Publication | Open Access
Chemoenzymatic Asymmetric Synthesis of Pregabalin Precursors via Asymmetric Bioreduction of β-Cyanoacrylate Esters Using Ene-Reductases
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Citations
36
References
2013
Year
EngineeringOrganic ChemistryPregabalin PrecursorsGaba AnaloguesDiversity Oriented SynthesisBiosynthesisMutant VariantsStereoselective SynthesisBiotransformationBiochemistryBiocatalysisDiversity-oriented SynthesisNatural Product SynthesisAsymmetric CatalysisChemoenzymatic Asymmetric SynthesisEnantioselective SynthesisBiomolecular EngineeringNatural Sciencesβ-Cyanoacrylate Esters
The asymmetric bioreduction of a library of β-cyanoacrylate esters using ene-reductases was studied with the aim to provide a biocatalytic route to precursors for GABA analogues, such as pregabalin. The stereochemical outcome could be controlled by substrate-engineering through size-variation of the ester moiety and by employing stereochemically pure (E)- or (Z)-isomers, which allowed to access both enantiomers of each product in up to quantitative conversion in enantiomerically pure form. In addition, stereoselectivities and conversions could be improved by mutant variants of OPR1, and the utility of the system was demonstrated by preparative-scale applications.
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