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         <ModelHeader Author = "Mr Untitled" ModelVersion = "0.0" ModelTitle = "untitled"/>
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      <jd:notes>
         <note value = "This is a model of a branched pathway controlled by a signal metabolite through an enzyme cascade.This simulates a time course and the corresponding steady state when all the enzyme forms are inactive and the concentration of Signal has just been set to 1."/>
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               <jd:display x = "418" y = "441" iconIndex = "-1" edgeThickness = "1"
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               <specieReference specie = "Kinase1" stoichiometry = "1"/>
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                  <pt x = "395" y = "130"/>
                  <pt x = "395" y = "130"/>
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            </annotations>
            <kineticLaw formula = "V_1*Kinase1/Kms_1/(1+Ka_1/Signal+Kinase1/Kms_1*(1+Ka_1/Signal))">
               <listOfParameters>
                  <parameter name = "Kms_1" value = "0.001"/>
                  <parameter name = "V_1" value = "10"/>
                  <parameter name = "Ka_1" value = "0.5"/>
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               <specieReference specie = "Kinase1_P" stoichiometry = "1"/>
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                  <pt x = "389" y = "36"/>
                  <pt x = "389" y = "36"/>
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            </annotations>
            <kineticLaw formula = "V_2*Kinase1_P/Km_2/(1+Kinase1_P/Km_2*(1+Signal/Ki_2))">
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                  <parameter name = "Km_2" value = "0.001"/>
                  <parameter name = "V_2" value = "10"/>
                  <parameter name = "Ki_2" value = "0.5"/>
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                  <pt x = "269" y = "138"/>
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            <kineticLaw formula = "(((Kinase1_P)*(Kinase2))*(kcat_3))/(Km_3+Kinase2)">
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                  <parameter name = "kcat_3" value = "10"/>
                  <parameter name = "Km_3" value = "0.01"/>
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            <kineticLaw formula = "V_4*Kinase2_P/(Km_4+Kinase2_P)">
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                  <parameter name = "Km_4" value = "0.1"/>
                  <parameter name = "V_4" value = "10"/>
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               <specieReference specie = "Enzyme_i" stoichiometry = "1"/>
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               <specieReference specie = "Enzyme_a" stoichiometry = "1"/>
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            <kineticLaw formula = "(((Kinase2_P)*(Enzyme_i))*(kcat_5))/(Km_5+Enzyme_i)">
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                  <parameter name = "kcat_5" value = "1"/>
                  <parameter name = "Km_5" value = "0.01"/>
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               <specieReference specie = "Enzyme_a" stoichiometry = "1"/>
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               <specieReference specie = "Enzyme_i" stoichiometry = "1"/>
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                  <pt x = "181" y = "259"/>
                  <pt x = "177" y = "254"/>
                  <pt x = "177" y = "254"/>
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            <kineticLaw formula = "V_6*Enzyme_a/(Km_6+Enzyme_a)">
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                  <parameter name = "Km_6" value = "1"/>
                  <parameter name = "V_6" value = "1"/>
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         <reaction name = "J6" reversible = "true">
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               <specieReference specie = "S" stoichiometry = "1"/>
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                  <pt x = "159" y = "404"/>
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            <kineticLaw formula = "Vf_7*S-Vr_7*M/(Kms_7*Kmp_7+Kmp_7*S+Kms_7*M)">
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                  <parameter name = "Kms_7" value = "1"/>
                  <parameter name = "Kmp_7" value = "1"/>
                  <parameter name = "Vf_7" value = "100"/>
                  <parameter name = "Vr_7" value = "10"/>
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               <specieReference specie = "M" stoichiometry = "1"/>
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                  <pt x = "320" y = "370"/>
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            <kineticLaw formula = "((Enzyme_a)*(((kcatf_8)*(M))/(Kms_8)-((kcatr_8)*(P1))/(Kmp_8)))/(1+(M)/(Kms_8)+(P1)/(Kmp_8))">
               <listOfParameters>
                  <parameter name = "kcatf_8" value = "2000"/>
                  <parameter name = "Kms_8" value = "1"/>
                  <parameter name = "kcatr_8" value = "1"/>
                  <parameter name = "Kmp_8" value = "1"/>
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               <specieReference specie = "M" stoichiometry = "1"/>
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            <kineticLaw formula = "Vf_9*M-Vr_9*P2/(Kms_9*Kmp_9+Kmp_9*M+Kms_9*P2)">
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                  <parameter name = "Kms_9" value = "1"/>
                  <parameter name = "Kmp_9" value = "1"/>
                  <parameter name = "Vf_9" value = "180"/>
                  <parameter name = "Vr_9" value = "1"/>
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