The Journal of Organic Chemistry · 2006 · 108 citations · 32 references
BiosynthesisBioorganic ChemistryEngineeringBiochemistryAldehyde DehydrogenaseCyclopentanone MonooxygenaseBiocatalysisNatural SciencesEnzyme CatalysisBiochemical EngineeringMolecular BiologySynthetic BiologyMetabolic EngineeringActive SiteChemical BiologyStructure-function Enzyme KineticsRedox BiologyPutative Active Site
This paper outlines the design and execution of the first mini-evolution of cyclopentanone monooxygenase (CPMO). The methodology described is a relatively inexpensive and rapid way to obtain mutant enzymes with the desired characteristics. Several successful mutants with enhanced enantioselectivities were identified. For example, mutant-catalyzed oxidation of 4-methoxycyclohexanone gave the corresponding lactone with 92% entantiometric excess (ee) compared to the 46% ee achieved with wild-type cyclohexanone monoxygenase (WT-CHMO). The original design of the mini-evolution and the following evaluation of mutants can provide valuable insights into the active site's construction and dynamics and can suggest other catalytically profitable mutations within the putative active site.
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Vectors for selective expression of cloned DNAs by T7 RNA polymerase
Alan H. Rosenberg, Barbara N. Lade, Chui Dao-shan et al. · Gene · 1987 · 1.5K citations
Nuala A. DONOGHUE, D. B. Norris, Peter Trudgill · European Journal of Biochemistry · 1976 · 333 citations · Full text
Biochemistry, Reactive Nitrogen Specie, Natural Sciences +14