Difference between revisions of "Team:UNSW Australia/Lab"

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<h2>Protein Production</h2>
 
<h2>Protein Production</h2>
<p>Components of the protein-enzyme scaffold must be expressed and purified for self-assembly and enzyme activity tests. Sequence-verified plasmids were transformed into <i>Escherichia coli</i> cells and expressed for recombinant protein production. 9 proteins were successfully expressed and purified, enabling the construction of our scaffold-enzyme complex..</p>
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<p>Components of the protein-enzyme scaffold must be expressed and purified for self-assembly and enzyme activity tests. Sequence-verified plasmids were transformed into <i>Escherichia coli</i> cells and expressed for recombinant protein production. 9 proteins were successfully expressed and purified, enabling the construction of our scaffold-enzyme complex.</p>
 
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<h2>Assembly</h2>
 
<h2>Assembly</h2>
<p>To create the enzyme-scaffold complex, the alpha and beta prefoldin hexamer are to be covalently attached to the enzymes through SpyTag/SpyCatcher or SnoopTag/SnoopCatcher reactions. These assembly stages were characterised successfully, and we were able to demonstrate the formation of alpha and beta prefoldin hexameric structures, attach the IaaH-SpyTag protein to alpha prefoldin and gamma prefoldin scaffolds and visualise SpyCatcher-SpyTag interaction.</p>
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<p>To create the enzyme-scaffold complex, the alpha and beta prefoldin hexamer are to be covalently attached to the enzymes through SpyTag/SpyCatcher or SnoopTag/SnoopCatcher reactions. These assembly stages were characterised successfully, and we were able to demonstrate the formation of alpha and beta prefoldin hexamers, covalently attach the IaaH-SpyTag protein to alpha prefoldin and gamma prefoldin scaffolds and visualise filaments of gamma prefoldin attached to enzymes with Transmission Electron Microscopy.</p>
 
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Revision as of 00:12, 17 October 2018

Lab Overview

Lab Sections