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Enantioselective Synthesis of 4-(Dimethylamino)pyridinesthrough a Chemical Oxidation-Enzymatic Reduction Sequence.Application in Asymmetric Catalysis

Autor(es) y otros:
Busto García, Benjamín EduardoAutoridad Uniovi; Gotor Fernández, VicenteAutoridad Uniovi; Gotor Santamaría, Vicente MiguelAutoridad Uniovi
Fecha de publicación:
2006
Versión del editor:
https://doi.org/10.1002/adsc.200600274
Citación:
Advanced Synthesis and Catalysis, 348(18), p. 2626-2632 (2006); doi:10.1002/adsc.200600274
Descripción física:
p. 2626-2632
Resumen:

Enantiomerically pure 4-(dimethylamino)-3-(1-hydroxyalkyl)pyridines and 4-(dimethylamino)-3-[hydroxyACHTUNGTRENNUNG(phenyl)methyl]pyridine have been pre-pared through efficient chemoenzymatic routes. Forthis purpose different lipases and oxidoreductaseshave been tested in the preparation of opticallyactive 4-chloro derivatives and baker´s yeast wasfound to be an excellent catalyst for the bioreduc-tions of the corresponding ketones. Their applica-tions as enantioselective nucleophilic catalysts havebeen studied, important catalytic properties were ob-served in the stereoselective construction of quater-nary centers

Enantiomerically pure 4-(dimethylamino)-3-(1-hydroxyalkyl)pyridines and 4-(dimethylamino)-3-[hydroxyACHTUNGTRENNUNG(phenyl)methyl]pyridine have been pre-pared through efficient chemoenzymatic routes. Forthis purpose different lipases and oxidoreductaseshave been tested in the preparation of opticallyactive 4-chloro derivatives and baker´s yeast wasfound to be an excellent catalyst for the bioreduc-tions of the corresponding ketones. Their applica-tions as enantioselective nucleophilic catalysts havebeen studied, important catalytic properties were ob-served in the stereoselective construction of quater-nary centers

URI:
http://hdl.handle.net/10651/54882
ISSN:
1615-4150
DOI:
10.1002/adsc.200600274
Patrocinado por:

We thank Novo Nordisk Co. for the generous gift of theCAL-B (Novozyme 435) and Jlich Fine Chemicals for alco-hol dehydrogenases from Thermoanaerobacter species (T-ADH) and Lactobacillus brevis (LB-ADH). Financial sup-port of this work by the European Project EU-04-LSHB-2003–503017 is gratefully acknowledged. V.G.-F. thanksMEC for a personal grant (Juan de la Cierva Program). E.B.thanks MEC for a pre-doctoral fellowship

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