Team:Paris/Modeling/f3bis

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[[Image:f3env.png|thumb]]
[[Image:f3env.png|thumb]]
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We have [EnvZ] = {coef}<sub>EnvZ</sub>''expr(pTet)'' = {coef}<sub>EnvZ</sub> &#131;1([aTc]<sub>i</sub>)
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and [FliA] = {coef}<sub>FliA</sub>''expr(pBad)'' = {coef}<sub>FliA</sub> &#131;2([arab]<sub>i</sub>)
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So, if we denote phosphorylated OmpR by ''OmpR<sup>*</sup>'', we have
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[[Image:F3ompfromenv.jpg|center]]
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that we can then introduce in the previous expression (&#131; 3) :
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[[Image:F3ompfinal.jpg|center]]
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Revision as of 17:25, 12 October 2008

F3env.png

We have [EnvZ] = {coef}EnvZexpr(pTet) = {coef}EnvZ ƒ1([aTc]i)

and [FliA] = {coef}FliAexpr(pBad) = {coef}FliA ƒ2([arab]i)

So, if we denote phosphorylated OmpR by OmpR*, we have

F3ompfromenv.jpg

that we can then introduce in the previous expression (ƒ 3) :

F3ompfinal.jpg



param signification unit value
[expr(pFlhDC)] expression rate of
pFlhDC with RBS E0032
nM.s-1 see "findparam"
need for 20 + 20 measures
and 5x5 measures for the SUM?
γGFP dilution-degradation rate
of GFP(mut3b)
min-1 0.0198
[GFP] GFP concentration at steady-state nM need for 20 + 20 measures
and 5x5 measures for the SUM?
(fluorescence) value of the observed fluorescence au need for 20 + 20 measures
and 5x5 measures for the SUM?
conversion conversion ratio between
fluorescence and concentration
nM.au-1 (1/79.429)



param signification
corresponding parameters in the equations
unit value
β12bis production rate of FliA-pFlhDC with RBS E0032
replace β12 (not written)
nM.min-1
(K11bis/{coeffliA}) activation constant of FliA-pFlhDC
K11bis
nM
n11bis complexation order of FliA-pFlhDC
replace n11 (not written)
no dimension
β2bis production rate of EnvZ-pFlhDC with RBS E0032
β2bis
nM.min-1
(K19bis/{coefenvZ}) activation constant of EnvZ-pFlhDC
replace K19 (not written)
nM
n19bis complexation order of EnvZ-pFlhDC
n19bis
no dimension



Then, if we have time, we want to verify the expected relation

SumpFlhDC2.jpg