color:blue;">[BBa_K2120325]</a><a href="http://parts.igem.org/Part:BBa_K2120326" style="color:blue;">[BBa_K2120326]</a><a href="http://parts.igem.org/Part:BBa_K2120327" style="color:blue;">[BBa_K2120327]</a><a href="http://parts.igem.org/Part:BBa_K1480003" style="color:blue;">[BBa_K1480003]</a><a href="http://parts.igem.org/Part:BBa_K145201" style="color:blue;">[BBa_K145201]</a><a href="http://parts.igem.org/Part:BBa_K145113" style="color:blue;">[BBa_K145113]</a><a href="http://parts.igem.org/Part:BBa_K1480004" style="color:blue;">[BBa_K1480004]</a> with the alteration of constitutive promoters (4 kinds), RBS (2 kinds) and inhibitors (2 kinds).
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
Line 279: Line 272:
 
                                     </div>
 
                                     </div>
 
                                     <div>
 
                                     <div>
                                         After constructing the circuits with different constitutive promoters to express the inhibitor, we change the constitutive promoter direction and add corresponding in-promoter. [part numbers]
+
                                         After constructing the circuits with different constitutive promoters to express the inhibitor, we change the constitutive promoter direction and add corresponding in-promoter. <a href="http://parts.igem.org/Part:BBa_K2120416" style="color:blue;">[BBa_K2120416]</a><a href="http://parts.igem.org/Part:BBa_K2120418" style="color:blue;">[BBa_K2120418]</a><a href="http://parts.igem.org/Part:BBa_K2120419" style="color:blue;">[BBa_K2120419]</a><a href="http://parts.igem.org/Part:BBa_K2120420" style="color:blue;">[BBa_K2120420]</a><a href="http://parts.igem.org/Part:BBa_K2120421" style="color:blue;">[BBa_K2120421]</a><a href="http://parts.igem.org/Part:BBa_K2120423" style="color:blue;">[BBa_K2120423]</a><a href="http://parts.igem.org/Part:BBa_K2120424" style="color:blue;">[BBa_K2120424]</a><a href="http://parts.igem.org/Part:BBa_K2120425" style="color:blue;">[BBa_K2120425]</a>
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
Line 308: Line 301:
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
                                         The fragments containing the constitutive promoter (Fig.7) are linked with and cloned into three types of plasmids individually.
+
                                         The fragments containing the constitutive promoter (Fig.8) are linked with and cloned into three types of plasmids individually.
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
Line 328: Line 321:
  
 
                                     <div class="block-content-header">
 
                                     <div class="block-content-header">
                                         1. Simulated the production of inhibitors with different concentration sby adding different concentration of arabinose
+
                                         1. Simulated the production of inhibitors with different concentrations by adding different concentration of arabinose
 
                                     </div>
 
                                     </div>
 
                                     <div>
 
                                     <div>
                                         In order to construct the environment with different concentrations of inhibitor and find the threshold, we use the PBAD promoter to achieve this. In the wet lab, we chose the CI-PR circuit like the picture to do this experiments.
+
                                         In order to construct the environment with different concentrations of inhibitor and find the threshold, we use the PBAD promoter to achieve this. In the wet lab, we chose the CI-PR circuit like the picture (Fig. 1) to do this experiments.
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
Line 387: Line 380:
 
                                         </div>
 
                                         </div>
 
                                         <div class="pic_info">
 
                                         <div class="pic_info">
                                            <b>Fig. 3</b> The graphic about testing procedure.
 
 
                                         </div>
 
                                         </div>
 
                                     </div>
 
                                     </div>
Line 394: Line 386:
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
                                         And then we draw the diagram about RFP intensity/OD600 and time under different concentrations of arabinose (Fig. 4).
+
                                         And then we draw the diagram about RFP intensity/OD600 and time under different concentrations of arabinose (Fig. 3).
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
Line 402: Line 394:
 
                                         </div>
 
                                         </div>
 
                                         <div class="pic_info">
 
                                         <div class="pic_info">
                                             <b>Fig. 4</b> the diagram of the about RFP intensity/OD600 and time under different concentrations of arabinose
+
                                             <b>Fig. 3</b> the diagram of the about RFP intensity/OD600 and time under different concentrations of arabinose
 
                                         </div>
 
                                         </div>
 
                                     </div>
 
                                     </div>
Line 409: Line 401:
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
                                         Then we collect the data after passing 17.5 hours from Fig. 3 to draw the diagram about the relationship between RFP intensity/OD600 and arabinose concentration (Fig. 5).
+
                                         Then we collect the data after passing 17.5 hours from Fig. 3 to draw the diagram about the relationship between RFP intensity/OD600 and arabinose concentration (Fig. 4).
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
Line 417: Line 409:
 
                                         </div>
 
                                         </div>
 
                                         <div class="pic_info">
 
                                         <div class="pic_info">
                                             <b>Fig. 5</b> the diagram of the about RFP intensity/OD600 and arabinose concentration
+
                                             <b>Fig. 4</b> the diagram of the about RFP intensity/OD600 and arabinose concentration
 
                                         </div>
 
                                         </div>
 
                                     </div>
 
                                     </div>
Line 424: Line 416:
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
                                         After we use the PBAD promoter to construct the environment with different concentrations of inhibitor, we have successfully proved that the in-promoter will respond to the different concentrations of inhibitor differently and found the threshold of inhibitor’s concentration that the PBAD promoter expressed under the 0.003% arabinose concentration.
+
                                         After we use the P<sub>BAD</sub> promoter to construct the environment with different concentrations of inhibitor, we have successfully proved that the in-promoter will respond to the different concentrations of inhibitor differently and found the threshold of inhibitor’s concentration that the P<sub>BAD</sub> promoter expressed under the 0.003% arabinose concentration.
 
                                     </div>
 
                                     </div>
  
Line 431: Line 423:
 
                                     </div>
 
                                     </div>
 
                                     <div>
 
                                     <div>
                                         In order to know the exact concentration of inhibitor under the different concentrations of arabinose. In E.coli Top10, we used the RFP to replace the inhibitor gene, so we can use RFP to reflect the inhibitor when we added the same concentration of arabinose.
+
                                         In order to know the exact concentration of inhibitor under the different concentrations of arabinose. In E.coli Top10, we used the RFP to replace the inhibitor gene (Fig. 5), so we can use RFP to reflect the inhibitor when we added the same concentration of arabinose.
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
Line 439: Line 431:
 
                                         </div>
 
                                         </div>
 
                                         <div class="pic_info">
 
                                         <div class="pic_info">
                                             <b>Fig.6</b> The circuit constructed to measure the inhibitor concentration, inhibitor is replaced by RFP.
+
                                             <b>Fig.5</b> The circuit constructed to measure the inhibitor concentration, inhibitor is replaced by RFP.
 
                                         </div>
 
                                         </div>
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
                                         At first, we also use the modeling to simulate this circuit get the curve about relationship between the arabinose added and protein intensity. We got the curve below (Fig. 7):
+
                                         At first, we also use the modeling to simulate this circuit get the curve about relationship between the arabinose added and protein intensity. We got the curve below (Fig. 6):
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
Line 451: Line 443:
 
                                         </div>
 
                                         </div>
 
                                         <div class="pic_info">
 
                                         <div class="pic_info">
                                             <b>Fig. 7</b> The concentration of inhibitor expressed by PBAD changes with different concentrations of inducer.
+
                                             <b>Fig. 6</b> The concentration of inhibitor expressed by PBAD changes with different concentrations of inducer.
 
                                         </div>
 
                                         </div>
 
                                     </div>
 
                                     </div>
Line 483: Line 475:
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
                                         We draw the diagram about RFP intensity/OD600 and time under different concentrations of arabinose (Fig. 8).
+
                                         We draw the diagram about RFP intensity/OD600 and time under different concentrations of arabinose (Fig. 7).
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
Line 491: Line 483:
 
                                         </div>
 
                                         </div>
 
                                         <div class="pic_info">
 
                                         <div class="pic_info">
                                             <b>Fig. 8</b> The relationship between the fluorescence/OD600 and time
+
                                             <b>Fig. 7</b> The relationship between the fluorescence/OD600 and time
 
                                         </div>
 
                                         </div>
 
                                     </div>
 
                                     </div>
Line 498: Line 490:
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
                                         Then we collect the data after passing 11.3 hours from Fig. 8 to draw the diagram about the relationship between RFP intensity/OD600 and arabinose concentration (Fig. 9).
+
                                         Then we collect the data after passing 11.3 hours from Fig. 8 to draw the diagram about the relationship between RFP intensity/OD600 and arabinose concentration (Fig. 8).
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
Line 506: Line 498:
 
                                         </div>
 
                                         </div>
 
                                         <div class="pic_info">
 
                                         <div class="pic_info">
                                             <b>Fig. 9</b> The relationship between the fluorescence/OD600 and the concentration of arabinose
+
                                             <b>Fig. 8</b> The relationship between the fluorescence/OD600 and the concentration of arabinose
 
                                         </div>
 
                                         </div>
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
                                         From this diagram, we can get the conclusion that more arabinose, more RFP (stands for inhibitor) will be expressed.
+
                                         From this diagram, we can get the conclusion that the concentration of arabinose have a positive correlation with RFP intensity/OD600.
 
                                     </div>
 
                                     </div>
  
Line 525: Line 517:
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
 
                                         <div class="pic_info">
 
                                         <div class="pic_info">
                                             <b>Table 1.</b> The copy numbers of different plasmids.
+
                                             <b>Table 3.</b> The copy numbers of different plasmids.
 
                                         </div>
 
                                         </div>
 
                                         <div>
 
                                         <div>
Line 533: Line 525:
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
                                         The fragments below (Fig. 1) containing constitutive promoter to express inhibitor.
+
                                         The fragments below (Fig. 9) containing constitutive promoter to express inhibitor.
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
Line 541: Line 533:
 
                                         </div>
 
                                         </div>
 
                                         <div class="pic_info">
 
                                         <div class="pic_info">
                                             <b>Fig.1</b> The circuit constructed to detect the inhibitor protein and the strengths of different promoters.
+
                                             <b>Fig.9</b> The circuit constructed to detect the inhibitor protein and the strengths of different promoters.
 
                                         </div>
 
                                         </div>
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
                                         In order to detect the inhibitor protein more easily, we replace the inhibitor with RFP like circuits below (Fig. 2)
+
                                         In order to detect the inhibitor protein more easily, we replace the inhibitor with RFP like circuits below (Fig. 10)
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
Line 553: Line 545:
 
                                         </div>
 
                                         </div>
 
                                         <div class="pic_info">
 
                                         <div class="pic_info">
                                             <b>Fig. 2</b> The fragments constructed on different plasmids
+
                                             <b>Fig. 10</b> The fragments constructed on different plasmids
 
                                         </div>
 
                                         </div>
 
                                     </div>
 
                                     </div>
Line 560: Line 552:
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
                                         At first, because it’s hard to control the number of plasmids, we use the model to simulate the relationship between the plasmids number and inhibitor protein.
+
                                         At first, because it’s hard to control the number of plasmids, we use the model to simulate the relationship between the plasmids number and inhibitor protein (Fig. 11).
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
Line 568: Line 560:
 
                                         </div>
 
                                         </div>
 
                                         <div class="pic_info">
 
                                         <div class="pic_info">
                                             <b>Fig. 3</b> The relationship between the protein intensity and the number of plasmids.
+
                                             <b>Fig. 11</b> The relationship between the protein intensity and the number of plasmids.
 
                                         </div>
 
                                         </div>
 
                                     </div>
 
                                     </div>
Line 579: Line 571:
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
 
                                         <div class="pic_info">
 
                                         <div class="pic_info">
                                             <b>Table.</b> 2 The form about experimental set up.
+
                                             <b>Table. 4</b> The form about experimental set up.
 
                                         </div>
 
                                         </div>
 
                                         <div>
 
                                         <div>
Line 591: Line 583:
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
 
                                         <div class="pic_info">
 
                                         <div class="pic_info">
                                             <b>Table 3</b>.
+
                                             <b>Table. 5</b>.The RFP intensity of different circuits on different plasmids
 
                                         </div>
 
                                         </div>
 
                                         <div>
 
                                         <div>
 
                                             <img src="https://static.igem.org/mediawiki/2016/c/c2/T--BIT-China--Project--Results--Threshold--3table3.png"
 
                                             <img src="https://static.igem.org/mediawiki/2016/c/c2/T--BIT-China--Project--Results--Threshold--3table3.png"
                                                 alt="3table3" style="height: 200px" class="center-block">
+
                                                 alt="3table3" style="height: 150px" class="center-block">
 
                                         </div>
 
                                         </div>
 
                                     </div>
 
                                     </div>
 
+
                                    <div class="block-paragraph">
 +
                                        From the table. 5, we can know that different plasmids copy numbers will lead to different RFP intensity. More plasmids copies, more RFP expressed.
 +
                                    </div>
 +
                                    <div class="block-paragraph">
 +
                                        At the same time, we constructed the constitutive promoter with in-promoter (Fig. 12) on the plasmids with different copy numbers to see the express of the RFP started by in-promoter.
 +
                                    </div>
 +
                                    <div class="block-paragraph">
 +
                                        <div><img src="https://static.igem.org/mediawiki/2016/8/80/T--BIT-China--Modeling--hfig1.png" style="height:100px" class="center-block" /></div>
 +
                                        <div class="pic_info"><b>Fig. 12</b> the circuit constructed on different plasmids.</div>
 +
                                    </div>
 
                                     <div class="block-content-header">
 
                                     <div class="block-content-header">
 
                                         4. Employed different RBS and promoters with different strengths to change the inhibitor
 
                                         4. Employed different RBS and promoters with different strengths to change the inhibitor
Line 606: Line 607:
 
                                     </div>
 
                                     </div>
 
                                     <div class="block-paragraph">
 
                                     <div class="block-paragraph">
                                        <div class="pic_info">
+
                                        <div class="pic_info">
                                            <b>Table 1.</b> The strengths and efficiencies of different promoters and RBS
+
                                            <b>Table 6.</b> The strengths and efficiencies of different promoters and RBS
                                        </div>
+
                                        </div>
 
                                         <div>
 
                                         <div>
 
                                             <img src="https://static.igem.org/mediawiki/2016/7/77/T--BIT-China--Project--Results--Threshold--table1.png"
 
                                             <img src="https://static.igem.org/mediawiki/2016/7/77/T--BIT-China--Project--Results--Threshold--table1.png"
Line 618: Line 619:
 
                                         </div>
 
                                         </div>
 
                                         <div class="pic_info">
 
                                         <div class="pic_info">
                                             <b>Fig. 1</b> Constitutive circuits to reappear the threshold concentration of inhibitors. Only few will be selected and used to prove the concept of plasmid sensing.
+
                                             <b>Fig. 13</b> Constitutive circuits to reappear the threshold concentration of inhibitors. Only few will be selected and used to prove the concept of plasmid sensing.
 
                                         </div>
 
                                         </div>
 
                                     </div>
 
                                     </div>
                                     <div>
+
                                     <div class="block-paragraph">
 
+
                                        <b>
 +
                                            By now, we can give you a summary. By combining with our modeling part, we have successfully proved that:
 +
                                        </b>
 +
                                    </div>
 +
                                    <div class="block-paragraph-padding">
 +
                                        (1) The plasmid copies can affect the concentration of inhibitor in the constitutive circuit.
 +
                                        <br>(2) The concentration of inhibitor can affect the in-promoter’s activity and affect the expression of killer gene in the end.
 +
                                        <br>(3) Our system can help the cell sense the number of plasmids.
 +
                                        <br>(4) The number of plasmids can affect the expression of killer gene.
 +
                                    </div>
 +
                                    <div class="block-paragraph">
 +
                                        When the plasmid number is above its threshold, the concentration of inhibitor being high enough, the killer gene can be repressed completely.
 +
                                    </div>
 +
                                    <div class="block-paragraph">
 +
                                        When the plasmid number is below the threshold, the inhibitor won’t work anymore, the killer can get the chance.
 
                                     </div>
 
                                     </div>
 
                                 </div>
 
                                 </div>
 
 
 
                             </div>
 
                             </div>
 
 
                         </div>
 
                         </div>
 
                     </div>
 
                     </div>
Line 838: Line 850:
 
                                 </a>
 
                                 </a>
 
                             </div>
 
                             </div>
                             <div id="collapse2" class="panel-collapse collapse"
+
                             <div id="collapse2" class="panel-collapse collapsed"
 
                                 role="tabpanel" aria-labelledby="heading2">
 
                                 role="tabpanel" aria-labelledby="heading2">
 
                                 <div class="block-title" style="padding: 5px;font-size: 1.2em">
 
                                 <div class="block-title" style="padding: 5px;font-size: 1.2em">

Revision as of 22:38, 19 October 2016

backtop
content_decoration
title
Threshold device
In the threshold device, we need to prove that the in-promoter will have different responses corresponding to different plasmid numbers. In our project, we use the inhibitor protein as the signal. We combined the wet experiment results and the mathematical model to prove our system can work in order. We divided it into two main goals:
(1) To prove that inhibitor’s concentration can regulate the expression of the killer gene by affecting its in-promoter.
(2) To prove that plasmid numbers will influence the inhibitor concentration
Results:
1. Simulated the production of inhibitors with different concentrations by adding different concentrations of arabinose
2. Found out the concentrations of inhibitor under different concentrations of arabinose and used the results to derive the threshold of plasmids number in the constitutive circuit.
3. Employed plasmids with different copy numbers and simulated the concentrations of plasmids losing on different levels
4. Employed different RBS and promoters with different strengths to change the inhibitor concentration

Killer device
Since the lethal efficiency of killer genes will decide the capacity of general circuit, so we have to:
1. Prove that the toxin protein we selected can successfully express and the lethal effect is obvious
2. Adjust the translation efficiency of toxin proteins through replace ribosome binding site (RBS), thus to adjust the threshold
3. Construct gene circuits connecting killer device and inhibitor device
4. Find another possible way to produce the lethal effect
Results:
1. Successfully constructed the testing circuits of toxin proteins [Part: BBa_K2120002 and Part: BBa_K2120003]
2. After transformation, we measured the OD600 to draw the growth curve and observed the function of toxin protein.
3. In addition to B0032, we selected a stronger RBS B0034 and a weaker one B0031. Through measuring OD600, we demonstrated that we can adjust the lethal efficiency through replacing RBS.
4. Successfully constructed the testing circuit of toxin proteins according to two kinds of inhibitors. [For example, Part: BBa_K2120400]
5. Tested the lethal effect of producing DSB through coupling sgRNA and Cas9

Recombination
Aim
Considering the factor of the potential deficiency of executor killer due to the completely lost of plasmids and the number of "in-promoters" will affect our system, we decide to integrate the killer device into the genome. This group mainly provided a tool for genome integration. The insertion fragment is our testing device, including the expression cassette of rfp and killer gene. With this recombination system, we can get the upgraded type of our P-SLACKiller.
Results
1. Coupled CRISPR/Cas9 system with λ-Red recombineering to integrate the donor fragments, but we haven’t finished the second plasmid construction
2. Tried the traditional lambda Red recombination and successfully inserted four testing devices into the genome, locus of LacI.

Site-directed promoter mutation
We have two combinations of inhibitor and "in-promoter": TetR-PTet, CI-PR. The strength of "in-promoter" will decide the expression level of killer gene. Directly applied these two combinations, we got the initial threshold. In order to adjust the threshold, we planned to mutate the "in-promoter" and got mutants with various strengths. We chose PTet as our target promoter. Through literature research, we chose the -35 region as our mutation region. We mainly used RFP to indicate the promoter strength in our wet experiment.
Results
1. Tried to use one-step mutation, but because of the secondary structure of promoters, we didn’t get positive results
2. Built a library of mutated PTet promoters and characterized the promoter activity through measuring the red fluorescence intensity
3. Selected 4 mutants and got the successful sequencing results