Difference between revisions of "Team:Manchester/Model/GlucoseOxidaseReaction"

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Glucose Oxidase Reaction
 
Glucose Oxidase Reaction
 
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<p>
 
Oxidation of glucose to GDL and Hydrogen Peroxide using Glucose Oxidase (EC 1.1.3.4)
 
Oxidation of glucose to GDL and Hydrogen Peroxide using Glucose Oxidase (EC 1.1.3.4)
 
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</p>
 
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Chemical Equation
 
Chemical Equation
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Glucose + Oxygen → Glucono-δ-lactone + Hydrogen Peroxide (REWRITE IN MATHJAX!)
 
Glucose + Oxygen → Glucono-δ-lactone + Hydrogen Peroxide (REWRITE IN MATHJAX!)
 
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Rate Equation
 
Rate Equation
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z =  
 
z =  
 
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Parameter Sourcing
 
Parameter Sourcing
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PLACEHOLDER FOR Van't Hoff equation IN MATHJAX
 
PLACEHOLDER FOR Van't Hoff equation IN MATHJAX
 
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Parameters with uncertainty
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Km
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<p>
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PLACEHOLDER FOR PDF GRAPH
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</p>
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<p>
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Sigma = (IN MATHJAX)
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Mu = (IN MATHJAX)
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<p>
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Uncertainty in Km is introduced through the range of experimental parameters sourced
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<p>
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Kcat
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<p>
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PLACEHOLDER FOR PDF GRAPH
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</p>
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<p>
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Sigma = (IN MATHJAX)
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</p>
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<p>
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Mu = (IN MATHJAX)
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</p>
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<p>
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Uncertainty in Kcat is introduced through the range of experimental parameters sourced
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</p>
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</br>
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<p>
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Keq
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</p>
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<p>
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PLACEHOLDER FOR PDF GRAPH
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</p>
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<p>
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Sigma = (IN MATHJAX)
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</p>
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<p>
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Mu = (IN MATHJAX)
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</p>
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<p>
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Uncertainty in Keq is introduced using a uniform range of temperature variations
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{{Manchester/CSS/footer}}
 
{{Manchester/CSS/footer}}

Revision as of 17:07, 16 October 2016

Manchester iGEM 2016

Glucose Oxidase Reaction


Oxidation of glucose to GDL and Hydrogen Peroxide using Glucose Oxidase (EC 1.1.3.4)


Chemical Equation

Glucose + Oxygen → Glucono-δ-lactone + Hydrogen Peroxide (REWRITE IN MATHJAX!)


Rate Equation

PLACEHOLDER FOR RATE EQUATION IN MATHJAX

where: x = y = z =


Parameter Sourcing

Kcat and Km parameters were collected from BRENDA

Keq was calculated using the Van’t Hoff equation using the Gibbs free energy sourced from MetaCyc

PLACEHOLDER FOR Van't Hoff equation IN MATHJAX


Parameters with uncertainty

Km

PLACEHOLDER FOR PDF GRAPH

Sigma = (IN MATHJAX)

Mu = (IN MATHJAX)

Uncertainty in Km is introduced through the range of experimental parameters sourced


Kcat

PLACEHOLDER FOR PDF GRAPH

Sigma = (IN MATHJAX)

Mu = (IN MATHJAX)

Uncertainty in Kcat is introduced through the range of experimental parameters sourced


Keq

PLACEHOLDER FOR PDF GRAPH

Sigma = (IN MATHJAX)

Mu = (IN MATHJAX)

Uncertainty in Keq is introduced using a uniform range of temperature variations