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The CE20 model is the most efficient Diels-Alderase yet, surpassing many other biological (antibody<ref name="Gouverneur"/>) and artificial (ribozyme, metalloenzyme) attempts at catalyzing the Diels-Alder reaction.<ref name="Preiswerk"/> Even then, the CE20 model has a catalytic efficiency value at least 4 orders of magnitude lower than the preferred values seen in any moderately-efficient natural enzymes catalyzing various reactions. This demonstrates the innate slowness of the Diels-Alder reaction.<ref name="Preiswerk"/>
The CE20 model is the most efficient Diels-Alderase yet, surpassing many other biological (antibody<ref name="Gouverneur"/>) and artificial (ribozyme, metalloenzyme) attempts at catalyzing the Diels-Alder reaction.<ref name="Preiswerk"/> Even then, the CE20 model has a catalytic efficiency value at least 4 orders of magnitude lower than the preferred values seen in any moderately-efficient natural enzymes catalyzing various reactions. This demonstrates the innate slowness of the Diels-Alder reaction.<ref name="Preiswerk"/>
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Though the rate of product formation using this enzyme is not significantly different from that found when reactants reflux free in solution (about 10 substrate molecules/hour),<ref name="Preiswerk"/> the Diels-Alderase shows a vast improvement in product stereoselectivity. When refluxed in a room temperature aqueous solution containing the necessary substrates, the enzyme catalyzed an over 90% conversion rate, producing only the 3R,4S endo cyclohexane product isomer. By comparison, refluxing the substrates free in toluene for a similar duration of time yields a racemic (66:34) mixture of endo and exo products. It is primarily for these stereoselective benefits that this enzyme is valuable for synthetic purposes. <ref name="Preiswerk"/>
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Though the rate of product formation using this enzyme is not significantly different from that found when reactants reflux free in solution (about 10 substrate molecules/hour),<ref name="Preiswerk"/> the Diels-Alderase shows modest (15% <ref name="Cannizzaro"> PMID:12603137</ref>) improvement in product stereoselectivity. When refluxed in a room temperature aqueous solution containing the necessary substrates, the enzyme catalyzed an over 90% conversion rate, producing only the 3R,4S endo cyclohexane product isomer. By comparison, refluxing the substrates free in an aqueous PBS buffer at 110 °C for a similar duration of time yields an 85:15 mixture of endo and exo products.<ref name="Cannizzaro"/> It is primarily for these stereoselective benefits that this enzyme is valuable for synthetic purposes. <ref name="Preiswerk"/>
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Future improvement of the Diels-Alderase will likely revolve around the improvement of catalytic efficiency, further constriction of the active site, and selective production of varying stereoisomers. Furthermore, the methodology and success behind designing the Diels-Alderase demonstrated the utility of early computational enzyme design, which is now an enormous field and the subject of the [https://www.nobelprize.org/prizes/chemistry/2024/press-release/ 2024 Nobel Prize.]
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Future improvement of the Diels-Alderase will likely revolve around the selective production of varying stereoisomers as well as improvement of catalytic efficiency and further constriction of the active site. Furthermore, the methodology and success behind designing the Diels-Alderase demonstrated the utility of early computational enzyme design, which is now an enormous field and the subject of the [https://www.nobelprize.org/prizes/chemistry/2024/press-release/ 2024 Nobel Prize.]
== References ==
== References ==

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