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Results 1 - 8 of 8
EC Number
Reaction
Commentary
Reference
pyridoxamine 5'-phosphate + H2O + O2 = pyridoxal 5'-phosphate + NH3 + H2O2
enzyme is not stereospecific and catalyzes removal of either pro-R or pro-S hydrogen from 4-methylene of pyridoxamine 5' phosphate
pyridoxamine 5'-phosphate + H2O + O2 = pyridoxal 5'-phosphate + NH3 + H2O2
enzyme is specific for removal of the pro-R hydrogen atom from the prochiral C4' carbon atom of pyridoxamine 5'-phosphate, hydride ion mechanism is suggested
pyridoxamine 5'-phosphate + H2O + O2 = pyridoxal 5'-phosphate + NH3 + H2O2
kinetic mechanims via either a binary or a ternary complex mechanism, depending on nature of substrate, ternary complex mechanism with pyridoxamine 5'-phosphate
pyridoxamine 5'-phosphate + H2O + O2 = pyridoxal 5'-phosphate + NH3 + H2O2
reaction mechanism
pyridoxamine 5'-phosphate + H2O + O2 = pyridoxal 5'-phosphate + NH3 + H2O2
reaction mechanism, the oxidation involves a stereospecific hydride-ion transfer between C4' of pyridoxal 5'-phosphate and N5 of FMN, structure-function relationship, substrate binding and active site structure
pyridoxine 5'-phosphate + O2 = pyridoxal 5'-phosphate + H2O2
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pyridoxine 5'-phosphate + O2 = pyridoxal 5'-phosphate + H2O2
reaction mechanism
pyridoxine 5'-phosphate + O2 = pyridoxal 5'-phosphate + H2O2
reaction mechanism, the oxidation involves a stereospecific hydride-ion transfer between C4' of pyridoxal 5'-phosphate and N5 of FMN, structure-function relationship, substrate binding and active site structure
Results 1 - 8 of 8