Enzyme

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     1. Oxidoreductases
        1.14 Acting on paired donors, with incorporation or reduction of molecular oxygen
            1.14.13 With NADH or NADPH as one donor, and incorporation of one atom of oxygen into the other donor
ID:1.14.13.105
Description:Monocyclic monoterpene ketone monooxygenase.
Alternative Name: MMKMO.
Dihydrocarvone 1,2-monooxygenase.
1-hydroxy-2-oxolimonene 1,2-monooxygenase.

3D structure

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References

External Links

UniProtKB Enzyme Link: UniProtKB 1.14.13.105
BRENDA Enzyme Link: BRENDA 1.14.13.105
KEGG Enzyme Link: KEGG1.14.13.105
BioCyc Enzyme Link: BioCyc 1.14.13.105
ExPASy Enzyme Link: ExPASy1.14.13.105
EC2PDB Enzyme Link: EC2PDB 1.14.13.105
ExplorEnz Enzyme Link: ExplorEnz 1.14.13.105
PRIAM enzyme-specific profiles Link: PRIAM 1.14.13.105
IntEnz Enzyme Link: IntEnz 1.14.13.105
MEDLINE Enzyme Link: MEDLINE 1.14.13.105
MSA:

1.14.13.105;

Phylogenetic Tree:

1.14.13.105;

Uniprot:
M-CSA:
RHEA:32431 (1R,4S)-menthone + H(+) + NADPH + O2 = (4R,7S)-7-isopropyl-4-methyloxepan-2-one + H2O + NADP(+)
RULE(radius=1) [*:1]-[CH;+0:2](-[*:3])-[C;H0;+0:4](=[*:5])-[*:6].[*:7]-[N;H0;+0:8]1-[CH;+0:9]=[C;H0;+0:10](-[*:11])-[CH2;+0:12]-[CH;+0:13]=[CH;+0:14]-1.[H+;H0:15].[O;H0;+0:16]=[O;H0;+0:17]>>[*:1]-[CH;+0:2](-[*:3])-[O;H0;+0:17]-[C;H0;+0:4](=[*:5])-[*:6].[*:7]-[n+;H0:8]1:[cH;+0:9]:[c;H0;+0:10](-[*:11]):[cH;+0:12]:[cH;+0:13]:[cH;+0:14]:1.[OH2;+0:16]
Reaction
Core-to-Core More
Core-to-Core More

References

TitleAuthorsDatePubMed ID
Biocatalytic Characterization of Human FMO5: Unearthing Baeyer-Villiger Reactions in Humans.Fiorentini F, Geier M, Binda C, Winkler M, Faber K, Hall M, Mattevi A2016 Apr 1526771671
Metabolism of carveol and dihydrocarveol in Rhodococcus erythropolis DCL14.van der Werf MJ, Boot AM2000 May10832640
Rhodococcus erythropolis DCL14 contains a novel degradation pathway for limonene.van der Werf MJ, Swarts HJ, de Bont JA1999 May10224006
Purification and characterization of a Baeyer-Villiger mono-oxygenase from Rhodococcus erythropolis DCL14 involved in three different monocyclic monoterpene degradation pathways.Van Der Werf MJ2000 May 110769172

RHEA:32435 dihydrocarvone + H(+) + NADPH + O2 = 4-isopropenyl-7-methyloxepan-2-one + H2O + NADP(+)
RULE(radius=1) [*:1]-[CH;+0:2](-[*:3])-[C;H0;+0:4](=[*:5])-[*:6].[*:7]-[N;H0;+0:8]1-[CH;+0:9]=[C;H0;+0:10](-[*:11])-[CH2;+0:12]-[CH;+0:13]=[CH;+0:14]-1.[H+;H0:15].[O;H0;+0:16]=[O;H0;+0:17]>>[*:1]-[CH;+0:2](-[*:3])-[O;H0;+0:17]-[C;H0;+0:4](=[*:5])-[*:6].[*:7]-[n+;H0:8]1:[cH;+0:9]:[c;H0;+0:10](-[*:11]):[cH;+0:12]:[cH;+0:13]:[cH;+0:14]:1.[OH2;+0:16]
Reaction
Core-to-Core More
Core-to-Core More

References

TitleAuthorsDatePubMed ID
Metabolism of carveol and dihydrocarveol in Rhodococcus erythropolis DCL14.van der Werf MJ, Boot AM2000 May10832640
Rhodococcus erythropolis DCL14 contains a novel degradation pathway for limonene.van der Werf MJ, Swarts HJ, de Bont JA1999 May10224006
Purification and characterization of a Baeyer-Villiger mono-oxygenase from Rhodococcus erythropolis DCL14 involved in three different monocyclic monoterpene degradation pathways.Van Der Werf MJ2000 May 110769172

RHEA:32583 dihydrocarvone + H(+) + NADPH + O2 = 6-isopropenyl-3-methyloxepan-2-one + H2O + NADP(+)
RULE(radius=1) [*:1]-[N;H0;+0:2]1-[CH;+0:3]=[C;H0;+0:4](-[*:5])-[CH2;+0:6]-[CH;+0:7]=[CH;+0:8]-1.[*:9]=[C;H0;+0:10](-[*:11])-[CH2;+0:12]-[*:13].[H+;H0:14].[O;H0;+0:15]=[O;H0;+0:16]>>[*:1]-[n+;H0:2]1:[cH;+0:3]:[c;H0;+0:4](-[*:5]):[cH;+0:6]:[cH;+0:7]:[cH;+0:8]:1.[*:9]=[C;H0;+0:10](-[*:11])-[O;H0;+0:16]-[CH2;+0:12]-[*:13].[OH2;+0:15]
Reaction
Core-to-Core More
Core-to-Core More

References

TitleAuthorsDatePubMed ID
Metabolism of carveol and dihydrocarveol in Rhodococcus erythropolis DCL14.van der Werf MJ, Boot AM2000 May10832640
Rhodococcus erythropolis DCL14 contains a novel degradation pathway for limonene.van der Werf MJ, Swarts HJ, de Bont JA1999 May10224006
Purification and characterization of a Baeyer-Villiger mono-oxygenase from Rhodococcus erythropolis DCL14 involved in three different monocyclic monoterpene degradation pathways.Van Der Werf MJ2000 May 110769172

RHEA:55004 1-hydroxylimonen-2-one + NADPH + O2 = 3-isopropenyl-6-oxoheptanoate + H2O + NADP(+)
RULE(radius=1) [*:1]-[N;H0;+0:2]1-[CH;+0:3]=[C;H0;+0:4](-[*:5])-[CH2;+0:6]-[CH;+0:7]=[CH;+0:8]-1.[*:9]=[C;H0;+0:10](-[*:11])-[C;H0;+0:12](-[*:13])(-[*:14])-[OH;+0:15].[O;H0;+0:16]=[O;H0;+0:17]>>([*:13]-[C;H0;+0:12](-[*:14])=[O;H0;+0:15].[*:9]=[C;H0;+0:10](-[*:11])-[OH;+0:16]).[*:1]-[n+;H0:2]1:[cH;+0:3]:[c;H0;+0:4](-[*:5]):[cH;+0:6]:[cH;+0:7]:[cH;+0:8]:1.[OH2;+0:17]
Reaction
Core-to-Core More

References

TitleAuthorsDatePubMed ID
Rhodococcus erythropolis DCL14 contains a novel degradation pathway for limonene.van der Werf MJ, Swarts HJ, de Bont JA1999 May10224006
Purification and characterization of a Baeyer-Villiger mono-oxygenase from Rhodococcus erythropolis DCL14 involved in three different monocyclic monoterpene degradation pathways.Van Der Werf MJ2000 May 110769172