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Results 1 - 10 of 12 > >>
EC Number Substrates Commentary Substrates Organism Products Commentary (Products) Reversibility
Display the reaction diagram Show all sequences 1.14.14.302-butylamine + FADH2 + O2 - Streptomyces viridifaciens N-(2-butyl)hydroxylamine + FAD + H2O 39% of the activity with 2-methylpropanamine ?
Display the reaction diagram Show all sequences 1.14.14.302-butylamine + FADH2 + O2 - Streptomyces viridifaciens MG456-hF10 N-(2-butyl)hydroxylamine + FAD + H2O 39% of the activity with 2-methylpropanamine ?
Display the reaction diagram Show all sequences 1.14.14.302-methylpropanamine + FADH2 + O2 - Streptomyces viridifaciens N-hydroxy-2-methylpropan-1-amine + FAD + H2O - ?
Display the reaction diagram Show all sequences 1.14.14.302-methylpropanamine + FADH2 + O2 - Streptomyces viridifaciens MG456-hF10 N-hydroxy-2-methylpropan-1-amine + FAD + H2O - ?
Display the reaction diagram Show all sequences 1.14.14.302-methylpropanamine + FMNH2 + O2 - Streptomyces viridifaciens N-hydroxy-2-methylpropan-1-amine + FMN + H2O - ?
Display the reaction diagram Show all sequences 1.14.14.302-methylpropanamine + FMNH2 + O2 - Streptomyces viridifaciens MG456-hF10 N-hydroxy-2-methylpropan-1-amine + FMN + H2O - ?
Display the reaction diagram Show all sequences 1.14.14.30benzylamine + FADH2 + O2 - Streptomyces viridifaciens N-(benzyl)hydroxylamine + FAD + H2O 61% of the activity with 2-methylpropanamine ?
Display the reaction diagram Show all sequences 1.14.14.30benzylamine + FADH2 + O2 - Streptomyces viridifaciens MG456-hF10 N-(benzyl)hydroxylamine + FAD + H2O 61% of the activity with 2-methylpropanamine ?
Display the reaction diagram Show all sequences 1.14.14.30more amine N-hydroxylase cannot carry out the reduction of the flavin cofactor. Rather, the reduced flavin is supplied by a separate flavin reductase. The mechanism for the hydroxylation is likely to proceed via the formation of a flavin 4a-hydroperoxide Streptomyces viridifaciens ? - ?
Display the reaction diagram Show all sequences 1.14.14.30more amine N-hydroxylase cannot carry out the reduction of the flavin cofactor. Rather, the reduced flavin is supplied by a separate flavin reductase. The mechanism for the hydroxylation is likely to proceed via the formation of a flavin 4a-hydroperoxide Streptomyces viridifaciens MG456-hF10 ? - ?
Results 1 - 10 of 12 > >>