Biomod/2013/Columbia: Difference between revisions
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<td width="180" bgcolor="#ff0033">[[Biomod/2013/Columbia|<font face="Comic Sans MS,cursive,Arial" color="white">Home</font>]] </td> | |||
<td width="180" bgcolor="#ff9900">[[Dynein Dynasty Team|<font face="Comic Sans MS,cursive,Arial" color="white">Team</font>]] </td> | |||
<td width="180" bgcolor="#ffff00">[[Dynein Dynasty Team's Project|<font face="Comic Sans MS,cursive,Arial" color="black">Project</font>]] </td> | |||
<td width="180" bgcolor="#66ff33">[[Dynein Dynasty Team's Results|<font face="Comic Sans MS,cursive,Arial" color="white">Results</font>]] </td> | |||
<td width="180" bgcolor="#6699ff">[[Dynein Dynasty Team's References|<font face="Comic Sans MS,cursive,Arial" color="white">References</font>]] </td> | |||
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Enzymers: The polymerization of functional enzyme chains | '''Enzymers: The polymerization of functional enzyme chains''' | ||
Abstract: Enzymes are the catalysts to every chemical reaction that allows for the existence of life. In nature, many chemical reactions are coupled, with the product of one reaction being used as the reagent for another nearby enzyme. The aim of this project is to couple Glucose Oxidase and Horseradish Peroxidase, an enzyme pair used in spectrophotometer assays, using azide-alkyne click chemistry via NHS ester conjugation. Increased efficiency and yield of a coupled reaction would have tremendous impact on the field of chemical creation and chemical purchases.<h2>[https://sites.google.com/site/dyneindynasty/home Home]</h2> | Abstract: Enzymes are the catalysts to every chemical reaction that allows for the existence of life. In nature, many chemical reactions are coupled, with the product of one reaction being used as the reagent for another nearby enzyme. The aim of this project is to couple Glucose Oxidase and Horseradish Peroxidase, an enzyme pair used in spectrophotometer assays, using azide-alkyne click chemistry via NHS ester conjugation. Increased efficiency and yield of a coupled reaction would have tremendous impact on the field of chemical creation and chemical purchases. | ||
<h2>[https://sites.google.com/site/dyneindynasty/home Home]</h2> | |||
<h2>[https://sites.google.com/site/dyneindynasty/project-definition Project Definition]</h2> | <h2>[https://sites.google.com/site/dyneindynasty/project-definition Project Definition]</h2> | ||
<h2>[https://sites.google.com/site/dyneindynasty/the-team The Team]</h2> | <h2>[https://sites.google.com/site/dyneindynasty/the-team The Team]</h2> | ||
<h2>[https://sites.google.com/site/dyneindynasty/references References]</h2> | <h2>[https://sites.google.com/site/dyneindynasty/references References]</h2> | ||
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Latest revision as of 20:24, 26 October 2013
Home | Team | Project | Results | References |
Enzymers: The polymerization of functional enzyme chains
Abstract: Enzymes are the catalysts to every chemical reaction that allows for the existence of life. In nature, many chemical reactions are coupled, with the product of one reaction being used as the reagent for another nearby enzyme. The aim of this project is to couple Glucose Oxidase and Horseradish Peroxidase, an enzyme pair used in spectrophotometer assays, using azide-alkyne click chemistry via NHS ester conjugation. Increased efficiency and yield of a coupled reaction would have tremendous impact on the field of chemical creation and chemical purchases.
Home
Project Definition
The Team
References
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