1.14.13.82: vanillate monooxygenase
This is an abbreviated version!
For detailed information about vanillate monooxygenase, go to the full flat file.
Word Map on EC 1.14.13.82
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1.14.13.82
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protocatechuate
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lignin
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ferulic
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syringate
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veratrate
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o-demethylation
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lignin-derived
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3,4-dioxygenase
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3,4-dihydroxybenzoate
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dehalogenans
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corrinoid
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acetobacterium
- 1.14.13.82
- protocatechuate
- lignin
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ferulic
- syringate
- veratrate
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o-demethylation
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lignin-derived
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3,4-dioxygenase
- 3,4-dihydroxybenzoate
- dehalogenans
- corrinoid
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acetobacterium
Reaction
Synonyms
4-hydroxy-3-methoxybenzoate demethylase, EC 1.2.3.12, IvaAB, More, VAN, VanA, vanAB, VanB, vanillate demethylase, vanillate O-demethylase, vanillate O-demethylase oxygenase, vanillate-O-demethylase, vanillic acid O-demethylase
ECTree
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Source Tissue
Source Tissue on EC 1.14.13.82 - vanillate monooxygenase
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additional information
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the cells grow in vanillate, 4-hydroxybenzoate, syringate, ferulate, p-coumarate, and 3-O-methylgallate, but not on vanillin and syringaldehyde. Maximum specific growth rates, uptake rates and yields on lignin model compounds by Microbacterium sp. RG1, overview. When strain is cultivated with 5 mM each of the aldehydes vanillin or syringaldehyde no growth is observed for more than 200 h
in succinate- and procatechuic acid-grown cells, there is negligible degradative activity towards vanillic acid, veratric acid, and isovanillic acid and little to no expression of genes van, ivaA, and ivaB, growth on vanillic acid or veratric acid results in production of active oxygenases and expression of vanA, ivaA, and ivaB
additional information
in succinate- and procatechuic acid-grown cells, there is negligible degradative activity towards vanillic acid, veratric acid, and isovanillic acid and little to no expression of genes van, ivaA, and ivaB, growth on vanillic acid or veratric acid results in production of active oxygenases and expression of vanA, ivaA, and ivaB
additional information
in succinate- and procatechuic acid-grown cells, there is negligible degradative activity towards vanillic acid, veratric acid, and isovanillic acid and little to no expression of genes van, ivaA, and ivaB, growth on vanillic acid or veratric acid results in production of active oxygenases and expression of vanA, ivaA, and ivaB
additional information
in succinate- and procatechuic acid-grown cells, there is negligible degradative activity towards vanillic acid, veratric acid, and isovanillic acid and little to no expression of genes vanA, ivaA, and ivaB, growth on vanillic acid or veratric acid results in production of active oxygenases and expression of vanA, ivaA, and ivaB
additional information
in succinate- and procatechuic acid-grown cells, there is negligible degradative activity towards vanillic acid, veratric acid, and isovanillic acid and little to no expression of genes vanA, ivaA, and ivaB, growth on vanillic acid or veratric acid results in production of active oxygenases and expression of vanA, ivaA, and ivaB
additional information
in succinate- and procatechuic acid-grown cells, there is negligible degradative activity towards vanillic acid, veratric acid, and isovanillic acid and little to no expression of genes vanA, ivaA, and ivaB, growth on vanillic acid or veratric acid results in production of active oxygenases and expression of vanA, ivaA, and ivaB
additional information
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in succinate- and procatechuic acid-grown cells, there is negligible degradative activity towards vanillic acid, veratric acid, and isovanillic acid and little to no expression of genes vanA, ivaA, and ivaB, growth on vanillic acid or veratric acid results in production of active oxygenases and expression of vanA, ivaA, and ivaB
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additional information
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in succinate- and procatechuic acid-grown cells, there is negligible degradative activity towards vanillic acid, veratric acid, and isovanillic acid and little to no expression of genes van, ivaA, and ivaB, growth on vanillic acid or veratric acid results in production of active oxygenases and expression of vanA, ivaA, and ivaB
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