Team:Paris/Modeling/f8

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[[Image:f8DCA.png|thumb]] At the steady-state, we have
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[[Image:f8DCA.png|thumb]]
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<center>[[Image:FlhDCeq.jpg]]</center>
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and
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<center>[[Image:FliAeq.jpg]]</center>
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so the expression
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<center>[[Image:f8expr.jpg]]</center>
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gives
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<center>[[Image:f8FlhDC.jpg]]</center>
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and
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<center>[[Image:f8FliA.jpg]]</center>
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and for ''calculated values of the TF'',
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<center>[[Image:f8FlhDCCalc.jpg]]</center>
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and
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<center>[[Image:f8FliACalc.jpg]]</center>
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<br><br>
<br><br>
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Then, if we have time, we want to verify the expected relation
Then, if we have time, we want to verify the expected relation
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<center>[[Image:SumpFlhB.jpg]]</center>
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[[Image:SumpFlhB.jpg|center]]

Revision as of 23:50, 29 September 2008

F8DCA.png



param signification unit value
[expr(pFlhB)] expression rate of
pFlhB with RBS E0032
nM.min-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 ration between
fluorescence and concentration
nM.au-1 (1/79.429)



param signification
corresponding parameters in the equations
unit value
β6 production rate of FlhDC-pFlhB with RBS E0032
β6
nM.min-1
(K4/{coefflhDC}) activation constant of FlhDC-pFlhB
K4
nM
n4 complexation order of FlhDC-pFlhB
n4
no dimension
β14 production rate of FliA-pFlhB with RBS E0032
β14
nM.min-1
(K10/{coeffliA}) activation constant of FliA-pFlhB
K10
nM
n10 complexation order of FliA-pFlhB
n10
no dimension



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

SumpFlhB.jpg