(E)-2-methyl- and (E)-3-methyl-2,4-pentadien-1-ols are reduced to (S)-2-methyl- and (S)-3-methyl-4-penten-1-ols, respectively, using baker's yeast as a regio- and stereoselective reagent. This microbiological conversion provides an efficient route to bifunctional and enantiomerically pure C6-building blocks containing the C' -CH(Me )-C'' grouping
The BY-redox biotransformations of methyl aryl ketones and methyl aryl carbinols, respectively, vary...
It has been shown that whole cells of different strains of yeast catalyze stereoselective oxidation ...
Different strategies for stereoselective microbial preparation of various chiral aromatic compounds ...
The biohydrogenation of 2-substituted allyl alcohols 1a-c proceeds enantioselectively (95-98% ee) to...
Baker's yeast has been successful employed to reduce carbonyl compounds carrying appropriated substi...
The baker's yeast mediated biohydrogenation of unsaturated compounds containing a methylene group ma...
Microbial synthesis is an important contribution to Green Chemistry and production-integrated enviro...
Reduction of beta-hydroxy ketones to the corresponding 1,3-diols by baker's yeast was investigated, ...
The reduction of bicyclo[3.2.0]hept-3-en-6-ones with baker's yeast to a mixture of enantiomerically ...
The stereoselectivity of the reduction of rac-3-methyl1-(phenylsulfonyl)hexan-2-one (1) to 3-methyl1...
Ethyl 4,4-dimethoxy-3-methylbut-2-enoate (1; R = CO2Et) has been prepared as a mixture of (E)-and (Z...
Whole baker's yeast cells reduce t-butyl 6-chloro-3,5-dioxohexanoate regioselectively to the corresp...
The baker's yeast biohydrogenation of the 2-substituted allyl alcohol 2a, in turn prepared from dihy...
Pure chiral molecules are needed in the pharmaceutical and chemical industry as intermediates for th...
Baker's yeast reduces 1,1,1-trifluoro-2,4-pentanedione with high regio- and enantio-selectivity to g...
The BY-redox biotransformations of methyl aryl ketones and methyl aryl carbinols, respectively, vary...
It has been shown that whole cells of different strains of yeast catalyze stereoselective oxidation ...
Different strategies for stereoselective microbial preparation of various chiral aromatic compounds ...
The biohydrogenation of 2-substituted allyl alcohols 1a-c proceeds enantioselectively (95-98% ee) to...
Baker's yeast has been successful employed to reduce carbonyl compounds carrying appropriated substi...
The baker's yeast mediated biohydrogenation of unsaturated compounds containing a methylene group ma...
Microbial synthesis is an important contribution to Green Chemistry and production-integrated enviro...
Reduction of beta-hydroxy ketones to the corresponding 1,3-diols by baker's yeast was investigated, ...
The reduction of bicyclo[3.2.0]hept-3-en-6-ones with baker's yeast to a mixture of enantiomerically ...
The stereoselectivity of the reduction of rac-3-methyl1-(phenylsulfonyl)hexan-2-one (1) to 3-methyl1...
Ethyl 4,4-dimethoxy-3-methylbut-2-enoate (1; R = CO2Et) has been prepared as a mixture of (E)-and (Z...
Whole baker's yeast cells reduce t-butyl 6-chloro-3,5-dioxohexanoate regioselectively to the corresp...
The baker's yeast biohydrogenation of the 2-substituted allyl alcohol 2a, in turn prepared from dihy...
Pure chiral molecules are needed in the pharmaceutical and chemical industry as intermediates for th...
Baker's yeast reduces 1,1,1-trifluoro-2,4-pentanedione with high regio- and enantio-selectivity to g...
The BY-redox biotransformations of methyl aryl ketones and methyl aryl carbinols, respectively, vary...
It has been shown that whole cells of different strains of yeast catalyze stereoselective oxidation ...
Different strategies for stereoselective microbial preparation of various chiral aromatic compounds ...