Characterization of Euphorbia characias latex amine oxidase. 1998

A Padiglia, and R Medda, and A Lorrai, and B Murgia, and J Z Pedersen, and A Finazzi Agró, and G Floris
Department of Biochemistry and Human Physiology, University of Cagliari, Cagliari, Italy.

A copper-containing amine oxidase from the latex of Euphorbia characias was purified to homogeneity and the copper-free enzyme obtained by a ligand-exchange procedure. The interactions of highly purified apo- and holoenzyme with several substrates, carbonyl reagents, and copper ligands were investigated by optical spectroscopy under both aerobic and anaerobic conditions. The extinction coefficients at 278 and 490 nm were determined as 3.78 x 10(5) M-1 cm-1 and 6000 M-1 cm-1, respectively. Active-site titration of highly purified enzyme with substrates and carbonyl reagents showed the presence of one cofactor at each enzyme subunit. In anaerobiosis the native enzyme oxidized one equivalent substrate and released one equivalent aldehyde per enzyme subunit. The apoenzyme gave exactly the same 1:1:1 stoichiometry in anaerobiosis and in aerobiosis. These findings demonstrate unequivocally that copper-free amine oxidase can oxidize substrates with a single half-catalytic cycle. The DNA-derived protein sequence shows a characteristic hexapeptide present in most 6-hydroxydopa quinone-containing amine oxidases. This hexapeptide contains the tyrosinyl residue that can be modified into the cofactor 6-hydroxydopa quinone.

UI MeSH Term Description Entries
D008969 Molecular Sequence Data Descriptions of specific amino acid, carbohydrate, or nucleotide sequences which have appeared in the published literature and/or are deposited in and maintained by databanks such as GENBANK, European Molecular Biology Laboratory (EMBL), National Biomedical Research Foundation (NBRF), or other sequence repositories. Sequence Data, Molecular,Molecular Sequencing Data,Data, Molecular Sequence,Data, Molecular Sequencing,Sequencing Data, Molecular
D008970 Molecular Weight The sum of the weight of all the atoms in a molecule. Molecular Weights,Weight, Molecular,Weights, Molecular
D005609 Free Radicals Highly reactive molecules with an unsatisfied electron valence pair. Free radicals are produced in both normal and pathological processes. Free radicals include reactive oxygen and nitrogen species (RONS). They are proven or suspected agents of tissue damage in a wide variety of circumstances including radiation, damage from environment chemicals, and aging. Natural and pharmacological prevention of free radical damage is being actively investigated. Free Radical
D006631 Amine Oxidase (Copper-Containing) A group of enzymes including those oxidizing primary monoamines, diamines, and histamine. They are copper proteins, and, as their action depends on a carbonyl group, they are sensitive to inhibition by semicarbazide. Diamine Oxidase,Histaminase,Amine Oxidase, Copper-Containing,Copper Amine Oxidase,Diaminobenzidine Oxidase,Semicarbazide-Sensitive Amine Oxidase,Xylylene Diamine Oxidase,Amine Oxidase, Copper,Amine Oxidase, Copper Containing,Amine Oxidase, Semicarbazide-Sensitive,Copper-Containing Amine Oxidase,Diamine Oxidase, Xylylene,Oxidase, Copper Amine,Oxidase, Copper-Containing Amine,Oxidase, Diamine,Oxidase, Diaminobenzidine,Oxidase, Semicarbazide-Sensitive Amine,Oxidase, Xylylene Diamine,Semicarbazide Sensitive Amine Oxidase
D000587 Oxidoreductases Acting on CH-NH Group Donors Enzymes catalyzing the dehydrogenation of secondary amines, introducing a C Secondary Amine Oxidoreductases,Amine Oxidoreductases, Secondary Amine,Amine Oxidoreductases, Secondary,Oxidoreductases Acting on CH NH Group Donors,Oxidoreductases, Secondary Amine
D000595 Amino Acid Sequence The order of amino acids as they occur in a polypeptide chain. This is referred to as the primary structure of proteins. It is of fundamental importance in determining PROTEIN CONFORMATION. Protein Structure, Primary,Amino Acid Sequences,Sequence, Amino Acid,Sequences, Amino Acid,Primary Protein Structure,Primary Protein Structures,Protein Structures, Primary,Structure, Primary Protein,Structures, Primary Protein
D001483 Base Sequence The sequence of PURINES and PYRIMIDINES in nucleic acids and polynucleotides. It is also called nucleotide sequence. DNA Sequence,Nucleotide Sequence,RNA Sequence,DNA Sequences,Base Sequences,Nucleotide Sequences,RNA Sequences,Sequence, Base,Sequence, DNA,Sequence, Nucleotide,Sequence, RNA,Sequences, Base,Sequences, DNA,Sequences, Nucleotide,Sequences, RNA
D012663 Semicarbazides Derivatives of UREA where one of the amino groups is replaced with hydrazine.
D013056 Spectrophotometry, Ultraviolet Determination of the spectra of ultraviolet absorption by specific molecules in gases or liquids, for example Cl2, SO2, NO2, CS2, ozone, mercury vapor, and various unsaturated compounds. (McGraw-Hill Dictionary of Scientific and Technical Terms, 4th ed) Ultraviolet Spectrophotometry
D013379 Substrate Specificity A characteristic feature of enzyme activity in relation to the kind of substrate on which the enzyme or catalytic molecule reacts. Specificities, Substrate,Specificity, Substrate,Substrate Specificities

Related Publications

A Padiglia, and R Medda, and A Lorrai, and B Murgia, and J Z Pedersen, and A Finazzi Agró, and G Floris
August 2013, The protein journal,
A Padiglia, and R Medda, and A Lorrai, and B Murgia, and J Z Pedersen, and A Finazzi Agró, and G Floris
February 2007, Biophysical chemistry,
A Padiglia, and R Medda, and A Lorrai, and B Murgia, and J Z Pedersen, and A Finazzi Agró, and G Floris
January 2018, Biotechnology and applied biochemistry,
A Padiglia, and R Medda, and A Lorrai, and B Murgia, and J Z Pedersen, and A Finazzi Agró, and G Floris
July 2008, Archives of biochemistry and biophysics,
A Padiglia, and R Medda, and A Lorrai, and B Murgia, and J Z Pedersen, and A Finazzi Agró, and G Floris
February 1983, Archives of biochemistry and biophysics,
A Padiglia, and R Medda, and A Lorrai, and B Murgia, and J Z Pedersen, and A Finazzi Agró, and G Floris
December 2015, Protein expression and purification,
A Padiglia, and R Medda, and A Lorrai, and B Murgia, and J Z Pedersen, and A Finazzi Agró, and G Floris
January 2011, Biochemistry research international,
A Padiglia, and R Medda, and A Lorrai, and B Murgia, and J Z Pedersen, and A Finazzi Agró, and G Floris
August 2012, Biopolymers,
A Padiglia, and R Medda, and A Lorrai, and B Murgia, and J Z Pedersen, and A Finazzi Agró, and G Floris
March 2007, The Italian journal of biochemistry,
A Padiglia, and R Medda, and A Lorrai, and B Murgia, and J Z Pedersen, and A Finazzi Agró, and G Floris
February 2015, Plant physiology and biochemistry : PPB,
Copied contents to your clipboard!