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(+)-p-menth-1-ene + H2O + ferrocenium hexafluorophosphate
[(4S)-4-(propan-2-yl)cyclohex-1-en-1-yl]methanol + reduced ferrocenium hexafluorophosphate
(R)-(-)-alpha-phellandrene + ferrocenium hexafluorophosphate
? + reduced ferrocenium hexafluorophosphate
(R)-limonene + H2O + acceptor
(+)-perillyl alcohol + reduced acceptor
(R)-limonene + H2O + ferrocenium hexafluorophosphate
(+)-perillyl alcohol + reduced ferrocenium hexafluorophosphate
W8X9R6; W8X092
hydroxylates the R- and S-enantiomers at a similar rate
-
-
?
(S)-limonene + H2O + acceptor
(-)-perillyl alcohol + reduced acceptor
(S)-limonene + H2O + ferrocenium hexafluorophosphate
(-)-perillyl alcohol + reduced ferrocenium hexafluorophosphate
W8X9R6; W8X092
hydroxylates the R- and S-enantiomers at a similar rate
-
-
?
alpha-terpinene + ferrocenium hexafluorophosphate
? + reduced ferrocenium hexafluorophosphate
W8X9R6; W8X092
-
-
-
?
limonene + H2O + ferrocenium hexafluorophosphate
perillyl alcohol + reduced ferrocenium hexafluorophosphate
W8X9R6; W8X092
hydroxylates the R- and S-enantiomers at a similar rate
-
-
?
perillyl alcohol + dithiothreitol
limonene + H2O + dithiothreitol S-oxide
W8X9R6; W8X092
-
-
-
?
terpinolene + ferrocenium hexafluorophosphate
? + reduced ferrocenium hexafluorophosphate
W8X9R6; W8X092
low activity
-
-
?
additional information
?
-
(+)-p-menth-1-ene + H2O + ferrocenium hexafluorophosphate
[(4S)-4-(propan-2-yl)cyclohex-1-en-1-yl]methanol + reduced ferrocenium hexafluorophosphate
W8X9R6; W8X092
-
-
-
?
(+)-p-menth-1-ene + H2O + ferrocenium hexafluorophosphate
[(4S)-4-(propan-2-yl)cyclohex-1-en-1-yl]methanol + reduced ferrocenium hexafluorophosphate
W8X9R6; W8X092
-
-
-
?
(R)-(-)-alpha-phellandrene + ferrocenium hexafluorophosphate
? + reduced ferrocenium hexafluorophosphate
W8X9R6; W8X092
-
-
-
?
(R)-(-)-alpha-phellandrene + ferrocenium hexafluorophosphate
? + reduced ferrocenium hexafluorophosphate
W8X9R6; W8X092
-
-
-
?
(R)-limonene + H2O + acceptor
(+)-perillyl alcohol + reduced acceptor
W8X9R6; W8X092
-
-
-
?
(R)-limonene + H2O + acceptor
(+)-perillyl alcohol + reduced acceptor
W8X9R6; W8X092
the enzyme is involved in degradation pathway of monocyclic limonene
-
-
?
(R)-limonene + H2O + acceptor
(+)-perillyl alcohol + reduced acceptor
W8X9R6; W8X092
the in vivo electron acceptor may be a heterodimeric electron transfer flavoprotein (ETF)
-
-
?
(R)-limonene + H2O + acceptor
(+)-perillyl alcohol + reduced acceptor
W8X9R6; W8X092
-
-
-
?
(R)-limonene + H2O + acceptor
(+)-perillyl alcohol + reduced acceptor
W8X9R6; W8X092
the enzyme is involved in degradation pathway of monocyclic limonene
-
-
?
(R)-limonene + H2O + acceptor
(+)-perillyl alcohol + reduced acceptor
W8X9R6; W8X092
the in vivo electron acceptor may be a heterodimeric electron transfer flavoprotein (ETF)
-
-
?
(S)-limonene + H2O + acceptor
(-)-perillyl alcohol + reduced acceptor
W8X9R6; W8X092
-
-
-
?
(S)-limonene + H2O + acceptor
(-)-perillyl alcohol + reduced acceptor
W8X9R6; W8X092
the enzyme is involved in degradation pathway of monocyclic limonene
-
-
?
(S)-limonene + H2O + acceptor
(-)-perillyl alcohol + reduced acceptor
W8X9R6; W8X092
the in vivo electron acceptor may be a heterodimeric electron transfer flavoprotein (ETF). The in vivo electron acceptor may be a heterodimeric electron transfer flavoprotein (ETF)
-
-
?
(S)-limonene + H2O + acceptor
(-)-perillyl alcohol + reduced acceptor
W8X9R6; W8X092
-
-
-
?
(S)-limonene + H2O + acceptor
(-)-perillyl alcohol + reduced acceptor
W8X9R6; W8X092
the enzyme is involved in degradation pathway of monocyclic limonene
-
-
?
(S)-limonene + H2O + acceptor
(-)-perillyl alcohol + reduced acceptor
W8X9R6; W8X092
the in vivo electron acceptor may be a heterodimeric electron transfer flavoprotein (ETF). The in vivo electron acceptor may be a heterodimeric electron transfer flavoprotein (ETF)
-
-
?
additional information
?
-
W8X9R6; W8X092
the native enzyme (CtmAB) oxidizes a wide range of monocyclic monoterpenes containing the allylic methyl group motif (1-methyl-cyclohex-1-ene)
-
-
?
additional information
?
-
-
the native enzyme (CtmAB) oxidizes a wide range of monocyclic monoterpenes containing the allylic methyl group motif (1-methyl-cyclohex-1-ene)
-
-
?
additional information
?
-
W8X9R6; W8X092
the native enzyme (CtmAB) oxidizes a wide range of monocyclic monoterpenes containing the allylic methyl group motif (1-methyl-cyclohex-1-ene)
-
-
?
additional information
?
-
-
the native enzyme (CtmAB) oxidizes a wide range of monocyclic monoterpenes containing the allylic methyl group motif (1-methyl-cyclohex-1-ene)
-
-
?
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(R)-limonene + H2O + acceptor
(+)-perillyl alcohol + reduced acceptor
(S)-limonene + H2O + acceptor
(-)-perillyl alcohol + reduced acceptor
(R)-limonene + H2O + acceptor
(+)-perillyl alcohol + reduced acceptor
W8X9R6; W8X092
the enzyme is involved in degradation pathway of monocyclic limonene
-
-
?
(R)-limonene + H2O + acceptor
(+)-perillyl alcohol + reduced acceptor
W8X9R6; W8X092
the in vivo electron acceptor may be a heterodimeric electron transfer flavoprotein (ETF)
-
-
?
(R)-limonene + H2O + acceptor
(+)-perillyl alcohol + reduced acceptor
W8X9R6; W8X092
the enzyme is involved in degradation pathway of monocyclic limonene
-
-
?
(R)-limonene + H2O + acceptor
(+)-perillyl alcohol + reduced acceptor
W8X9R6; W8X092
the in vivo electron acceptor may be a heterodimeric electron transfer flavoprotein (ETF)
-
-
?
(S)-limonene + H2O + acceptor
(-)-perillyl alcohol + reduced acceptor
W8X9R6; W8X092
the enzyme is involved in degradation pathway of monocyclic limonene
-
-
?
(S)-limonene + H2O + acceptor
(-)-perillyl alcohol + reduced acceptor
W8X9R6; W8X092
the in vivo electron acceptor may be a heterodimeric electron transfer flavoprotein (ETF). The in vivo electron acceptor may be a heterodimeric electron transfer flavoprotein (ETF)
-
-
?
(S)-limonene + H2O + acceptor
(-)-perillyl alcohol + reduced acceptor
W8X9R6; W8X092
the enzyme is involved in degradation pathway of monocyclic limonene
-
-
?
(S)-limonene + H2O + acceptor
(-)-perillyl alcohol + reduced acceptor
W8X9R6; W8X092
the in vivo electron acceptor may be a heterodimeric electron transfer flavoprotein (ETF). The in vivo electron acceptor may be a heterodimeric electron transfer flavoprotein (ETF)
-
-
?
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Petasch, J.; Disch, E.M.; Markert, S.; Becher, D.; Schweder, T.; Huttel, B.; Reinhardt, R.; Harder, J.
The oxygen-independent metabolism of cyclic monoterpenes in Castellaniella defragrans 65Phen
BMC Microbiol.
14
164
2014
Castellaniella defragrans (W8X9R6 AND W8X092), Castellaniella defragrans 65Phen (W8X9R6 AND W8X092)
brenda
Puentes-Cala, E.; Liebeke, M.; Markert, S.; Harder, J.
Limonene dehydrogenase hydroxylates the allylic methyl group of cyclic monoterpenes in the anaerobic terpene degradation by Castellaniella defragrans
J. Biol. Chem.
293
9520-9529
2018
Castellaniella defragrans (W8X9R6 AND W8X092), Castellaniella defragrans, Castellaniella defragrans 65Phen (W8X9R6 AND W8X092), Castellaniella defragrans 65Phen
brenda