Polyamine oxidases catalyse the oxidation of polyamines and acetylpolyamines and are responsible for the polyamine interconversion metabolism in animal cells. Polyamine oxidases from yeast can oxidize spermine, N(1)-acetylspermine, and N(1)-acetylspermidine, while in vertebrates two different enzymes, namely spermine oxidase and acetylpolyamine oxidase, specifically catalyse the oxidation of spermine, and N(1)-acetylspermine/N(1)-acetylspermidine, respectively. In this work we proved that the specialized vertebrate spermine and acetylpolyamine oxidases have arisen from an ancestor invertebrate polyamine oxidase with lower specificity for polyamine substrates, as demonstrated by the enzymatic activity of the mollusc polyamine oxidase charact...
SMO (spermine oxidase) and APAO (acetylpolyamine oxidase) are flavoenzymes that play a critical rol...
SMO (spermine oxidase) and APAO (acetylpolyamine oxidase) are flavoenzymes that play a critical role...
BACKGROUND: Polyamines are essential for cell growth and differentiation; compounds interfering with...
Polyamine oxidases catalyse the oxidation of polyamines and acetylpolyamines and are responsible fo...
Background: Polyamine oxidase enzymes catalyze the oxidation of polyamines and acetylpolyamines. Sin...
Polyamine oxidases are key enzymes responsible of the polyamine interconversion metabolism in animal...
Polyamine oxidases are key enzymes responsible of the polyamine interconversion metabolism in animal...
Polyamine oxidase (PAO) is a flavin adenine dinucleotide-dependent enzyme involved in polyamine cata...
SMO (spermine oxidase) and APAO (acetylpolyamine oxidase) are flavoenzymes that play a critical role...
Polyamine oxidase (PAO) is a flavin adenine dinucleotide-dependent enzyme involved in polyamine cata...
""Spermine oxidase is a FAD-dependent enzyme that specifically oxidizes spermine, and plays a centra...
Polyamine oxidases are key enzymes responsible of the polyamine interconversion metabolism in animal...
Spermine oxidase (SMO) and acetylpolyamine oxidase (APAO) are FAD-dependent enzymes that are involve...
AbstractBackground: Polyamines are essential for cell growth and differentiation; compounds interfer...
Spermine oxidase (SMO) and acetylpolyamine. oxidase (APAO) are FAD-dependent enzymes that are. invol...
SMO (spermine oxidase) and APAO (acetylpolyamine oxidase) are flavoenzymes that play a critical rol...
SMO (spermine oxidase) and APAO (acetylpolyamine oxidase) are flavoenzymes that play a critical role...
BACKGROUND: Polyamines are essential for cell growth and differentiation; compounds interfering with...
Polyamine oxidases catalyse the oxidation of polyamines and acetylpolyamines and are responsible fo...
Background: Polyamine oxidase enzymes catalyze the oxidation of polyamines and acetylpolyamines. Sin...
Polyamine oxidases are key enzymes responsible of the polyamine interconversion metabolism in animal...
Polyamine oxidases are key enzymes responsible of the polyamine interconversion metabolism in animal...
Polyamine oxidase (PAO) is a flavin adenine dinucleotide-dependent enzyme involved in polyamine cata...
SMO (spermine oxidase) and APAO (acetylpolyamine oxidase) are flavoenzymes that play a critical role...
Polyamine oxidase (PAO) is a flavin adenine dinucleotide-dependent enzyme involved in polyamine cata...
""Spermine oxidase is a FAD-dependent enzyme that specifically oxidizes spermine, and plays a centra...
Polyamine oxidases are key enzymes responsible of the polyamine interconversion metabolism in animal...
Spermine oxidase (SMO) and acetylpolyamine oxidase (APAO) are FAD-dependent enzymes that are involve...
AbstractBackground: Polyamines are essential for cell growth and differentiation; compounds interfer...
Spermine oxidase (SMO) and acetylpolyamine. oxidase (APAO) are FAD-dependent enzymes that are. invol...
SMO (spermine oxidase) and APAO (acetylpolyamine oxidase) are flavoenzymes that play a critical rol...
SMO (spermine oxidase) and APAO (acetylpolyamine oxidase) are flavoenzymes that play a critical role...
BACKGROUND: Polyamines are essential for cell growth and differentiation; compounds interfering with...