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IUBMB Comments A flavoprotein (FAD) with high specificity for monoprenyl isoflavone. The product of the prenyl epoxidation reaction contains an oxygen atom derived from O2 , but not from H2 O. It is slowly and non-enzymically converted into the corresponding dihydrofurano derivative. The enzyme in the fungus Botrytis cinerea is induced by the substrate analogue, 6-prenylnaringenin.
The expected taxonomic range for this enzyme is: Botrytis cinerea
Synonyms epoxidase, monoprenyl isoflavone, monoprenyl isoflavone monooxygenase, more
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epoxidase, monoprenyl isoflavone
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monoprenyl isoflavone monooxygenase
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7-O-methylluteone + NADPH + H+ + O2 = dihydrofurano derivatives + NADP+ + H2O
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7-O-methylluteone,NADPH:O2 oxidoreductase
A flavoprotein (FAD) with high specificity for monoprenyl isoflavone. The product of the prenyl epoxidation reaction contains an oxygen atom derived from O2, but not from H2O. It is slowly and non-enzymically converted into the corresponding dihydrofurano derivative. The enzyme in the fungus Botrytis cinerea is induced by the substrate analogue, 6-prenylnaringenin.
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2'-hydroxylupalbigenin + NADPH + O2
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2,3-dihydrokievitone + NADPH + O2
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7-O-methyl-2,3-dehydrokievitone + NADPH + O2
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7-O-methylluteone + NADH + O2
dihydrofurano derivative of 7-O-methylluteone + NAD+ + H2O
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7-O-methylluteone + NADPH + O2
dihydrofurano derivative of 7-O-methylluteone + NADP+ + H2O
licoisoflavone A + NADPH + O2
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luteone + NADPH + O2
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wighteone + NADPH + O2
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7-O-methylluteone + NADPH + O2
dihydrofurano derivative of 7-O-methylluteone + NADP+ + H2O
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7-O-methylluteone + NADPH + O2
dihydrofurano derivative of 7-O-methylluteone + NADP+ + H2O
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Substrates: key enzyme in metabolism of prenylated flavonoids. Enzyme is induced by the substrate analogue 6-prenylnaringenin Products: -
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7-O-methylluteone + NADPH + O2
dihydrofurano derivative of 7-O-methylluteone + NADP+ + H2O
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Substrates: key enzyme in metabolism of prenylated flavonoids. Enzyme is induced by the substrate analogue 6-prenylnaringenin Products: -
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FAD
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required for maximal activity
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brenda
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brenda
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Tanaka, M.; Tahara, S.
FAD-dependent epoxidase as a key enzyme in fungal metabolism of prenylated flavonoids
Phytochemistry
46
433-439
1997
Botrytis cinerea
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brenda
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