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IUBMB CommentsThis reaction is part of the pathway for synthesis of benzophenanthridine alkaloid macarpine in plants.
The enzyme appears in viruses and cellular organisms
Synonyms
12-Hydroxydihydrochelirubine 12-O-methyltransferase, Methyltransferase, 12-hydroxydihydrochelirubine-12-O, SAM:12-hydroxydihydrochelirubine-12-O-methyltransferase,
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12-Hydroxydihydrochelirubine 12-O-methyltransferase
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Methyltransferase, 12-hydroxydihydrochelirubine-12-O
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SAM:12-hydroxydihydrochelirubine-12-O-methyltransferase
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S-adenosyl-L-methionine + 12-hydroxydihydrochelirubine = S-adenosyl-L-homocysteine + dihydromacarpine
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methyl group transfer
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S-adenosyl-L-methionine:12-hydroxydihydrochelirubine 12-O-methyltransferase
This reaction is part of the pathway for synthesis of benzophenanthridine alkaloid macarpine in plants.
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S-adenosyl-L-methionine + 12-hydroxydihydrochelirubine
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Thalictrum bulgaricum
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involved in biosynthesis of macarpine, the most highly oxidized benzophenanthridine alkaloid, not significantly affected by elicitation
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S-adenosyl-L-methionine + 12-hydroxydihydrochelirubine
S-adenosyl-L-homocysteine + dihydromacarpine
Thalictrum bulgaricum
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S-adenosyl-L-methionine + 12-hydroxydihydrochelirubine
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Thalictrum bulgaricum
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involved in biosynthesis of macarpine, the most highly oxidized benzophenanthridine alkaloid, not significantly affected by elicitation
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7.5
Thalictrum bulgaricum
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30
Thalictrum bulgaricum
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Thalictrum bulgaricum
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brenda
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Thalictrum bulgaricum
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brenda
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Thalictrum bulgaricum
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Kammerer, L.; De-Eknamkul, W.; Zenk, M.H.
Enzymic 12-hydroxylation and 12-O-methylation of dihydrochelirubine in dihydromacarpine formation by Thalictrum bulgaricum
Phytochemistry
36
1409-1416
1994
Thalictrum bulgaricum
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brenda
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