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<div class="box3 left biosafety" href="https://2017.igem.org/Team:TAS_Taipei/Safety"> | <div class="box3 left biosafety" href="https://2017.igem.org/Team:TAS_Taipei/Safety"> | ||
− | <h1> | + | <h1>Safety</h1> |
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<div class="box3 left about" href="https://2017.igem.org/Team:TAS_Taipei/Team"> | <div class="box3 left about" href="https://2017.igem.org/Team:TAS_Taipei/Team"> | ||
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<header> | <header> | ||
<div class="row"> | <div class="row"> | ||
− | <h1 class="name col-lg-12">IMPROVE</h1> | + | <h1 class="name col-lg-12">IMPROVE AN EXISTING PART</h1> |
</div> | </div> | ||
<div class="row"> | <div class="row"> | ||
<h4 class="para col-lg-12"> | <h4 class="para col-lg-12"> | ||
− | Our <b>new composite part BBa_K2229300</b> improves the function of <b>two existing parts: BBa_K342003 (<i>ompR234</i> ORF) and BBa_K805015 (<i>csgD</i> ORF).</b> CsgD and OmpR234 are regulators of two curli operons, which contribute to biofilm formation. When both proteins are overexpressed, we hypothesized that twice the amount of curli monomers should be made and exported to form fibers and biofilm. When we compared protein expression using SDS-PAGE, we found that <b>BBa_K2229300 stimulated the expression of more curli proteins compared to samples that only expressed CsgD or OmpR234 alone.</b> Using Congo Red, a dye commonly used to measure biofilm production, we also found that overexpression of both OmpR234 and CsgD <b>(BBa_K2229300) increased biofilm production and adhesion to glass coverslips</b> the most. These results show that the combination of BBa_K342003 and BBa_K805015 in a new composite part improves the individual functions, and BBa_K2229300 increases the yield of biofilm production. | + | Our <b>new composite part <a href="http://parts.igem.org/Part:BBa_K2229300">BBa_K2229300</a></b> improves the function of <b>two existing parts: <a href="http://parts.igem.org/Part:BBa_K342003">BBa_K342003</a> (<i>ompR234</i> ORF) and <a href="http://parts.igem.org/Part:BBa_K805015">BBa_K805015</a> (<i>csgD</i> ORF).</b> CsgD and OmpR234 are regulators of two curli operons, which contribute to biofilm formation. When both proteins are overexpressed, we hypothesized that twice the amount of curli monomers should be made and exported to form fibers and biofilm. When we compared protein expression using SDS-PAGE, we found that <b>BBa_K2229300 stimulated the expression of more curli proteins compared to samples that only expressed CsgD or OmpR234 alone.</b> Using Congo Red, a dye commonly used to measure biofilm production, we also found that overexpression of both OmpR234 and CsgD <b>(BBa_K2229300) increased biofilm production and adhesion to glass coverslips</b> the most. These results show that the combination of BBa_K342003 and BBa_K805015 in a new composite part improves the individual functions, and BBa_K2229300 increases the yield of biofilm production. |
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</h4> | </h4> | ||
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<div class="row" id="hypo"> | <div class="row" id="hypo"> | ||
− | <h1 class="col-lg-12 title2"> | + | <h1 class="col-lg-12 title2">HYPOTHESIS</h1> |
</div> | </div> | ||
<div class="row"> | <div class="row"> | ||
<div class="image_container col-lg-12"> | <div class="image_container col-lg-12"> | ||
<img src="https://static.igem.org/mediawiki/2017/e/e6/T--TAS_Taipei--figure_3-14-fix-min.jpg" alt="test" id="group"> | <img src="https://static.igem.org/mediawiki/2017/e/e6/T--TAS_Taipei--figure_3-14-fix-min.jpg" alt="test" id="group"> | ||
− | <h4 class="subtitle"><b>Figure 3-14 Overexpression of CsgD and/or OmpR234 upregulates the curli operon to different degrees </b> We | + | <h4 class="subtitle"><b>Figure 3-14 Overexpression of CsgD and/or OmpR234 upregulates the curli operon to different degrees </b> We hypothesized that biofilm production would be upregulated (in increasing order) if we overexpress A) CsgD, B) OmpR234, or C) both.<span class="subCred"> Figure: Justin Y.</span></h4> |
</div> | </div> | ||
</div><br> | </div><br> | ||
<div class="row"> | <div class="row"> | ||
<h4 class="para col-lg-12"> | <h4 class="para col-lg-12"> | ||
− | <b>We hypothesized that biofilm production would be upregulated (in increasing order) if we overexpress CsgD, OmpR234, or both</b> (figure 3-14). Overexpression of CsgD would result in more curli monomers, but no transport proteins to carry the monomers out of the cell. Overexpression of OmpR234 would allow curli monomers to be exported and form fibers and biofilm. Finally, when both CsgD <i>and</i> OmpR234 are overexpressed, twice the amount of curli monomers should be made and exported to form fibers and biofilm. | + | <b>We hypothesized that biofilm production would be upregulated (in increasing order) if we overexpress CsgD, OmpR234, or both</b> (figure 3-14). Overexpression of CsgD would result in more curli monomers, but no transport proteins to carry the monomers out of the cell. Overexpression of OmpR234 would allow curli monomers to be exported and form curli fibers and biofilm. Finally, when both CsgD <i>and</i> OmpR234 are overexpressed, twice the amount of curli monomers should be made and exported to form even more curli fibers and biofilm. |
</h4> | </h4> | ||
</div> | </div> | ||
<div class="row" id="SDS"> | <div class="row" id="SDS"> | ||
− | <h1 class="col-lg-12 | + | <h1 class="col-lg-12 section-title">SDS-PAGE Gel</h1> |
</div> | </div> | ||
<div class="row"> | <div class="row"> | ||
<h4 class="para col-lg-12"> | <h4 class="para col-lg-12"> | ||
− | The original parts, <b>BBa_K342003 (<i>ompR234</i> ORF) and BBa_K805015 (<i>csgD</i> ORF),</b> were cloned into expression devices, Bba_K2229200 and Bba_K2229100, respectively. We observed the expected bands at 25 kDa for CsgD and 27 kDa for OmpR234. Cultures carrying BBa_K2229300 (CsgD and OmpR234 expression), however, showed two extra bands at 15 kDa and 30 kDa, which were not observed in cultures expressing either CsgD or OmpR234 alone. We looked into the other curli operon genes, and found that CsgG is around 30 kDa, whereas CsgA, B, C, E, and F are all around 15 kDa (<i>Robinson et al.</i> 2006; <i>Uhlich et al.</i> 2009; <i>Shu et al.</i> 2012). This suggests that, as expected, BBa_K2229300 stimulates the production of | + | The original parts, <b>BBa_K342003 (<i>ompR234</i> ORF) and BBa_K805015 (<i>csgD</i> ORF),</b> were cloned into expression devices, Bba_K2229200 and Bba_K2229100, respectively. We observed the expected bands at 25 kDa for CsgD and 27 kDa for OmpR234. Cultures carrying BBa_K2229300 (CsgD and OmpR234 expression), however, showed two extra bands at 15 kDa and 30 kDa, which were not observed in cultures expressing either CsgD or OmpR234 alone. We looked into the other curli operon genes, and found that CsgG is around 30 kDa, whereas CsgA, B, C, E, and F are all around 15 kDa (<i>Robinson et al.</i> 2006; <i>Uhlich et al.</i> 2009; <i>Shu et al.</i> 2012). This suggests that, as expected, <b>BBa_K2229300 stimulates the production of other curli proteins as well</b> (predicted proteins and sizes are labeled in figure 3-15). |
</h4> | </h4> | ||
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<div class="image_container col-lg-12"> | <div class="image_container col-lg-12"> | ||
<img src="https://static.igem.org/mediawiki/2017/1/14/T--TAS_Taipei--figure_3-15.jpg" alt="test" id="group"> | <img src="https://static.igem.org/mediawiki/2017/1/14/T--TAS_Taipei--figure_3-15.jpg" alt="test" id="group"> | ||
− | <h4 class="subtitle"><b>Figure 3-15. SDS-PAGE results show that BBa_K2229300 overexpress both CsgD and OmpR234, as well as other proteins from the curli operons.</b> Predicted proteins and sizes are listed on the right | + | <h4 class="subtitle"><b>Figure 3-15. SDS-PAGE results show that BBa_K2229300 overexpress both CsgD and OmpR234, as well as other proteins from the curli operons.</b> Predicted proteins and sizes are listed on the right. <i>E. coli</i> expressing GFP was used as a positive control.<span class="subCred"> Protein Gel & Figure: Justin Y.</span></h4> |
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<h4 class="para col-lg-12"> | <h4 class="para col-lg-12"> | ||
− | After confirming protein expression, we wanted to test if our constructs actually lead to faster and | + | After confirming protein expression, we wanted to test if our constructs actually lead to faster and greater biofilm production. We used <b>Congo Red (CR)</b>, a dye commonly used to measure biofilm production (Reinke & Gestwicki 2011). CR solution mixed with bacterial liquid cultures were transferred to 12-well plates with glass coverslips and incubated at 37˚C for one day. The samples were then washed with Phosphate Buffered Saline (PBS) and dried. Any stained biofilm on the glass coverslips was solubilized in ethanol, and absorbance was measured at 500 nm (figures 3-19). If biofilms were present, the solution would appear red, which could be quantified by an absorbance value. |
</h4> | </h4> | ||
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<div class="image_container col-lg-6"> | <div class="image_container col-lg-6"> | ||
− | <img src="https://static.igem.org/mediawiki/2017/ | + | <img src="https://static.igem.org/mediawiki/2017/7/71/T--TAS_Taipei--3-16_new-min.jpg" alt="test" id="group"> |
<h4 class="subtitle"><b> Figure 3-16: Overexpression of CsgD (BBa_K2229100) doubles biofilm production </b> A) Congo red assay stains biofilm (red). B) Stained biofilm is solubilized in ethanol. C) Absorbance is measured at 500 nm.<span class="subCred"> Experiment & Figure: Yvonne W.</span></h4> | <h4 class="subtitle"><b> Figure 3-16: Overexpression of CsgD (BBa_K2229100) doubles biofilm production </b> A) Congo red assay stains biofilm (red). B) Stained biofilm is solubilized in ethanol. C) Absorbance is measured at 500 nm.<span class="subCred"> Experiment & Figure: Yvonne W.</span></h4> | ||
</div> | </div> |
Latest revision as of 13:33, 31 October 2017
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