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<h2 id="vbid-50f65714-7tigyyyk" class="preview-element preview-title magic-circle-holder inner-page text-element quick-text-style-menu  allow-mobile-hide" data-menu-name="PREVIEW_TITLE" >08/02/2017</h2>
 
 
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<p dir="ltr">On August 2 and 8, 2017, Keshava Katti and Kian Croston ran two ticket assays to determine the effect of adjusting plasmid DNA proportionality. The past two tickets contained equal proportions of PcArsR and PARsGFP (1:1 ratio).</p><p><br></p><p dir="ltr">The Cadets2Vets team set up two tickets, positive and negative tests, on August 2. The positive ticket tested the dosage response at varied volumes of arsenic water; the negative ticket substituted all instances of arsenic water with molecular water.</p><p><br></p><p dir="ltr">Column 1: 2uL Master Mix + 2uL water (molec/arsenic)</p><p dir="ltr">Column 2: 2uL Master Mix + 4uL water (molec/arsenic)</p><p dir="ltr">Column 3: 2uL Master Mix + 6uL water (molec/arsenic)</p><p dir="ltr">Column 4: 2uL Master Mix</p><p><br></p><div dir="ltr"><table><colgroup><col><col></colgroup><tbody><tr><td><p dir="ltr">Positive Master Mix contained:</p><p dir="ltr">12 uL S30 Extract<br>16 uL S30 Promega<br>4 uL amino (-Cys)<br>0.8 uL amino (-Leu)<br>3.2 uL arsenic water<br>4 uL of PcArsR + Ars1.1 circuit plasmid</p></td><td><p dir="ltr">Negative Master Mix contained:</p><p dir="ltr">12 uL S30 Extract<br>16 uL S30 Promega<br>4 uL amino (-Cys)<br>0.8 uL amino (-Leu)<br>3.2 uL molecular water<br>4 uL of PcArsR + Ars1.1 circuit plasmid</p></td></tr></tbody></table></div><p style="text-align: center;"><span id="docs-internal-guid-5c4adf87-1800-2b98-5787-8f159a7e8ed8"><img width="278" height="139" style="border: none; transform: rotate(0.00rad); -webkit-transform: rotate(0.00rad);" data-cke-saved-src="https://lh4.googleusercontent.com/6RPqiUatDGgxiG7XdwpdN2SRNWvltwiSoAaOtpPaC03GExOSYG4SgshZ14NLxlsutBT4Nh8_dr2GqTWvuFbAAsCQhm-EFwgf_P1XAYE1BMDpqxpSL6_WaKC5aD0hJ_QjTQ1aLnxJ" src="https://lh4.googleusercontent.com/6RPqiUatDGgxiG7XdwpdN2SRNWvltwiSoAaOtpPaC03GExOSYG4SgshZ14NLxlsutBT4Nh8_dr2GqTWvuFbAAsCQhm-EFwgf_P1XAYE1BMDpqxpSL6_WaKC5aD0hJ_QjTQ1aLnxJ"></span></p><p style="text-align: center;"><br></p><p dir="ltr">The image (above) shows the results of our tickets. As expected, our control ticket with no arsenic displayed no GFP expression. On the other hand, our positive ticket showed the same lack of fluorescence, which was attributed to the excess regulatory protein. Unfortunately, the Cadets2Vets did not realize that Ars1.1 was actually causing an increased production in regulatory protein until after our fourth ticket assay on August 8.</p><div><br></div><p dir="ltr">Team Cadets2Vets created 8uL of PcArsR + Ars1.1 plasmid DNA by combining 5.33uL of Ars1.1 and 2.67uL of PcArsR (2:1 ratio, respectively). There was a fundamental misunderstanding behind this combination. Our team believed that Ars1.1 was our GFP-producing plasmid DNA; in reality, Ars1.1 was our constitutive promoter, producing our ArsR regulatory protein, and GFP plasmid DNA combined.</p><p><br></p><p dir="ltr">The original idea was to increase the amount of promoter binding sites for ArsR, which is how GFP expression is regulated in the arsenic circuit. The additional PArsGFP plasmid was supposed to prevent ArsR from being free in solution and binding to free arsenic ions, thereby unintentionally sequestering our arsenic ions and ArsR proteins away from the regulatory mechanism we designed. Instead, we accidentally ended up increasing the amount of constitutive promoter DNA (Ars1.1 added unwanted constitutive promoter DNA), thereby increasing the overall production of ArsR regulatory protein.The image (left) shows the results of our tickets. As expected, our control ticket with no arsenic displayed no GFP expression. On the other hand, our positive ticket showed the same lack of fluorescence, which was attributed to the excess regulatory protein. Unfortunately, the Cadets2Vets did not realize that Ars1.1 was actually causing an increased production in regulatory protein until after our fourth ticket assay on August 8.</p>
 
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<p>​Fluorescein standard curve repeat.</p><p dir="ltr">Fluorescein stock tube spun down. Prepared 2x fluorescein stock solution by adding 1 mL of PBS. Combined 500 µL of 2x fluorescein stock solution and 500 µL 1x PBS 1xPBS to make a 1x fluorescein solution.</p><p><br></p><p dir="ltr">iGEM Fluorescein standard curve method followed (dilution series over A-D, 1-12 on 96 well plate).</p><p><br></p><p dir="ltr">Plate read on FilterMax F5 Multi-Mode Microplate Reader:</p><p><br></p><div dir="ltr"><table><colgroup><col><col><col><col><col><col><col><col><col><col><col><col><col></colgroup><tbody><tr><td><br></td><td><p dir="ltr">1</p></td><td><p dir="ltr">2</p></td><td><p dir="ltr">3</p></td><td><p dir="ltr">4</p></td><td><p dir="ltr">5</p></td><td><p dir="ltr">6</p></td><td><p dir="ltr">7</p></td><td><p dir="ltr">8</p></td><td><p dir="ltr">9</p></td><td><p dir="ltr">10</p></td><td><p dir="ltr">11</p></td><td><p dir="ltr">12</p></td></tr><tr><td><p dir="ltr">A</p></td><td><p dir="ltr">1.1e9</p></td><td><p dir="ltr">8.8e8</p></td><td><p dir="ltr">6.0e8</p></td><td><p dir="ltr">3.2e8</p></td><td><p dir="ltr">2.0e8</p></td><td><p dir="ltr">1.0e8</p></td><td><p dir="ltr">5.0e7</p></td><td><p dir="ltr">2.5e7</p></td><td><p dir="ltr">1.3e7</p></td><td><p dir="ltr">6.4e6</p></td><td><p dir="ltr">3.1e6</p></td><td><p dir="ltr">8.7e4</p></td></tr><tr><td><p dir="ltr">B</p></td><td><p dir="ltr">1.2e9</p></td><td><p dir="ltr">7.8e8</p></td><td><p dir="ltr">6.1e8</p></td><td><p dir="ltr">3.4e8</p></td><td><p dir="ltr">1.7e8</p></td><td><p dir="ltr">9.2e7</p></td><td><p dir="ltr">4.5e7</p></td><td><p dir="ltr">2.2e7</p></td><td><p dir="ltr">1.1e7</p></td><td><p dir="ltr">5.5e6</p></td><td><p dir="ltr">2.7e6</p></td><td><p dir="ltr">7.6e4</p></td></tr><tr><td><p dir="ltr">C</p></td><td><p dir="ltr">1.2e9</p></td><td><p dir="ltr">8.8e8</p></td><td><p dir="ltr">5.8e8</p></td><td><p dir="ltr">3.4e8</p></td><td><p dir="ltr">1.8e8</p></td><td><p dir="ltr">9.4e7</p></td><td><p dir="ltr">4.7e7</p></td><td><p dir="ltr">2.4e7</p></td><td><p dir="ltr">1.2e7</p></td><td><p dir="ltr">5.7e6</p></td><td><p dir="ltr">2.9e6</p></td><td><p dir="ltr">7.6e4</p></td></tr><tr><td><p dir="ltr">D</p></td><td><p dir="ltr">1.2e9</p></td><td><p dir="ltr">8.6e8</p></td><td><p dir="ltr">5.4e8</p></td><td><p dir="ltr">3.8e8</p></td><td><p dir="ltr">1.9e8</p></td><td><p dir="ltr">9.6e7</p></td><td><p dir="ltr">4.9e7</p></td><td><p dir="ltr">2.4e7</p></td><td><p dir="ltr">1.2e7</p></td><td><p dir="ltr">5.9e6</p></td><td><p dir="ltr">3.0e6</p></td><td><p dir="ltr">7.6e4</p></td></tr></tbody></table></div><p><br></p><p dir="ltr">Overnight cultures started:</p><p><br></p><p dir="ltr">Two colonies from positive, negative and TD1-6 inoculated in 10 mL of LB + CAT broth in 50 mL Falcon tube. Duplicates made. Falcon tubes placed in shaker overnight at 37C and 220 RPM.</p><p><br></p><p dir="ltr"><img alt="Fluorescein standard curve charts.png" data-cke-saved-src="https://lh5.googleusercontent.com/KCUy3hBf7IWYeLs914mYcGqhtoaq1tNe6p4quMsiK4-XRrZJOT8uN3zCGH44j2wMAsULWD2sWG6_YD_aGC96FJSwkinx3afMOB4VZw5ZejqS6WBAGUdOVeHW9mF5eKLqwnU1adX8" src="https://lh5.googleusercontent.com/KCUy3hBf7IWYeLs914mYcGqhtoaq1tNe6p4quMsiK4-XRrZJOT8uN3zCGH44j2wMAsULWD2sWG6_YD_aGC96FJSwkinx3afMOB4VZw5ZejqS6WBAGUdOVeHW9mF5eKLqwnU1adX8"></p><div><br></div>
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<p>​Fluorescein standard curve repeat.</p><p dir="ltr">Fluorescein stock tube spun down. Prepared 2x fluorescein stock solution by adding 1 mL of PBS. Combined 500 µL of 2x fluorescein stock solution and 500 µL 1x PBS 1xPBS to make a 1x fluorescein solution.</p><p><br></p><p dir="ltr">iGEM Fluorescein standard curve method followed (dilution series over A-D, 1-12 on 96 well plate).</p><p><br></p><p dir="ltr">Plate read on FilterMax F5 Multi-Mode Microplate Reader:</p><p><br></p><div dir="ltr"><table><colgroup><col><col><col><col><col><col><col><col><col><col><col><col><col></colgroup><tbody><tr><td><br></td><td><p dir="ltr">1</p></td><td><p dir="ltr">2</p></td><td><p dir="ltr">3</p></td><td><p dir="ltr">4</p></td><td><p dir="ltr">5</p></td><td><p dir="ltr">6</p></td><td><p dir="ltr">7</p></td><td><p dir="ltr">8</p></td><td><p dir="ltr">9</p></td><td><p dir="ltr">10</p></td><td><p dir="ltr">11</p></td><td><p dir="ltr">12</p></td></tr><tr><td><p dir="ltr">A</p></td><td><p dir="ltr">1.1e9</p></td><td><p dir="ltr">8.8e8</p></td><td><p dir="ltr">6.0e8</p></td><td><p dir="ltr">3.2e8</p></td><td><p dir="ltr">2.0e8</p></td><td><p dir="ltr">1.0e8</p></td><td><p dir="ltr">5.0e7</p></td><td><p dir="ltr">2.5e7</p></td><td><p dir="ltr">1.3e7</p></td><td><p dir="ltr">6.4e6</p></td><td><p dir="ltr">3.1e6</p></td><td><p dir="ltr">8.7e4</p></td></tr><tr><td><p dir="ltr">B</p></td><td><p dir="ltr">1.2e9</p></td><td><p dir="ltr">7.8e8</p></td><td><p dir="ltr">6.1e8</p></td><td><p dir="ltr">3.4e8</p></td><td><p dir="ltr">1.7e8</p></td><td><p dir="ltr">9.2e7</p></td><td><p dir="ltr">4.5e7</p></td><td><p dir="ltr">2.2e7</p></td><td><p dir="ltr">1.1e7</p></td><td><p dir="ltr">5.5e6</p></td><td><p dir="ltr">2.7e6</p></td><td><p dir="ltr">7.6e4</p></td></tr><tr><td><p dir="ltr">C</p></td><td><p dir="ltr">1.2e9</p></td><td><p dir="ltr">8.8e8</p></td><td><p dir="ltr">5.8e8</p></td><td><p dir="ltr">3.4e8</p></td><td><p dir="ltr">1.8e8</p></td><td><p dir="ltr">9.4e7</p></td><td><p dir="ltr">4.7e7</p></td><td><p dir="ltr">2.4e7</p></td><td><p dir="ltr">1.2e7</p></td><td><p dir="ltr">5.7e6</p></td><td><p dir="ltr">2.9e6</p></td><td><p dir="ltr">7.6e4</p></td></tr><tr><td><p dir="ltr">D</p></td><td><p dir="ltr">1.2e9</p></td><td><p dir="ltr">8.6e8</p></td><td><p dir="ltr">5.4e8</p></td><td><p dir="ltr">3.8e8</p></td><td><p dir="ltr">1.9e8</p></td><td><p dir="ltr">9.6e7</p></td><td><p dir="ltr">4.9e7</p></td><td><p dir="ltr">2.4e7</p></td><td><p dir="ltr">1.2e7</p></td><td><p dir="ltr">5.9e6</p></td><td><p dir="ltr">3.0e6</p></td><td><p dir="ltr">7.6e4</p></td></tr></tbody></table></div><p><br></p><p dir="ltr">Overnight cultures started:</p><p><br></p><p dir="ltr">Two colonies from positive, negative and TD1-6 inoculated in 10 mL of LB + CAT broth in 50 mL Falcon tube. Duplicates made. Falcon tubes placed in shaker overnight at 37C and 220 RPM.</p><p><br></p><p dir="ltr"><img alt="Fluorescein standard curve charts.png" data-cke-saved-src="https://static.igem.org/mediawiki/2017/e/e7/C2V_Interlab_Pic3Data.jpeg" src="https://static.igem.org/mediawiki/2017/e/e7/C2V_Interlab_Pic3Data.jpeg"></p><div><br></div>
 
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<p dir="ltr">Interlab protocols for Day 3. Took a 100uL sample from each tube and placed them in a row on a 96 well plate, for initial dilution table. “A” samples deposited into respective rows 1-8 a ninth well used as a control with LB+CAT sample; this was repeated for the “B” row samples. Running the plate in the plate reader using ABS setting 595nm. The resulting measurement was placed in Interlab Dilution table to determine dilution into a 12mL Solution.</p><p><br><br></p><div dir="ltr"><table><colgroup><col><col><col><col></colgroup><tbody><tr><td><p dir="ltr">target Abs600</p></td><td><br></td><td><p dir="ltr">0.02</p></td><td><br></td></tr><tr><td><p dir="ltr">target volume (mL)</p></td><td><br></td><td><p dir="ltr">12</p></td><td><br></td></tr><tr><td><p dir="ltr">sample</p></td><td><p dir="ltr">Abs600 Reading</p></td><td><p dir="ltr">Volume of Preloading Culture</p></td><td><p dir="ltr">Volume of Preloading Media</p></td></tr><tr><td><p dir="ltr">positive control</p></td><td><p dir="ltr">0.523</p></td><td><p dir="ltr">0.490797546</p></td><td><p dir="ltr">11.50920245</p></td></tr><tr><td><p dir="ltr">negative control</p></td><td><p dir="ltr">0.469</p></td><td><p dir="ltr">0.5517241379</p></td><td><p dir="ltr">11.44827586</p></td></tr><tr><td><p dir="ltr">device 1</p></td><td><p dir="ltr">0.457</p></td><td><p dir="ltr">0.5673758865</p></td><td><p dir="ltr">11.43262411</p></td></tr><tr><td><p dir="ltr">device 2</p></td><td><p dir="ltr">0.484</p></td><td><p dir="ltr">0.5333333333</p></td><td><p dir="ltr">11.46666667</p></td></tr><tr><td><p dir="ltr">device 3</p></td><td><p dir="ltr">0.45</p></td><td><p dir="ltr">0.5769230769</p></td><td><p dir="ltr">11.42307692</p></td></tr><tr><td><p dir="ltr">device 4</p></td><td><p dir="ltr">0.461</p></td><td><p dir="ltr">0.5620608899</p></td><td><p dir="ltr">11.43793911</p></td></tr><tr><td><p dir="ltr">device 5</p></td><td><p dir="ltr">0.478</p></td><td><p dir="ltr">0.5405405405</p></td><td><p dir="ltr">11.45945946</p></td></tr><tr><td><p dir="ltr">device 6</p></td><td><p dir="ltr">0.46</p></td><td><p dir="ltr">0.5633802817</p></td><td><p dir="ltr">11.43661972</p></td></tr><tr><td><p dir="ltr">media+chl</p></td><td><p dir="ltr">0.034</p></td><td><br></td><td><br></td></tr></tbody></table></div><p><br><br></p><p dir="ltr">We covered 16 new 50 mL falcon tubes in tin foil to block ambient light and labeled. Following the instructions of the interlab dilution table above, we added mostly LB broth+ CAT (media) solution and a sample from the overnight cultures of each culture in their respective counterpart. Total solution equaling 12 mL.</p><p><br></p><p dir="ltr">Took 500uL of each culture and placed them in their own 1.5mL microcentrifuge tube, storing them in ice. This is time 0hr time point. Then began the time sequence, repeating the same process taking samples at 2hrs, 4hrs, and 6hrs.</p><p><br></p><p dir="ltr">Plated each hour collection as shown in the diagram below, of Interlab Protocol into plates, one plate per hour time point for the plate reader. Ran each plate through first for ABS at setting 595nm. Then ran it through for fluorescence Excitation 485nm, and Emission 535 Recorded chart numbers down on team drive</p><p><br></p><p dir="ltr"><img alt="interlab plate diagram 1.png" data-cke-saved-src="https://lh5.googleusercontent.com/9FEgmJ9ZbgmGykdyPsaMbJ4xBt4_bMu7O-h2cccTvqBLN24UvYVJaVe4sGbiQR3ODIbMMwpisxt62P4bPdxp6hXxeeHzxlD5hOEcu8Q3GspsxigMIA8l8k4nZV1bV9-Noa4osnmE" src="https://lh5.googleusercontent.com/9FEgmJ9ZbgmGykdyPsaMbJ4xBt4_bMu7O-h2cccTvqBLN24UvYVJaVe4sGbiQR3ODIbMMwpisxt62P4bPdxp6hXxeeHzxlD5hOEcu8Q3GspsxigMIA8l8k4nZV1bV9-Noa4osnmE"></p><p><br></p><p dir="ltr">Copied the resulting data points from the plate reader program into the table provided by Interlab project. Resulting example of the table below.</p><p><br></p><p dir="ltr"><img alt="Interlab exel plate read table.png" data-cke-saved-src="https://lh4.googleusercontent.com/U7mOIGCbxZIKwzrra1O105hYsgDJpwGCr1a45AV_FeMh8T2H59_LKl3a48ymHdSz07m_4HEnq2c5Z5YyssRq99bhxTF3Yp4cjx_BFj8_0Q_2FZg4mn8RYZxP9peNcU3V3gVq_KwB" src="https://lh4.googleusercontent.com/U7mOIGCbxZIKwzrra1O105hYsgDJpwGCr1a45AV_FeMh8T2H59_LKl3a48ymHdSz07m_4HEnq2c5Z5YyssRq99bhxTF3Yp4cjx_BFj8_0Q_2FZg4mn8RYZxP9peNcU3V3gVq_KwB"></p><div><br></div>
+
<p dir="ltr">Interlab protocols for Day 3. Took a 100uL sample from each tube and placed them in a row on a 96 well plate, for initial dilution table. “A” samples deposited into respective rows 1-8 a ninth well used as a control with LB+CAT sample; this was repeated for the “B” row samples. Running the plate in the plate reader using ABS setting 595nm. The resulting measurement was placed in Interlab Dilution table to determine dilution into a 12mL Solution.</p><p><br><br></p><div dir="ltr"><table><colgroup><col><col><col><col></colgroup><tbody><tr><td><p dir="ltr">target Abs600</p></td><td><br></td><td><p dir="ltr">0.02</p></td><td><br></td></tr><tr><td><p dir="ltr">target volume (mL)</p></td><td><br></td><td><p dir="ltr">12</p></td><td><br></td></tr><tr><td><p dir="ltr">sample</p></td><td><p dir="ltr">Abs600 Reading</p></td><td><p dir="ltr">Volume of Preloading Culture</p></td><td><p dir="ltr">Volume of Preloading Media</p></td></tr><tr><td><p dir="ltr">positive control</p></td><td><p dir="ltr">0.523</p></td><td><p dir="ltr">0.490797546</p></td><td><p dir="ltr">11.50920245</p></td></tr><tr><td><p dir="ltr">negative control</p></td><td><p dir="ltr">0.469</p></td><td><p dir="ltr">0.5517241379</p></td><td><p dir="ltr">11.44827586</p></td></tr><tr><td><p dir="ltr">device 1</p></td><td><p dir="ltr">0.457</p></td><td><p dir="ltr">0.5673758865</p></td><td><p dir="ltr">11.43262411</p></td></tr><tr><td><p dir="ltr">device 2</p></td><td><p dir="ltr">0.484</p></td><td><p dir="ltr">0.5333333333</p></td><td><p dir="ltr">11.46666667</p></td></tr><tr><td><p dir="ltr">device 3</p></td><td><p dir="ltr">0.45</p></td><td><p dir="ltr">0.5769230769</p></td><td><p dir="ltr">11.42307692</p></td></tr><tr><td><p dir="ltr">device 4</p></td><td><p dir="ltr">0.461</p></td><td><p dir="ltr">0.5620608899</p></td><td><p dir="ltr">11.43793911</p></td></tr><tr><td><p dir="ltr">device 5</p></td><td><p dir="ltr">0.478</p></td><td><p dir="ltr">0.5405405405</p></td><td><p dir="ltr">11.45945946</p></td></tr><tr><td><p dir="ltr">device 6</p></td><td><p dir="ltr">0.46</p></td><td><p dir="ltr">0.5633802817</p></td><td><p dir="ltr">11.43661972</p></td></tr><tr><td><p dir="ltr">media+chl</p></td><td><p dir="ltr">0.034</p></td><td><br></td><td><br></td></tr></tbody></table></div><p><br><br></p><p dir="ltr">We covered 16 new 50 mL falcon tubes in tin foil to block ambient light and labeled. Following the instructions of the interlab dilution table above, we added mostly LB broth+ CAT (media) solution and a sample from the overnight cultures of each culture in their respective counterpart. Total solution equaling 12 mL.</p><p><br></p><p dir="ltr">Took 500uL of each culture and placed them in their own 1.5mL microcentrifuge tube, storing them in ice. This is time 0hr time point. Then began the time sequence, repeating the same process taking samples at 2hrs, 4hrs, and 6hrs.</p><p><br></p><p dir="ltr">Plated each hour collection as shown in the diagram below, of Interlab Protocol into plates, one plate per hour time point for the plate reader. Ran each plate through first for ABS at setting 595nm. Then ran it through for fluorescence Excitation 485nm, and Emission 535 Recorded chart numbers down on team drive</p><p><br></p><p dir="ltr"><img alt="interlab plate diagram 1.png" data-cke-saved-src="https://static.igem.org/mediawiki/2017/3/35/C2V_Interlab_Header.png" src="https://static.igem.org/mediawiki/2017/3/35/C2V_Interlab_Header.png"></p><p><br></p><p dir="ltr">Copied the resulting data points from the plate reader program into the table provided by Interlab project. Resulting example of the table below.</p><p><br></p><p dir="ltr"><img alt="Interlab exel plate read table.png" data-cke-saved-src="https://static.igem.org/mediawiki/2017/0/03/C2V_Interlab_Pic4Data.jpeg" src="https://static.igem.org/mediawiki/2017/0/03/C2V_Interlab_Pic4Data.jpeg"></p><div><br></div>
 
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Latest revision as of 03:42, 1 November 2017


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