2.1.1.341: vanillate/3-O-methylgallate O-demethylase
This is an abbreviated version!
For detailed information about vanillate/3-O-methylgallate O-demethylase, go to the full flat file.
Word Map on EC 2.1.1.341
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2.1.1.341
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demethylation
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protocatechuate
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lignin
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4,5-cleavage
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catechol
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paucimobilis
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methanol
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sphingomonas
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4,5-dioxygenase
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h4folate
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sphingobium
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dioxygenase
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diols
- 2.1.1.341
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demethylation
- protocatechuate
- lignin
-
4,5-cleavage
- catechol
- paucimobilis
- methanol
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sphingomonas
-
4,5-dioxygenase
-
h4folate
- sphingobium
- dioxygenase
- diols
Reaction
Synonyms
DesA, LigM, Mtv, syringate O-demethylase, tetrahydrofolate-dependent O-demethylase, vanillate/3-O-methylgallate O-demethylase, vanillate/3MGA O-demethylase
ECTree
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General Information
General Information on EC 2.1.1.341 - vanillate/3-O-methylgallate O-demethylase
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physiological function
Q7WST1
disruption of DesA results in a growth defect on syringate but does not affect growth on vanillate
physiological function
Q60FX1
disruption of LigM leads to significant growth retardation on both vanillate and syringate. The ability of the mutant to transform vanillate is markedly decreased, and it completely lost the 3-O-methylgallate O-demethylase activity. A LigM syringate demethylase DesA double mutant completely lost the ability to transform vanillate
physiological function
Q60FX1
overview on the degradation pathway of various lignin-related compounds
physiological function
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disruption of LigM leads to significant growth retardation on both vanillate and syringate. The ability of the mutant to transform vanillate is markedly decreased, and it completely lost the 3-O-methylgallate O-demethylase activity. A LigM syringate demethylase DesA double mutant completely lost the ability to transform vanillate
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physiological function
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overview on the degradation pathway of various lignin-related compounds
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physiological function
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disruption of DesA results in a growth defect on syringate but does not affect growth on vanillate
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