1.1.1.75 1,3-diaminopropan-2-ol + NAD+ - Bacillus subtilis 2-aminoacetamide + NADH - ? 188637 1.1.1.75 1,3-diaminopropan-2-ol + NAD+ poor substrate Pseudomonas sp. 2-aminoacetamide + NADH - ? 188637 1.1.1.75 1-amino-3-diethylaminopropan-2-ol + NAD+ - Bacillus subtilis 2-amino-N,N-diethylacetamide + NADH - ? 188638 1.1.1.75 1-aminopropan-2,3-diol + NAD+ - Bacillus subtilis ? - ? 188636 1.1.1.75 2-aminocyclohexanol + NADP+ - Rhodococcus erythropolis 2-aminocyclohexanone + NADPH + H+ - ? 405533 1.1.1.75 butan-2,3-diol + NAD+ - Bacillus subtilis ? - ? 188634 1.1.1.75 D,L-1-aminopropan-2-ol + NAD+ - Rattus norvegicus aminoacetone + NADH - ? 188627 1.1.1.75 D,L-1-aminopropan-2-ol + NAD+ - Pseudomonas sp. aminoacetone + NADH - ? 188627 1.1.1.75 D,L-1-aminopropan-2-ol + NAD+ more active with L-enantiomer, activity with D-enantiomer might be due to D-aminopropanol specific enzyme Escherichia coli aminoacetone + NADH - ? 188627 1.1.1.75 D,L-1-aminopropan-2-ol + NAD+ at high substrate concentrations both enantiomers utilized at the same rate, at low substrate concentration L-enantiomer preferred over D-enantiomer Rattus norvegicus aminoacetone + NADH - ? 188627 1.1.1.75 D,L-1-aminopropan-2-ol + NAD+ D-enantiomer 50% of activity with L-enantiomer Bacillus subtilis aminoacetone + NADH - ir 188627 1.1.1.75 D,L-2-hydroxy-2-phenylethylamine + NAD+ - Pseudomonas sp. 2-amino-1-phenylethanone + NADH - ? 188639 1.1.1.75 D,L-3-hydroxybutyrate + NAD+ - Pseudomonas sp. ? - ? 188640 1.1.1.75 D,L-4-amino-3-hydroxybutyrate + NAD+ - Rattus norvegicus 4-amino-3-oxobutyrate + NADH - ? 188631 1.1.1.75 D,L-aminobutan-2-ol + NAD+ - Escherichia coli 1-amino-2-oxobutane + NADH - ? 188630 1.1.1.75 D,L-aminobutan-2-ol + NAD+ - Pseudomonas sp. 1-amino-2-oxobutane + NADH - ? 188630 1.1.1.75 D,L-phenylserine + NAD+ - Escherichia coli ? - ? 188629 1.1.1.75 D,L-phenylserine + NAD+ - Pseudomonas sp. ? - ? 188629 1.1.1.75 D-1-aminopropan-2-ol + NAD+ - Bacillus subtilis aminoacetone + NADH + H+ - r 451095 1.1.1.75 D-1-aminopropan-2-ol + NAD+ - Rattus norvegicus aminoacetone + NADH + H+ - r 451095 1.1.1.75 D-glucose + NADP+ - Rhodococcus erythropolis ? + NADPH + H+ - ? 405285 1.1.1.75 D-glucose + NADP+ - Rhodococcus erythropolis MAK154 ? + NADPH + H+ - ? 405285 1.1.1.75 hydroxyacetone + NAD+ no activity with acetone Bacillus subtilis 2-oxopropanal + NADH - ? 188635 1.1.1.75 L-1-amino-2-butanol + NADP+ - Rhodococcus erythropolis 1-amino-2-butanone + NADPH + H+ - ? 405532 1.1.1.75 L-1-amino-2-butanol + NADP+ - Rhodococcus erythropolis MAK154 1-amino-2-butanone + NADPH + H+ - ? 405532 1.1.1.75 L-1-amino-2-propanol + NADP+ - Rhodococcus erythropolis aminoacetone + NADPH + H+ - ? 402720 1.1.1.75 L-1-amino-2-propanol + NADP+ - Rhodococcus erythropolis MAK154 aminoacetone + NADPH + H+ - ? 402720 1.1.1.75 L-1-aminopropan-2-ol + NAD+ - Bacillus subtilis aminoacetone + NADH - ir 188626 1.1.1.75 L-1-aminopropan-2-ol + NAD+ - Escherichia coli aminoacetone + NADH - ? 188626 1.1.1.75 L-1-aminopropan-2-ol + NAD+ - Rattus norvegicus aminoacetone + NADH - ? 188626 1.1.1.75 L-1-aminopropan-2-ol + NAD+ - Pseudomonas sp. aminoacetone + NADH - r 188626 1.1.1.75 L-1-aminopropan-2-ol + NAD+ no activity with D-enantiomer Pseudomonas sp. aminoacetone + NADH - r 188626 1.1.1.75 L-1-aminopropan-2-ol + NAD+ involved in L-threonine and vitamin B12 pathway Escherichia coli aminoacetone + NADH - ? 188626 1.1.1.75 L-1-aminopropan-2-ol + NAD+ involved in L-threonine and vitamin B12 pathway Pseudomonas sp. aminoacetone + NADH - r 188626 1.1.1.75 L-1-aminopropan-2-ol + NAD+ possible role in carnitine metabolism Rattus norvegicus aminoacetone + NADH - ? 188626 1.1.1.75 L-1-aminopropan-2-ol + NADP+ - Escherichia coli aminoacetone + NADPH - ? 188628 1.1.1.75 L-1-aminopropan-2-ol + NADP+ - Rattus norvegicus aminoacetone + NADPH - ? 188628 1.1.1.75 L-1-aminopropan-2-ol + NADP+ about the same activity as with NAD+ as cofactor Pseudomonas sp. aminoacetone + NADPH - r 188628 1.1.1.75 L-1-aminopropan-2-ol + NADP+ half maximum activity Rattus norvegicus aminoacetone + NADPH - ? 188628 1.1.1.75 additional information the enzyme catalyzes the stereospecific dehydrogenation of several aminoalcohols and also catalyzes the NADPH-dependent asymmetric reduction of (S)-1-phenyl-2-methylaminopropan-1-one to d-psi-EP Rhodococcus erythropolis ? - ? 89 1.1.1.75 additional information substrate specificity of AADH and optimization of the catalytic reaction assay method, overview Rhodococcus erythropolis ? - ? 89 1.1.1.75 additional information the enzyme catalyzes the stereospecific dehydrogenation of several aminoalcohols and also catalyzes the NADPH-dependent asymmetric reduction of (S)-1-phenyl-2-methylaminopropan-1-one to d-psi-EP Rhodococcus erythropolis MAK154 ? - ? 89 1.1.1.75 additional information substrate specificity of AADH and optimization of the catalytic reaction assay method, overview Rhodococcus erythropolis MAK154 ? - ? 89 1.1.1.75 propan-1,2-diol + NAD+ - Bacillus subtilis ? - ? 188632 1.1.1.75 propan-1,3-diol + NAD+ - Bacillus subtilis ? - ? 188633