1.14.13.243: toluene 2-monooxygenase
This is an abbreviated version!
For detailed information about toluene 2-monooxygenase, go to the full flat file.
Word Map on EC 1.14.13.243
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1.14.13.243
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cepacia
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burkholderia
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trichloroethylene
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mendocina
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regiospecificity
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4-monooxygenase
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microcosms
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1-naphthol
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m-cresol
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cis-dce
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pickettii
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cis-1,2-dichloroethylene
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tce-degrading
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ethenes
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aquifer
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degradation
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analysis
- 1.14.13.243
- cepacia
- burkholderia
- trichloroethylene
-
mendocina
-
regiospecificity
-
4-monooxygenase
-
microcosms
- 1-naphthol
- m-cresol
-
cis-dce
-
pickettii
- cis-1,2-dichloroethylene
-
tce-degrading
- ethenes
-
aquifer
- degradation
- analysis
Reaction
Synonyms
toluene ortho-monooxygenase, tomA1/2/3/4/5
ECTree
Advanced search results
Substrates Products
Substrates Products on EC 1.14.13.243 - toluene 2-monooxygenase
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REACTION DIAGRAM
2-methylphenol + NADH + H+ + O2
3-methylcatechol + NAD+ + H2O
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isoindigo + NAD+ + H2O
Q9ANX4; Q9ANX0; Q9ANX3; Q8VSV8; Q9ANX1; Q8VSV9
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-
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?
indole + NADH + H+ + O2
isoindigo + NAD+ + H2O
Q9ANX4; Q9ANX0; Q9ANX3; Q8VSV8; Q9ANX1; Q8VSV9
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-
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?
methyl p-tolyl sulfoxide + NAD+ + H2O
Q9ANX4; Q9ANX0; Q9ANX3; Q8VSV8; Q9ANX1; Q8VSV9
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-
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?
methyl p-tolyl sulfide + NADH + H+ + O2
methyl p-tolyl sulfoxide + NAD+ + H2O
Q9ANX4; Q9ANX0; Q9ANX3; Q8VSV8; Q9ANX1; Q8VSV9
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-
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?
1-naphthol + NAD+ + H2O
Q9ANX4; Q9ANX0; Q9ANX3; Q8VSV8; Q9ANX1; Q8VSV9
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-
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?
naphthalene + NADH + H+ + O2
1-naphthol + NAD+ + H2O
Q9ANX4; Q9ANX0; Q9ANX3; Q8VSV8; Q9ANX1; Q8VSV9
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?
methyl phenyl sulfoxide + NAD+ + H2O
Q9ANX4; Q9ANX0; Q9ANX3; Q8VSV8; Q9ANX1; Q8VSV9
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?
thioanisole + NADH + H+ + O2
methyl phenyl sulfoxide + NAD+ + H2O
Q9ANX4; Q9ANX0; Q9ANX3; Q8VSV8; Q9ANX1; Q8VSV9
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?
toluene + NADH + H+ + O2
2-methylphenol + NAD+ + H2O
Q9ANX4; Q9ANX0; Q9ANX3; Q8VSV8; Q9ANX1; Q8VSV9
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?
toluene + NADH + H+ + O2
2-methylphenol + NAD+ + H2O
Q9ANX4; Q9ANX0; Q9ANX3; Q8VSV8; Q9ANX1; Q8VSV9
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?
toluene + NADH + H+ + O2
2-methylphenol + NAD+ + H2O
Q52570; Q52572; Q52569; Q52571; Q52573; Q52574
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Q9ANX4; Q9ANX0; Q9ANX3; Q8VSV8; Q9ANX1; Q8VSV9
enzyme additionally oxidizes trichloroethylene, reaction of EC 1.14.13.243. All three purified toluene 2-monooxygenase protein components and NADH are required to reconstitute full trichloroethylene oxidation activity in vitro. Trichloroethylene-dependent inactivation of toluene 2-monooxygenase activity is observed
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additional information
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Q9ANX4; Q9ANX0; Q9ANX3; Q8VSV8; Q9ANX1; Q8VSV9
wild-type forms isoindigo via C-2 hydroxylation of the indole pyrrole. Mutant TomA3 A113G produces 4-hydroxyindole. TomA3 V106/A113 mutants with hydrophobic, polar, or charged amino acids hydroxylate indole at the C-3 and C-2 positions, forming isatin, indigo, and indirubin in a variety of distributions
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additional information
?
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Q9ANX4; Q9ANX0; Q9ANX3; Q8VSV8; Q9ANX1; Q8VSV9
wild-type forms isoindigo via C-2 hydroxylation of the indole pyrrole. Mutant TomA3 A113G produces 4-hydroxyindole. TomA3 V106/A113 mutants with hydrophobic, polar, or charged amino acids hydroxylate indole at the C-3 and C-2 positions, forming isatin, indigo, and indirubin in a variety of distributions
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?
additional information
?
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wild-type forms isoindigo via C-2 hydroxylation of the indole pyrrole. Mutant TomA3 A113G produces 4-hydroxyindole. TomA3 V106/A113 mutants with hydrophobic, polar, or charged amino acids hydroxylate indole at the C-3 and C-2 positions, forming isatin, indigo, and indirubin in a variety of distributions
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?
additional information
?
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Q9ANX4; Q9ANX0; Q9ANX3; Q8VSV8; Q9ANX1; Q8VSV9
enzyme additionally oxidizes trichloroethylene, reaction of EC 1.14.13.243. All three purified toluene 2-monooxygenase protein components and NADH are required to reconstitute full trichloroethylene oxidation activity in vitro. Trichloroethylene-dependent inactivation of toluene 2-monooxygenase activity is observed
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-
?
additional information
?
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enzyme additionally oxidizes trichloroethylene, reaction of EC 1.14.13.243. All three purified toluene 2-monooxygenase protein components and NADH are required to reconstitute full trichloroethylene oxidation activity in vitro. Trichloroethylene-dependent inactivation of toluene 2-monooxygenase activity is observed
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?