Enzyme

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EC Tree
     1. Oxidoreductases
        1.14 Acting on paired donors, with incorporation or reduction of molecular oxygen
            1.14.15 With reduced iron-sulfur protein as one donor, and incorporation of one atom of oxygen into the other donor
ID:1.14.15.25
Description:p-cymene methyl-monooxygenase.
Alternative Name: p-cymene methyl hydroxylase.

3D structure

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References

External Links

UniProtKB Enzyme Link: UniProtKB 1.14.15.25
BRENDA Enzyme Link: BRENDA 1.14.15.25
KEGG Enzyme Link: KEGG1.14.15.25
BioCyc Enzyme Link: BioCyc 1.14.15.25
ExPASy Enzyme Link: ExPASy1.14.15.25
EC2PDB Enzyme Link: EC2PDB 1.14.15.25
ExplorEnz Enzyme Link: ExplorEnz 1.14.15.25
PRIAM enzyme-specific profiles Link: PRIAM 1.14.15.25
IntEnz Enzyme Link: IntEnz 1.14.15.25
MEDLINE Enzyme Link: MEDLINE 1.14.15.25
MSA:

1.14.15.25;

Phylogenetic Tree:

1.14.15.25;

Uniprot:
M-CSA:
RHEA:51604 2 H(+) + O2 + p-cymene + 2 reduced [2Fe-2S]-[ferredoxin] = 4-isopropylbenzyl alcohol + H2O + 2 oxidized [2Fe-2S]-[ferredoxin]
RULE(radius=1) [*:1]-[CH3;+0:2].[*:3]-[Fe;H0;+0:4]-[*:5].[*:6]-[Fe;H0;+0:7]-[*:8].[H+;H0:9].[H+;H0:10].[O;H0;+0:11]=[O;H0;+0:12]>>[*:1]-[CH2;+0:2]-[OH;+0:11].[*:3]-[Fe+;H0:4]-[*:5].[*:6]-[Fe+;H0:7]-[*:8].[OH2;+0:12]
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References

TitleAuthorsDatePubMed ID
p-Cymene catabolic pathway in Pseudomonas putida F1: cloning and characterization of DNA encoding conversion of p-cymene to p-cumate.Eaton RW1997 May9150211
Reductase gene sequences and protein structures: p-cymene methyl hydroxylase.Dutta TK, Gunsalus IC1997 Apr 179144566
Cloning and characterization of a p-cymene monooxygenase from Pseudomonas chlororaphis subsp. aureofaciens.Dutta TK, Chakraborty J, Roy M, Ghosal D, Khara P, Gunsalus IC2010 Dec21035544
Biotransformations catalyzed by cloned p-cymene monooxygenase from Pseudomonas putida F1.Nishio T, Patel A, Wang Y, Lau PC2001 Apr11341314