Directed evolution of limonene epoxide hydrolase (LEH), which catalyzes the hydrolytic desymmetrization reactions of cyclopentene oxide and cyclohexene oxide, results in (<i>R,R</i>)- and (<i>S,S</i>)-selective mutants. Their crystal structures combined with extensive theoretical computations shed light on the mechanistic intricacies of this widely used enzyme. From the computed activation energies of various pathways, we discover the underlying stereochemistry for favorable reactions. Surprisingly, some of the most enantioselective mutants that rapidly convert cyclohexene oxide do not catalyze the analogous transformation of the structurally similar cyclopentene oxide, as shown by additional X-ray structures of the variants harboring this ...
Computational enzyme design holds great promise for providing new biocatalysts for synthetic chemist...
The use of enzymes in preparative biocatalysis often requires tailoring enzyme selectivity by protei...
Computational enzyme design holds great promise for providing new biocatalysts for synthetic chemist...
Directed evolution of limonene epoxide hydrolase (LEH), which catalyzes the hydrolytic desymmetrizat...
Directed evolution of limonene epoxide hydrolase (LEH), which catalyzes the hydrolytic desymmetrizat...
Directed evolution of limonene epoxide hydrolase (LEH), which catalyzes the hydrolytic desymmetrizat...
Directed evolution of limonene epoxide hydrolase (LEH), which catalyzes the hydrolytic desymmetrizat...
Directed evolution of limonene epoxide hydrolase (LEH), which catalyzes the hydrolytic desymmetrizat...
Directed evolution of limonene epoxide hydrolase (LEH), which catalyzes the hydrolytic desymmetrizat...
Limonene-1,2-epoxide hydrolases (LEHs), a subset of the epoxide hydrolase family, present interestin...
The challenge of optimizing several parameters in the directed evolution of enzymes remains a centra...
Potato epoxide hydrolase 1 exhibits rich enantio- and regioselectivity in the hydrolysis of a broadr...
Potato epoxide hydrolase 1 exhibits rich enantio- and regioselectivity in the hydrolysis of a broadr...
Computational enzyme design holds great promise for providing new biocatalysts for synthetic chemist...
Potato epoxide hydrolase 1 exhibits rich enantio- and regioselectivity in the hydrolysis of a broad ...
Computational enzyme design holds great promise for providing new biocatalysts for synthetic chemist...
The use of enzymes in preparative biocatalysis often requires tailoring enzyme selectivity by protei...
Computational enzyme design holds great promise for providing new biocatalysts for synthetic chemist...
Directed evolution of limonene epoxide hydrolase (LEH), which catalyzes the hydrolytic desymmetrizat...
Directed evolution of limonene epoxide hydrolase (LEH), which catalyzes the hydrolytic desymmetrizat...
Directed evolution of limonene epoxide hydrolase (LEH), which catalyzes the hydrolytic desymmetrizat...
Directed evolution of limonene epoxide hydrolase (LEH), which catalyzes the hydrolytic desymmetrizat...
Directed evolution of limonene epoxide hydrolase (LEH), which catalyzes the hydrolytic desymmetrizat...
Directed evolution of limonene epoxide hydrolase (LEH), which catalyzes the hydrolytic desymmetrizat...
Limonene-1,2-epoxide hydrolases (LEHs), a subset of the epoxide hydrolase family, present interestin...
The challenge of optimizing several parameters in the directed evolution of enzymes remains a centra...
Potato epoxide hydrolase 1 exhibits rich enantio- and regioselectivity in the hydrolysis of a broadr...
Potato epoxide hydrolase 1 exhibits rich enantio- and regioselectivity in the hydrolysis of a broadr...
Computational enzyme design holds great promise for providing new biocatalysts for synthetic chemist...
Potato epoxide hydrolase 1 exhibits rich enantio- and regioselectivity in the hydrolysis of a broad ...
Computational enzyme design holds great promise for providing new biocatalysts for synthetic chemist...
The use of enzymes in preparative biocatalysis often requires tailoring enzyme selectivity by protei...
Computational enzyme design holds great promise for providing new biocatalysts for synthetic chemist...