Team:UFMG Brazil/Modeling

From 2013.igem.org

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Text HERE!!!
Text HERE!!!
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<div id="modeling_equations">
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$M$ is TMAO.
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$T$ is TorT.
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$TM$ is the complex of T and M.
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$S$ is TorS.
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$STM$ is the complex of S and TM.
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$R$ is TorR.
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$R^{ *}$ is TorR Phosophorilated.
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Reactions:
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$M+T{{k_{1} \atop\displaystyle\longrightarrow} \atop {\displaystyle\longleftarrow \atop k_{-1}}}TM$
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$2TM+S{{k_{2} \atop\displaystyle\longrightarrow} \atop {\displaystyle\longleftarrow \atop k_{-2}}}STM$
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$STM+R{{k_{3} \atop\displaystyle\longrightarrow} \atop {\displaystyle\longleftarrow \atop k_{-3}}} X {{k_{cat}\atop\longrightarrow} \atop {\quad  \atop \quad }}R^{ *} + STM$
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$R^{ *} + P {{\displaystyle\longrightarrow} \atop {\displaystyle\longleftarrow}} PR^{ *}$
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\begin{eqnarray}
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\begin{cases}
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{d M(t)\over d t}&=& -k_1 \cdot  M\cdot T + k_{-1}\cdot TM\\\\
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\\\\
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{d T(t)\over d t}&=& -k_1 \cdot  M\cdot T + k_{-1}\cdot TM\\\\
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\\\\
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{d TM(t)\over d t}&=& k_1 \cdot  M\cdot T - k_{-1}\cdot TM - k_2\cdot TM^{2} \cdot S + k_{-2} \cdot STM\\\\
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\\\\
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{d S(t)\over d t}&=& -k_2 \cdot  S\cdot TM^{2} - k_{-1}\cdot TM - k_2\cdot TM^{2} \cdot S + k_{-2} \cdot STM\\\\
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\\\\
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{d STM(t)\over d t}&=& k_2 \cdot  TM^{2} \cdot S - k_{-2}\cdot STM \\\\
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\\\\
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{d R^{ *}(t)\over d t}&=& k_{cat}\cdot STM \over{k_m + STM}\\\\
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\\\\
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{d mRNA(t)\over d t}&=& {\alpha \cdot  R^{ *^{\gamma}} \over{\beta + R^{ *^{\gamma}}}} - \mu \cdot mRNA\\\\
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\\
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\end{cases}
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\end{eqnarray}
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</div>
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Revision as of 23:03, 22 June 2013


Text HERE!!!

$M$ is TMAO.

$T$ is TorT.

$TM$ is the complex of T and M.

$S$ is TorS.

$STM$ is the complex of S and TM.

$R$ is TorR.

$R^{ *}$ is TorR Phosophorilated.

Reactions:

$M+T{{k_{1} \atop\displaystyle\longrightarrow} \atop {\displaystyle\longleftarrow \atop k_{-1}}}TM$
$2TM+S{{k_{2} \atop\displaystyle\longrightarrow} \atop {\displaystyle\longleftarrow \atop k_{-2}}}STM$
$STM+R{{k_{3} \atop\displaystyle\longrightarrow} \atop {\displaystyle\longleftarrow \atop k_{-3}}} X {{k_{cat}\atop\longrightarrow} \atop {\quad  \atop \quad }}R^{ *} + STM$
$R^{ *} + P {{\displaystyle\longrightarrow} \atop {\displaystyle\longleftarrow}} PR^{ *}$
\begin{eqnarray}
\begin{cases}
{d M(t)\over d t}&=& -k_1 \cdot  M\cdot T + k_{-1}\cdot TM\\\\
\\\\
{d T(t)\over d t}&=& -k_1 \cdot  M\cdot T + k_{-1}\cdot TM\\\\ 
\\\\
{d TM(t)\over d t}&=& k_1 \cdot  M\cdot T - k_{-1}\cdot TM - k_2\cdot TM^{2} \cdot S + k_{-2} \cdot STM\\\\
\\\\
{d S(t)\over d t}&=& -k_2 \cdot  S\cdot TM^{2} - k_{-1}\cdot TM - k_2\cdot TM^{2} \cdot S + k_{-2} \cdot STM\\\\
\\\\
{d STM(t)\over d t}&=& k_2 \cdot  TM^{2} \cdot S - k_{-2}\cdot STM \\\\
\\\\
{d R^{ *}(t)\over d t}&=& k_{cat}\cdot STM \over{k_m + STM}\\\\
\\\\
{d mRNA(t)\over d t}&=& {\alpha \cdot  R^{ *^{\gamma}} \over{\beta + R^{ *^{\gamma}}}} - \mu \cdot mRNA\\\\
\\
\end{cases}
\end{eqnarray}


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