1.14.13.69: alkene monooxygenase
This is an abbreviated version!
For detailed information about alkene monooxygenase, go to the full flat file.
Word Map on EC 1.14.13.69
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1.14.13.69
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epoxidation
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xanthobacter
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vinyl
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diiron
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nocardioides
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4-monooxygenase
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propyne
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dinuclear
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rhodochrous
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smmos
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epoxygenation
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epoxyethane
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corallinus
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autotrophicus
- 1.14.13.69
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epoxidation
- xanthobacter
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vinyl
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diiron
- nocardioides
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4-monooxygenase
- propyne
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dinuclear
- rhodochrous
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smmos
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epoxygenation
- epoxyethane
- corallinus
- autotrophicus
Reaction
Synonyms
AkMO, alkene epoxygenase, alkene monooxygenase, AMO, ethene MO, EtnABCD, EtnC, etnD, IsoMO, isoprene monooxygenase, More, PmoABCD, propene MO, propene monooxygenase, XAMO
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Natural Substrates Products
Natural Substrates Products on EC 1.14.13.69 - alkene monooxygenase
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REACTION DIAGRAM
1,2-epoxypropane + NAD+ + H2O
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constitutive enzyme
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propene + NADH + H+ + O2
1,2-epoxypropane + NAD+ + H2O
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constitutive enzyme
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?
propene + NADH + H+ + O2
1,2-epoxypropane + NAD+ + H2O
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?
propene + NADH + H+ + O2
1,2-epoxypropane + NAD+ + H2O
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propene + NADH + H+ + O2
1,2-epoxypropane + NAD+ + H2O
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induction by propylene and propylene oxide and a variety of aliphatic and chlorinated alkenes and epoxides
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propene + NADH + H+ + O2
1,2-epoxypropane + NAD+ + H2O
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the inducible enzyme is central to the bacterial metabolism of aliphatic alkenes. Enzyme is expressed during growth of Xanthobacter on aliphatic alkenes or epoxides and repressed during growth on other carbon sources
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?
propene + NADH + H+ + O2
1,2-epoxypropane + NAD+ + H2O
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induction by propylene and propylene oxide and a variety of aliphatic and chlorinated alkenes and epoxides
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?
propene + NADH + H+ + O2
1,2-epoxypropane + NAD+ + H2O
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the inducible enzyme is central to the bacterial metabolism of aliphatic alkenes. Enzyme is expressed during growth of Xanthobacter on aliphatic alkenes or epoxides and repressed during growth on other carbon sources
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1,2-epoxypropane + NAD+ + H2O
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enables the growth on propene as sole carbon and energy source
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propene + NADH + O2
1,2-epoxypropane + NAD+ + H2O
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enables the growth on propene as sole carbon and energy source
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alkene monooxygenase and epoxyalkane:coenzyme M transferase are the initial enzymes of vinyl chloride and ethene biodegradation in strain JS614
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additional information
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ethene and propene are transformed by ethene-grown and propene-grown/EtO-induced JS614 to ethene oxide and propene oxide, respectively
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additional information
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Nocardioides sp. JS614 / ATCC BAA-499
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alkene monooxygenase and epoxyalkane:coenzyme M transferase are the initial enzymes of vinyl chloride and ethene biodegradation in strain JS614
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additional information
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Nocardioides sp. JS614 / ATCC BAA-499
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ethene and propene are transformed by ethene-grown and propene-grown/EtO-induced JS614 to ethene oxide and propene oxide, respectively
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additional information
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alternative alkene cleavage mechanism by incorporating 2 oxygen atoms of different oxygen molecules
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