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Annals of Microbiology, ISSN 1590-4261, 6/2016, Volume 66, Issue 2, pp. 875 - 882
Ferulic acid is an abundant cinnamic acid derivative found in the plant world and has been utilized by microorganisms to produce value-added compounds such as... 
Life Sciences | Microbial Ecology | Medical Microbiology | Paenibacillus lactis | Microbiology | Microbial Genetics and Genomics | Mycology | Applied Microbiology | Bioconversion | Vanillic acid | Vanillin | Ferulic acid | PSEUDOMONAS-FLUORESCENS | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | MICROBIOLOGY | PHYLOGENETIC TREES | STRAIN
Journal Article
Organic Letters, ISSN 1523-7060, 06/2017, Volume 19, Issue 12, pp. 3151 - 3154
A new imine reductase from Stackebrandtia nassauensis (SnIR) was identified, which displayed over 25- to 1400-fold greater catalytic efficiency for... 
AMINATION | OVERACTIVE BLADDER | PAENIBACILLUS-LACTIS | CHEMISTRY, ORGANIC | TRANSFER HYDROGENATION | (S)-IMINE REDUCTASE | SELECTIVE REDUCTION | BIOTIN-STREPTAVIDIN TECHNOLOGY | (R)-IMINE REDUCTASE | CYCLIC IMINES | HIGHLY EFFICIENT
Journal Article
Current Opinion in Chemical Biology, ISSN 1367-5931, 04/2017, Volume 37, pp. 19 - 25
Journal Article
ChemCatChem, ISSN 1867-3880, 08/2018, Volume 10, Issue 15, pp. 3236 - 3246
Imine reductases (IREDs) have recently become a primary focus of research in biocatalysis, complementing other classes of amine‐forming enzymes such as... 
Amines | Asymmetric Catalysis | Biocatalysis | Imine Reductases | Oxidoreductases | OPTICALLY-ACTIVE AMINES | CHEMISTRY, PHYSICAL | (S)-IMINE REDUCTASE | SELECTIVE REDUCTION | STREPTOSPORANGIUM-ROSEUM | CHIRAL AMINES | AMINATION | PAENIBACILLUS-LACTIS | ASYMMETRIC REDUCTION | (R)-IMINE REDUCTASE | CYCLIC IMINES | Schiff bases | Niacinamide | Catalysis | Full Paper | Full Papers
Journal Article
Journal of Applied Microbiology, ISSN 1364-5072, 11/2017, Volume 123, Issue 5, pp. 1133 - 1147
Journal Article
Journal Article
Journal Article
ACS CATALYSIS, ISSN 2155-5435, 06/2016, Volume 6, Issue 6, pp. 3880 - 3889
The imine reductase AoIRED from Amycolatopsis orientalis (Uniprot R4SNK4) catalyzes the NADPHdependent reduction of a wide range of prochiral imines and... 
NADPH | chiral amine | OPTICALLY-ACTIVE AMINES | imine reductase | CHEMISTRY, PHYSICAL | (S)-IMINE REDUCTASE | SELECTIVE REDUCTION | biocatalysis | DEHYDROGENASE | CHIRAL AMINES | PAENIBACILLUS-LACTIS | ASYMMETRIC REDUCTION | oxidoreductase | (R)-IMINE REDUCTASE | CYCLIC IMINES
Journal Article
ACS Catalysis, ISSN 2155-5435, 03/2018, Volume 8, Issue 3, pp. 2622 - 2628
The asymmetric reductive amination of ketones with ammonia using engineered amine dehydrogenases (AmDHs) is a particularly attractive and environmentally... 
amine dehydrogenase | chiral amine | protein engineering | reductive amination | substrate scope | biocatalysis | IMINE REDUCTASES IREDS | CHEMISTRY, PHYSICAL | SATURATION MUTAGENESIS | CHIRAL AMINES | SECONDARY ALCOHOLS | PHENYLALANINE DEHYDROGENASE | OXIDASE MAO-N | PAENIBACILLUS-LACTIS | KINETIC RESOLUTION | OMEGA-TRANSAMINASES
Journal Article
Chinese Journal of Catalysis, ISSN 1872-2067, 10/2018, Volume 39, Issue 10, pp. 1625 - 1632
The asymmetric reductive amination of achiral ketones with ammonia is a particularly attractive reaction for the synthesis of chiral amines. Although several... 
Reductive amination | Prochiral ketones | Chiral amine | Biocatalysis | Asymmetric synthesis | IMINE REDUCTASES IREDS | BIOCATALYSTS | ASYMMETRIC-SYNTHESIS | DERACEMIZATION | CHEMISTRY, PHYSICAL | CHIRAL AMINES | ENGINEERING, CHEMICAL | SUBSTRATE-SPECIFICITY | OXIDASE MAO-N | PAENIBACILLUS-LACTIS | KINETIC RESOLUTION | CHEMISTRY, APPLIED | OMEGA-TRANSAMINASES
Journal Article