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− | <p>Figure 2.A compares the Cr(VI) reduction rate standardized for OD<sub>600</sub> of <i>E. coli</i> MG1655 versus <i>E. coli</i> MG1655 cotransformed with the sulfate transporter system (BBa_K2194004) and constitutively expressed chrR6 reductase enzyme (BBa_K2194000). | + | <p>Figure 2.A compares the Cr(VI) reduction rate standardized for OD<sub>600</sub> of <i>E. coli</i> MG1655 versus <i>E. coli</i> MG1655 cotransformed with the sulfate transporter system (BBa_K2194004) and constitutively expressed chrR6 reductase enzyme (BBa_K2194000).</p> |
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− | <p> Figure 2.B presents the same data as Figure 2.A but as an amount of total Cr(VI) reduced rather than the OD<sub>600</sub> standardized rate. (The x-axis and the light blue bars display the initial concentration of Cr(VI) and the y-axis displays the final concentration of Cr(VI). Comparison of the dark blue bars to the light blue bar at each different initial concentration of Cr(VI) reveals the total change in [Cr(VI)]. | + | <p> Figure 2.B presents the same data as Figure 2.A but as an amount of total Cr(VI) reduced rather than the OD<sub>600</sub> standardized rate. (The x-axis and the light blue bars display the initial concentration of Cr(VI) and the y-axis displays the final concentration of Cr(VI). Comparison of the dark blue bars to the light blue bar at each different initial concentration of Cr(VI) reveals the total change in [Cr(VI)].The data indicates that below an initial [Cr(VI)] of 200 uM the cotransformed bacteria are less efficient at reducing Cr(VI) than wild type bacteria. Above 200 uM initial [Cr(VI)], the trend reverses and wild type bacteria are less efficient. |
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− | <p> In the experiment which results are shown below in Figure 3, we compared the Cr(VI) reduction efficiency of chrR6 versus nemA at different initial concentration of Cr(VI). The two reductases were expressed under constitutive promoters in <i>E. coli</i> MG1655. Final concentrations of Cr(VI) for each sample were measured at 12 hours after adding chromate. This data shows that | + | <p> In the experiment which results are shown below in Figure 3, we compared the Cr(VI) reduction efficiency of chrR6 versus nemA at different initial concentration of Cr(VI). The two reductases were expressed under constitutive promoters in <i>E. coli</i> MG1655. Final concentrations of Cr(VI) for each sample were measured at 12 hours after adding chromate. This data shows that the two enzymes have similar reduction efficiencies. </p> |
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− | <p class = "caption"><b>Figure | + | <p class = "caption"><b>Figure 3:</b> chrR6 reductase enzyme is more efficient than nemA reductase in reducing Cr(VI) |
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− | In this experiment, we transformed <i>E. coli</i> MG1655 with a plasmid containing promoter <i>Ptrc-2</i> and a fluorescent reporter protein mCherry and added varying amounts of IPTG to culture with the same initial OD<sub>600</sub>. Time course measurements of mCherry fluorescence (excitation/emission=587nm/610nm) over 14 hours are shown in Figure | + | In this experiment, we transformed <i>E. coli</i> MG1655 with a plasmid containing promoter <i>Ptrc-2</i> and a fluorescent reporter protein mCherry and added varying amounts of IPTG to culture with the same initial OD<sub>600</sub>. Time course measurements of mCherry fluorescence (excitation/emission=587nm/610nm) over 14 hours are shown in Figure 7. This graph shows a standard dose-responsive curve, indicating that the <i>Ptrc-2</i> promoter is lacI-repressed as predicted. </p> |
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− | <p class = "caption"><b>Figure 7:</b> IPTG-induced mCherry fluorescence vs. time <p/> | + | <p class = "caption"><b>Figure 7:</b> IPTG-induced mCherry fluorescence/OD vs. time <p/> |
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Latest revision as of 15:31, 16 December 2017
RESULTS
Overview
chrR6 Chromium Reduction Activity
As detailed on our "Experiments" page, we measured chrR6 chromium reduction activity using DPC assay. The strong r2 value of 0.9944 for the linear trend line of our standard DPC curve indicates that this is an accurate Cr(VI) detection method within this range of concentrations. Therefore, when we investigate the reduction efficiencies of our reductases, we will use initial Cr(VI) concentrations within this range.
Figure 2.A compares the Cr(VI) reduction rate standardized for OD600 of E. coli MG1655 versus E. coli MG1655 cotransformed with the sulfate transporter system (BBa_K2194004) and constitutively expressed chrR6 reductase enzyme (BBa_K2194000).