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(R,S)-cheilanthifoline + [reduced NADPH-hemoprotein reductase] + O2
(R,S)-stylopine + [oxidized NADPH-hemoprotein reductase] + H2O
-
Substrates: -
Products: -
?
(R,S)-cheilanthifoline + [reduced NADPH-hemoprotein reductase] + O2
(S)-stylopine + [oxidized NADPH-hemoprotein reductase] + H2O
-
Substrates: both CYP719A2 and CYP719A3 have stylopine synthase activity to catalyze methylenedioxy bridge-formation from cheilanthifoline to stylopine, but not cheilanthifoline synthase activity to convert scoulerine to cheilanthifoline, overview
Products: -
?
(R,S)-scoulerine + [reduced NADPH-hemoprotein reductase] + O2
(S)-nandinine + [oxidized NADPH-hemoprotein reductase] + H2O
-
Substrates: -
Products: -
r
(S)-cheilanthifoline + [reduced NADPH-hemoprotein reductase] + O2
(S)-stylopine + [oxidized NADPH-hemoprotein reductase] + 2 H2O
(S)-cheilanthifoline + [reduced NADPH-hemoprotein reductase] + O2
(S)-stylopine + [oxidized NADPH-hemoprotein reductase] + H2O
(S)-coreximine + [reduced NADPH-hemoprotein reductase] + O2
(S)-cheilanthifoline + [oxidized NADPH-hemoprotein reductase] + H2O
Substrates: kcat (S)-coreximine: 1% compared to kcat (S)-cheilanthifoline: 100%
Products: -
?
(S)-scoulerine + [reduced NADPH-hemoprotein reductase] + O2
(S)-nandinine + [oxidized NADPH-hemoprotein reductase] + H2O
-
Substrates: -
Products: -
?
(S)-scoulerine + [reduced NADPH-hemoprotein reductase] + O2
nandinine + [oxidized NADPH-hemoprotein reductase] + 2 H2O
Substrates: -
Products: -
?
(S)-tetrahydrocolumbamine + [reduced NADPH-hemoprotein reductase] + O2
(S)-tetrahydroberberine + [oxidized NADPH-hemoprotein reductase] + H2O
-
Substrates: -
Products: -
?
(S)-tetrahydrocolumbamine + [reduced NADPH-hemoprotein reductase] + O2
?
-
Substrates: CYP719A3
Products: -
?
additional information
?
-
(S)-cheilanthifoline + [reduced NADPH-hemoprotein reductase] + O2

(S)-stylopine + [oxidized NADPH-hemoprotein reductase] + 2 H2O
Substrates: the enzyme is involved in biosynthesis of stylopine
Products: -
?
(S)-cheilanthifoline + [reduced NADPH-hemoprotein reductase] + O2
(S)-stylopine + [oxidized NADPH-hemoprotein reductase] + 2 H2O
Substrates: high substrate specificity. The only alternative substrate identified is scoulerine, which is converted by stylopine synthase to yield minor amounts of nandinine
Products: -
?
(S)-cheilanthifoline + [reduced NADPH-hemoprotein reductase] + O2
(S)-stylopine + [oxidized NADPH-hemoprotein reductase] + 2 H2O
-
Substrates: -
Products: -
?
(S)-cheilanthifoline + [reduced NADPH-hemoprotein reductase] + O2

(S)-stylopine + [oxidized NADPH-hemoprotein reductase] + H2O
Substrates: -
Products: -
?
(S)-cheilanthifoline + [reduced NADPH-hemoprotein reductase] + O2
(S)-stylopine + [oxidized NADPH-hemoprotein reductase] + H2O
-
Substrates: NADPH is essential for activity, NADH displays only 0.5% turnover of that of NADPH
Products: -
?
(S)-cheilanthifoline + [reduced NADPH-hemoprotein reductase] + O2
(S)-stylopine + [oxidized NADPH-hemoprotein reductase] + H2O
-
Substrates: enzyme is induced 20 h after challenging the cell suspension culture with elicitor
Products: -
?
(S)-cheilanthifoline + [reduced NADPH-hemoprotein reductase] + O2
(S)-stylopine + [oxidized NADPH-hemoprotein reductase] + H2O
-
Substrates: stylopine biosynthesis involves the sequential formation of two methylenedioxy bridges, (S)-stylopine is an important intermediate in the biosynthesis of benzophenanthridine alkaloids, such as sanguinarine
Products: -
?
(S)-cheilanthifoline + [reduced NADPH-hemoprotein reductase] + O2
(S)-stylopine + [oxidized NADPH-hemoprotein reductase] + H2O
-
Substrates: -
Products: -
?
additional information

?
-
-
Substrates: the methylenedioxy bridge-forming enzyme is involved in stylopine biosynthesis in Eschscholzia californica, biosynthetic pathway for a variety of isoquinoline alkaloids, overview
Products: -
?
additional information
?
-
-
Substrates: CYP719A2 has high substrate affinity only toward (R,S)-cheilanthifoline, whereas CYP719A3 has high affinity toward the three similar substrates (R,S)-cheilanthifoline, (S)-scoulerine, and (S)-tetrahydrocolumbamine, both show no activity with columbamine, (R,S)-reticuline, (R,S)-norreticuline, (S)-N-methylcoclaurine, (S)-coclaurine, (R,S)-6-O-methylnorlaudanosoline, and magnoflorine, overview
Products: -
?
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(R,S)-cheilanthifoline + [reduced NADPH-hemoprotein reductase] + O2
(R,S)-stylopine + [oxidized NADPH-hemoprotein reductase] + H2O
-
Substrates: -
Products: -
?
(S)-cheilanthifoline + [reduced NADPH-hemoprotein reductase] + O2
(S)-stylopine + [oxidized NADPH-hemoprotein reductase] + 2 H2O
(S)-cheilanthifoline + [reduced NADPH-hemoprotein reductase] + O2
(S)-stylopine + [oxidized NADPH-hemoprotein reductase] + H2O
(S)-tetrahydrocolumbamine + [reduced NADPH-hemoprotein reductase] + O2
(S)-tetrahydroberberine + [oxidized NADPH-hemoprotein reductase] + H2O
-
Substrates: -
Products: -
?
additional information
?
-
-
Substrates: the methylenedioxy bridge-forming enzyme is involved in stylopine biosynthesis in Eschscholzia californica, biosynthetic pathway for a variety of isoquinoline alkaloids, overview
Products: -
?
(S)-cheilanthifoline + [reduced NADPH-hemoprotein reductase] + O2

(S)-stylopine + [oxidized NADPH-hemoprotein reductase] + 2 H2O
Substrates: the enzyme is involved in biosynthesis of stylopine
Products: -
?
(S)-cheilanthifoline + [reduced NADPH-hemoprotein reductase] + O2
(S)-stylopine + [oxidized NADPH-hemoprotein reductase] + 2 H2O
-
Substrates: -
Products: -
?
(S)-cheilanthifoline + [reduced NADPH-hemoprotein reductase] + O2

(S)-stylopine + [oxidized NADPH-hemoprotein reductase] + H2O
-
Substrates: enzyme is induced 20 h after challenging the cell suspension culture with elicitor
Products: -
?
(S)-cheilanthifoline + [reduced NADPH-hemoprotein reductase] + O2
(S)-stylopine + [oxidized NADPH-hemoprotein reductase] + H2O
-
Substrates: stylopine biosynthesis involves the sequential formation of two methylenedioxy bridges, (S)-stylopine is an important intermediate in the biosynthesis of benzophenanthridine alkaloids, such as sanguinarine
Products: -
?
(S)-cheilanthifoline + [reduced NADPH-hemoprotein reductase] + O2
(S)-stylopine + [oxidized NADPH-hemoprotein reductase] + H2O
-
Substrates: -
Products: -
?
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0.0000045
-
CYP719A3 variant, (S)-scoulerine as substrate, microsomal protein used for determination
additional information

-
0.43 pmol/min/pmol P450 for the CYP719A2 variant, (R,S)-scoulerine as substrate
additional information
-
CYP719A3 converts a mixture of 0.4 microM (R,S)-cheilanthifoline and 0.4 microM S-scoulerine as substrates to stylopine and nandinine
additional information
-
CYP719A2 variant uses only (R,S)-cheilanthifoline as substrate to produce stylopine when incubating with a mixture of 0.4 microM (R,S)-cheilanthifoline and 0.4 microM S-scoulerine as substrates
additional information
-
CYP719A3 but not CYP719A2 variant converts (S)-tetrahydrocolumbamine to (S)-tetrahydroberberine
additional information
-
CYP719A3 and CYP719A2 do not react with columbamine, (R,S)-reticuline, (R,S)-norreticuline, (S)-N-methylcoclaurine, (S)-coclaurine, (R,S)-6-O-methylnorlaudanosoline and magnoflorine to make corresponding products with a methylenedioxy bridge
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Bauer, W.; Zenk, M.H.
Two methylenedioxy bridge forming cytochrome P-450 dependent enzymes are involved in (S)-stylopine biosynthesis
Phytochemistry
30
2953-2961
1991
Eschscholzia californica
-
brenda
Ikezawa, N.; Iwasa, K.; Sato, F.
Molecular cloning and characterization of methylenedioxy bridge-forming enzymes involved in stylopine biosynthesis in Eschscholzia californica
FEBS J.
274
1019-1035
2007
Eschscholzia californica
brenda
Diaz Chavez, M.L.; Rolf, M.; Gesell, A.; Kutchan, T.M.
Characterization of two methylenedioxy bridge-forming cytochrome P450-dependent enzymes of alkaloid formation in the Mexican prickly poppy Argemone mexicana
Arch. Biochem. Biophys.
507
186-193
2011
Argemone mexicana (B1NF19), Argemone mexicana
brenda
Takemura, T.; Ikezawa, N.; Iwasa, K.; Sato, F.
Molecular cloning and characterization of a cytochrome P450 in sanguinarine biosynthesis from Eschscholzia californica cells
Phytochemistry
91
100-108
2013
Eschscholzia californica
brenda
Yahyazadeh, M.; Ratmoyo, P.; Bittner, F.; Sato, F.; Selmar, D.
Cloning and characterization of Cheilanthifoline and stylopine synthase genes from Chelidonium majus
Plant Cell Physiol.
58
1421-1430
2017
Chelidonium majus (A0A240FWB4)
-
brenda
Hori, K.; Okano, S.; Sato, F.
Efficient microbial production of stylopine using a Pichia pastoris expression system
Sci. Rep.
6
22201
2016
Eschscholzia californica (Q50LH3)
brenda
Yahyazadeh, M.; Meinen, R.; Haensch, R.; Abouzeid, S.; Selmar, D.
Impact of drought and salt stress on the biosynthesis of alkaloids in Chelidonium majus L.
Phytochemistry
152
204-212
2018
Chelidonium majus
brenda