| Literature DB >> 26153139 |
Mathias Pickl1, Michael Fuchs, Silvia M Glueck, Kurt Faber.
Abstract
Alcohols are a rich source of compounds from renewable sources, but they have to be activated in order to allow the modification of their carbon backbone. The latter can be achieved via oxidation to the corresponding aldehydes or ketones. As an alternative to (thermodynamically disfavoured) nicotinamide-dependent alcohol dehydrogenases, alcohol oxidases make use of molecular oxygen but their application is under-represented in synthetic biotransformations. In this review, the mechanism of copper-containing and flavoprotein alcohol oxidases is discussed in view of their ability to accept electronically activated or non-activated alcohols and their propensity towards over-oxidation of aldehydes yielding carboxylic acids. In order to facilitate the selection of the optimal enzyme for a given biocatalytic application, the substrate tolerance of alcohol oxidases is compiled and discussed: Substrates are classified into groups (non-activated prim- and sec-alcohols; activated allylic, cinnamic and benzylic alcohols; hydroxy acids; sugar alcohols; nucleotide alcohols; sterols) together with suitable alcohol oxidases, their microbial source, relative activities and (stereo)selectivities.Entities:
Mesh:
Substances:
Year: 2015 PMID: 26153139 PMCID: PMC4513209 DOI: 10.1007/s00253-015-6699-6
Source DB: PubMed Journal: Appl Microbiol Biotechnol ISSN: 0175-7598 Impact factor: 4.813
Scheme 1Biocatalytic oxidation of alcohols using an alcohol oxidase
Scheme 2Catalytic cycle of flavin-containing alcohol oxidases
Scheme 3Aldehyde oxidation via the hydrate intermediate
Scheme 4Two-step oxidation of choline by choline oxidase yielding betaine
Scheme 5Catalytic cycle of copper-containing oxidases
Primary aliphatic alcohols
| Entry | Substrate | Oxidase | Reference |
|---|---|---|---|
| Mono-alcohols | |||
| 1 | 1-Alkanols C1–C5 | SCAOb from | Kato et al. |
| 2 | 1-Alkanols C7–C14, C16 | SCAOb from | Kumar and Goswami |
| 3 | 2-Bromoethanol | SCAO from | Menon et al. |
| Diols and triols | |||
| 4 | 1,2-Ethanediol | SCAOb from | Ko et al. |
| 5 | 1,10-Decanediol | LCAOb from | Eirich et al. |
| 6 | 1,16-Hexadecanediol | LCAOb from | Kumar and Goswami |
| 7 | 1,2-Alkanediol C4–C6 | AldOb from | Van Hellemond et al. |
| 8 | 1,3,5-Pentanetriol | AldOb from | Van Hellemond et al. |
| 9 | 1,3-Butanediol | AldOb from | Van Hellemond et al. |
| 10 | 3-Chloro-1,2-propanediol | GOasea from | Klibanov et al. |
| 11 | 1-Phenyl-1,2-ethanediol | AldOb from | Van Hellemond et al. |
| 12 | ω-Hydroxy-carboxylic acid | LCAOb from | Kumar and Goswami |
| Amino alcohols | |||
| 13 | Choline | CHOb from | Gadda et al. |
| Unsaturated alcohols | |||
| 14 | 3-Buten-1-ol | SCAOb from | Siebum et al. |
| 15 | 3-Buten-1,2-diol | AldOb from | Van Hellemond et al. |
| Branched alcohols | |||
| 16 | 2-Methyl-1-alkanol (C4–C6) | SCAOb from | Clark et al. |
| 17 | 3-Methyl-1-butanol | SCAOb from | Ko et al. |
| 18 | 1-Phenyl-3-propanol | SCAOb from | Kumar and Goswami |
| 19 | 3,3-Dimethylbutan-1-ol | CHOb from | Gadda et al. |
aCopper containing
bFlavin containing
cNone heme Fe2+ containing
Scheme 6Oxidation of primary alcohols by oxidases
Scheme 7Oxidation of secondary alcohols by alcohol oxidases
Secondary aliphatic alcohols
| Entry | Substrate | Oxidase | Reference |
|---|---|---|---|
| 1 | Polyvinyl alcohol | SAOa from | Sakai et al. |
| 2 | 2-Alkanols C3–C12, C16 | SAOa from | Ko et al. |
| 3 | 3-Alkanols C5–C8 | SAOa from | Sakai et al. |
| 4 | 4-Alkanols C7–C10 | SAOa from | Sakai et al. |
| 5 | 5-Nonanol | SAOa from | Sakai et al. |
| 6 | Cycloalkanols C6, C8 | SAOa from | Kawagoshi and Fujita |
| 7 | 1,2-Propanediol | SAOa from | Sakai et al. |
| 8 | 2,4-Pentanediol | SAOa from | Kawagoshi and Fujita |
aNon-heme Fe2+ containing
bFlavin-containing
Scheme 8Oxidation of allylic alcohols by alcohol oxidases
prim- and sec-Allylic alcohols
aCopper containing
bFlavin containing
Scheme 9Oxidation of benzylic alcohols by alcohol oxidases
prim- and sec-Benzylic alcohols
aCopper containing
bFlavin containing
cFe2+ containing
Scheme 10Enzymatic oxidation of hydroxy acids by hydroxy acid oxidases
α-Hydroxy acids
aCopper containing
bFlavin containing
Scheme 11Enzymatic oxidation and C=C isomerisation of cholesterol derivatives by cholesterol oxidase
Sterols
aCopper containing
bFlavin containing
Scheme 12Regioselectivity of alcohol oxidases on a hexose framework
Sugars
aCopper containing
bFlavin containing
Sugar alcohols and amino sugars
aCopper containing
bFlavin containing
Cofactor presence, substrate scope and propensity for over-oxidation of alcohol oxidases
| Enzyme | Cofactor | Substrate (major activities) | Over-oxidation |
|---|---|---|---|
| Alditol oxidase (AldOx) | FAD | Primary alcohols, sugar alcohols | Yes |
| Aryl alcohol oxidase (AAO) | FAD | Benzylic alcohols, allylic alcohols | Yes |
| Chitooligosaccharide oxidase (ChitO) | FAD | Sugars | No |
| Cholesterol oxidase (ChOx) | FAD | Sterols, allylic alcohols | No |
| Choline Oxidase (CHO) | FAD | Amino alcohols | Yes |
| Galactose oxidase (GOase) | Cu2+ | Benzylic alcohols, sugars | No |
| Glucooligosaccharide oxidase (GOO) | FAD | Sugars | No |
| Glucose oxidase (GOX) | FAD | Sugars | No |
| Glycerol Oxidase (GlycOx) | Cu2+ | Sugar alcohols | No |
| Glycerol 3-phosphate oxidase (GPO) | FAD | Secondary alcohols | No |
| Glycolate oxidase (GlyO) | FMN | α-Hydroxy acids | No |
| Hexose oxidase (HOX) | FAD | Sugars | No |
| Hydroxymethylfurfural oxidase (HMFO) | FAD | Benzylic alcohols, allylic alcohols | Yes |
| ( | FMN | α-Hydroxy acids | No |
| Isoamyl alcohol oxidase (IAO) | FAD | Branched aliphatic alcohols | Yes |
| L-lactate oxidase (LLO) | FMN | α-Hydroxy acids | No |
| Lactose oxidase (LAO) | FAD | Sugars | No |
| Long-chain alcohol oxidase (LCAO) | FAD | Aliphatic alcohols | No |
| Secondary alcohol oxidase (SAO) | Fe2+ | Secondary aliphatic alcohols | No |
| Short-chain alcohol oxidase (SCAO) | FAD | Aliphatic alcohols | Yes |
| Pyranose oxidase (P2O) | FAD | Sugars | No |
| Vanillyl alcohol oxidase (VAO) | FAD | Benzylic alcohols | Yes |