Combination of Metal-Catalyzed Cycloisomerizations and Biocatalysis in Aqueous Media: Asymmetric Construction of Chiral Alcohols, Lactones, and γ‑Hydroxy-Carbonyl Compounds

The combination of the metal-catalyzed cycloisomerization of alkynes containing a tethered nucleophile as substituent in aqueous media (followed by the spontaneous hydrolysis, hydroalkoxylation, or aminolysis of the transiently formed five-membered heterocycles) with the subsequent enantioselective...

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Veröffentlicht in:ACS catalysis 2017-11, Vol.7 (11), p.7753-7759
Hauptverfasser: Rodríguez-Álvarez, María J, Ríos-Lombardía, Nicolás, Schumacher, Sören, Pérez-Iglesias, David, Morís, Francisco, Cadierno, Victorio, García-Álvarez, Joaquín, González-Sabín, Javier
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Sprache:eng
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Zusammenfassung:The combination of the metal-catalyzed cycloisomerization of alkynes containing a tethered nucleophile as substituent in aqueous media (followed by the spontaneous hydrolysis, hydroalkoxylation, or aminolysis of the transiently formed five-membered heterocycles) with the subsequent enantioselective ketone bioreduction (mediated by KREDs) has been achieved. The overall transformations, which formally involve a three-step one-pot reaction, provide a variety of enantiopure valuable molecules (e.g., 1,4-diols, lactones, and γ-hydroxy-carbonyl compounds (carboxylic acids, esters, and amides)) with high conversions and enantioselectivities and under mild reaction conditions, disclosing the concept of integrated metal-catalyzed cycloisomerizations of alkynes and enzymatic catalysis in water.
ISSN:2155-5435
2155-5435
DOI:10.1021/acscatal.7b02183