Team:USTC CHINA/Modeling/KillSwitch
From 2013.igem.org
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At the first glance this graph seemed fine. Initially the concentration of SdpC decreased slightly due to the capturing of SdpI and the repression of float SdpR, but gradually the positive feedback loop works, and C<sub>f</sub> increases rapidly. But when we turned our attention to the curves of other parameters, things seemed not so perfect:</br> | At the first glance this graph seemed fine. Initially the concentration of SdpC decreased slightly due to the capturing of SdpI and the repression of float SdpR, but gradually the positive feedback loop works, and C<sub>f</sub> increases rapidly. But when we turned our attention to the curves of other parameters, things seemed not so perfect:</br> | ||
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The curve of I<sub>m</sub>, C<sub>i</sub> and R<sub>i</sub> contradicted our common sense severely. First, I<sub>m</sub>>C<sub>i</sub>>R<sub>i</sub> is expected to be tenable all the time, which precludes the intersects among the three curves; Second, there is no mechanism in this system that could decrease their concentration, and all of them are increasing function; Third and most serious, never will them be negative, as they represent the concentration of real substances. | The curve of I<sub>m</sub>, C<sub>i</sub> and R<sub>i</sub> contradicted our common sense severely. First, I<sub>m</sub>>C<sub>i</sub>>R<sub>i</sub> is expected to be tenable all the time, which precludes the intersects among the three curves; Second, there is no mechanism in this system that could decrease their concentration, and all of them are increasing function; Third and most serious, never will them be negative, as they represent the concentration of real substances. | ||
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In this group, we gave up one former assumption and set k<sub>2</sub> equal to k<sub>9</sub>. We also gave positive values to I<sub>m</sub>, C<sub>i</sub> and R<sub>i</sub>, which were considered to be zero at first. And by groups of stimulations we realized the value of k<sub>2</sub> does matter, as the derivative of C<sub>f</sub> only increased slightly as k<sub>2</sub> lowers, and the positive values failed to avoid the weird phenomenon in the latter three curves. | In this group, we gave up one former assumption and set k<sub>2</sub> equal to k<sub>9</sub>. We also gave positive values to I<sub>m</sub>, C<sub>i</sub> and R<sub>i</sub>, which were considered to be zero at first. And by groups of stimulations we realized the value of k<sub>2</sub> does matter, as the derivative of C<sub>f</sub> only increased slightly as k<sub>2</sub> lowers, and the positive values failed to avoid the weird phenomenon in the latter three curves. | ||
We also found that however we adjusted the primary value of I<sub>f</sub> and other parameters, If dropped into approximately zero extremely rapidly at the initial stage and remained balanced, which might account for why the derivatives of the latter curves were abnormally negative. Thus we modified another assumption and increased k<sub>7</sub>. Here is another group of values and corresponding graph:</br></br> | We also found that however we adjusted the primary value of I<sub>f</sub> and other parameters, If dropped into approximately zero extremely rapidly at the initial stage and remained balanced, which might account for why the derivatives of the latter curves were abnormally negative. Thus we modified another assumption and increased k<sub>7</sub>. Here is another group of values and corresponding graph:</br></br> | ||
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Although the derivative of Im is not seriously positive constantly, the three latter curves seemed much more reasonable. Hence, we extrapolated although SdpI and SdpR share the same promoter, the expression of SdpI must much faster than SdpR to ensure successful “suicide.” Additionally, the increase of k<sub>7</sub> also represses SdpC, and hence the copy number of SdpC must be larger. | Although the derivative of Im is not seriously positive constantly, the three latter curves seemed much more reasonable. Hence, we extrapolated although SdpI and SdpR share the same promoter, the expression of SdpI must much faster than SdpR to ensure successful “suicide.” Additionally, the increase of k<sub>7</sub> also represses SdpC, and hence the copy number of SdpC must be larger. | ||
We kept all other parameters constant and gradually augmented k<sub>0</sub>. The larger k<sub>0</sub>, the more perfect the curve seemed, and here are the values table and graph where k<sub>0</sub> equals 400, 80 times larger than k<sub>4</sub>.</br></br> | We kept all other parameters constant and gradually augmented k<sub>0</sub>. The larger k<sub>0</sub>, the more perfect the curve seemed, and here are the values table and graph where k<sub>0</sub> equals 400, 80 times larger than k<sub>4</sub>.</br></br> | ||
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Take the curve of C<sub>f</sub> and R<sub>f</sub> separately, the curves seemed more perfect:</br></br> | Take the curve of C<sub>f</sub> and R<sub>f</sub> separately, the curves seemed more perfect:</br></br> | ||
- | <img src="https://static.igem.org/mediawiki/2013/9/9f/Suicide6.png"></br></br> | + | <img class="linegraph" src="https://static.igem.org/mediawiki/2013/9/9f/Suicide6.png"></br></br> |
In wild bacteria who are unable to produced SdpC, naturally k<sub>0</sub> equals zero. We expected C<sub>f</sub> would decreased gradually and finally approximate zero, and here are the corresponding table and graph:</br></br> | In wild bacteria who are unable to produced SdpC, naturally k<sub>0</sub> equals zero. We expected C<sub>f</sub> would decreased gradually and finally approximate zero, and here are the corresponding table and graph:</br></br> | ||
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Wired but not surprising, there were intersects among the latter three curve, and C<sub>f</sub> decreases continually when it is negative. We continued to try groups of these parameters, and this is the best one where we increased the primary concentration of SdpC and the normal expression rate of SdpI. | Wired but not surprising, there were intersects among the latter three curve, and C<sub>f</sub> decreases continually when it is negative. We continued to try groups of these parameters, and this is the best one where we increased the primary concentration of SdpC and the normal expression rate of SdpI. | ||
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- | <img src="https://static.igem.org/mediawiki/2013/8/8e/Suicide8.png"></br></br> | + | <img class="linegraph" src="https://static.igem.org/mediawiki/2013/8/8e/Suicide8.png"></br></br> |
The curve of C<sub>f</sub> and R<sub>f</sub> alone: | The curve of C<sub>f</sub> and R<sub>f</sub> alone: | ||
- | <img src="https://static.igem.org/mediawiki/2013/e/eb/Suicide9.png"></br></br> | + | <img class="linegraph" src="https://static.igem.org/mediawiki/2013/e/eb/Suicide9.png"></br></br> |
In spite of minimal abnormal phenomenon (C<sub>f</sub> was negative in later stage), this graph roughly testified that in wild bacterial the concentration of float SdpC will drop to nearly zero quickly. | In spite of minimal abnormal phenomenon (C<sub>f</sub> was negative in later stage), this graph roughly testified that in wild bacterial the concentration of float SdpC will drop to nearly zero quickly. | ||
In sum, the ODE model of singular cells indicate following results:</br> | In sum, the ODE model of singular cells indicate following results:</br> |
Revision as of 11:01, 27 September 2013