Sandbox Reserved 1852

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:Introducing an <scene name='10/1075254/A285_scence/3'>alanine</scene> to <scene name='10/1075254/N285/5'>asparagine</scene> increases steric hindrance with the catalytic tyrosine, reducing the number of rotamers the residue has to increase the reactivity of the enzyme by lowering the distance between Tyr134 and the ligand.<ref name="Siegel"/>
:Introducing an <scene name='10/1075254/A285_scence/3'>alanine</scene> to <scene name='10/1075254/N285/5'>asparagine</scene> increases steric hindrance with the catalytic tyrosine, reducing the number of rotamers the residue has to increase the reactivity of the enzyme by lowering the distance between Tyr134 and the ligand.<ref name="Siegel"/>
===CE6===
===CE6===
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The DA_20_10 model of the Diels Alderase was further enhanced by players of the online game [https://en.wikipedia.org/wiki/Foldit Foldit.]<ref name="Eiben"/> Building on preliminary early data, players were asked to optimize various helical structures that would surround and support the ligand. After over 100,000 designs were tested, the top-scoring CE6 model was finalized, containing as <scene name='10/1075252/Alpha_helix_highlighted/4'>alpha helix cap</scene> that favorably constrains ligand orientation. This "cap" consists of two helices--helix one spans from residues 36-44, and helix two spans from residues 48-56.<ref name="Eiben"/>
+
The DA_20_10 model of the Diels Alderase was further enhanced by players of the online game [https://en.wikipedia.org/wiki/Foldit Foldit.]<ref name="Eiben"/> Building on preliminary early data, players were asked to optimize various helical structures that would surround and support the ligand. After over 100,000 designs were tested, the top-scoring CE6 model was finalized, containing the <scene name='10/1075252/Alpha_helix_highlighted/4'>alpha helix cap</scene> that favorably constrains ligand orientation. This "cap" consists of two helices--helix one spans from residues 36-44, and helix two spans from residues 48-56.<ref name="Eiben"/>
===CE20===
===CE20===
The CE20 generation contains three highly conserved mutations found in many of the most catalytically efficient Diels-Alderase models being screened: Tyr43, Pro48, and Arg56 were mutated to <scene name='10/1075254/Ce_20_mutations/5'>Ile43, Lys48 and Ser56</scene>.<ref name="Preiswerk"/> Generally, these mutations each contributed to further tightening the binding pocket around the ligand and creating a more hydrophobic environment for enhanced binding.<ref name="Preiswerk"/>
The CE20 generation contains three highly conserved mutations found in many of the most catalytically efficient Diels-Alderase models being screened: Tyr43, Pro48, and Arg56 were mutated to <scene name='10/1075254/Ce_20_mutations/5'>Ile43, Lys48 and Ser56</scene>.<ref name="Preiswerk"/> Generally, these mutations each contributed to further tightening the binding pocket around the ligand and creating a more hydrophobic environment for enhanced binding.<ref name="Preiswerk"/>

Revision as of 18:19, 28 April 2025

This Sandbox is Reserved from March 18 through September 1, 2025 for use in the course CH462 Biochemistry II taught by R. Jeremy Johnson and Mark Macbeth at the Butler University, Indianapolis, USA. This reservation includes Sandbox Reserved 1828 through Sandbox Reserved 1846.
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Diels-Alderase

Diels-Alderase 4o5t

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