BASIL2022GV3R8E

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[[Image:FinalGel_2.png|250px|]]
[[Image:FinalGel_2.png|250px|]]
== Project Implications ==
== Project Implications ==
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The goal of this project is to explore the methods it takes to characterize a putative kinase. To do this, we became familiar with online alignment, structure, and function tools, paired with a variety of in vitro lab experiments, such as bacterial protein overexpression, affinity chromatography, coupled kinase assays, and SDS PAGE Gel Electrophoresis. Proteins are biomolecules essential to organisms' survival and understanding how they work in result of their function is pivotal for advances in modern medicine, scientific research, and agriculture.
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The goal of this project is to explore the techniques it takes to characterize a putative kinase. To do this, we became familiar with online alignment, structure, and function tools, paired with a variety of in vitro lab experiments, including bacterial protein overexpression, affinity chromatography, coupled kinase assays, and SDS PAGE. These techniques can be used to help characterize further putative kinases discovered in the future that do not have a defined function. This project is of importance because proteins are biomolecules responsible for as organisms' survival and understanding their unique function is essential for advances in modern medicine, scientific research, and agriculture.
== Conclusions/Future Direction ==
== Conclusions/Future Direction ==
Conclusions:
Conclusions:
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- D-Glucose exhibited a specific activity of 4.22 ug/mL
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- Authenticated and verified protein function using kinase characterization protocols
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- D-Glucose exhibited a specific activity of ___ ug/mL
- Specific activity: D-Glucose >> D-Galactose > D-Fructose > Lactose > D-Ribose
- Specific activity: D-Glucose >> D-Galactose > D-Fructose > Lactose > D-Ribose
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Future Direction:
Future Direction:
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- Verify experimental results
 
- Publish results for further application
- Publish results for further application
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- Authenticate protein function using further kinase characterization protocols
 

Revision as of 16:24, 21 September 2022

Characterization of the 3r8e Protein, a Novel Glucose Kinase

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References

1. Blastp [Internet]. Bethesda (MD): Natiobal Library of Medicine (US), National Center for Biotechnology Information; 2004- [cited 2022 March]. Available from: (https://blast.ncbi.nlm.nih.gov/Blast.cgi?PAGE=Proteins)

2. BASIL. https://basilbiochem.github.io/basil/

3. Holm L (2020) Using Dali for protein structure comparison. Methods Mol. Biol. 2112, 29-42.

4. Small- Molecule Library Screening by Docking with PyRx. .Dallakyan S, Olson AJ Methods Mol Biol. 2015;1263:243-50. The full-text is available at https://www.researchgate.net/publications/2739554875. Small-Molecule Library Screening by Docking with PyRx.

5. Pfam: The Protein families database in 2021 J. Mistry, S. Chuguransky, L. Williams, M. Qureshi, G.A. Salazar, E.L.L. Sonnhammer, S.C.E. Tosatto, L. Paladin, S. Raj, L.J. Richardson, R.D. Finn, A. Bateman Nucleic Acids Research (2020) doi: 10.1093/nar/gkaa913

6. The PyMOL Molecular Graphics System, Version 1.2r3pre, Schrödinger, LLC.

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