The complete primary structure of the peroxisomal flavoenzyme D-aspartate oxidase from beef kidney has been determined by analyses of the peptides obtained through fragmentation of the carboxymethylated protein with trypsin, CNBr, heptafluorobutyric acid/CNBr and Staphylococcus aureus V8 protease. The protein consists of a single polypeptide of 338 residues, accounting for a M(r) of 37,305 for the apoprotein. A form of the enzyme lacking Lys-338 and therefore ending with Pro-337 has been detected. The N-terminal residue is blocked. Seven cysteines and no disulfide bridges are present. Residue 228 can be either Ile or Val. Thus, D-aspartate oxidase presents two types of heterogeneity in the polypeptide chain in addition to the one already de...
In order to obtain further information on the structure of D-amino acid oxidase (EC 1.4.3.3), limite...
d-Amino acids are the “wrong” enantiomers of amino acids as they are not used in proteins synthesis ...
d-Amino acids are the "wrong" enantiomers of amino acids as they are not used in proteins synthesis ...
The complete primary structure of the peroxisomal flavoenzyme D-aspartate oxidase from beef kidney h...
The flavoprotein D-aspartate oxidase (EC 1.4.3.1) has been purified to homogeneity from beef kidney ...
The isolation and sequencing of the complete cDNA coding for a D-aspartate oxidase, as well as the o...
The properties of d-aspartate oxidase from Octopus vulgaris (EC 1.4.3.1) have been investigated. The...
l-Aspartate oxidase is the first enzyme in the de novo biosynthesis of pyridinic coenzymes in facult...
The mechanism of action of the flavoprotein D-aspartate oxidase (EC 1.4.3.1) has been investigated b...
A partial characterization of the primary structure of D-amino-acid oxidase (D-Amino-acid:oxygen oxi...
A partial characterization of the primary structure of D-amino-acid oxidase (D-Amino-acid:oxygen oxi...
In order to obtain further information on the structure of D-amino acid oxidase (EC 1.4.3.3), limite...
D-Aspartate oxidase (EC 1.4.3.1) was purified 195-fold from pig kidney cortex. The purified preparat...
D-Aspartate oxidase (EC 1.4.3.1) was purified 195-fold from pig kidney cortex. The purified preparat...
D-Aspartate oxidase (EC 1.4.3.1) was purified 195-fold from pig kidney cortex. The purified preparat...
In order to obtain further information on the structure of D-amino acid oxidase (EC 1.4.3.3), limite...
d-Amino acids are the “wrong” enantiomers of amino acids as they are not used in proteins synthesis ...
d-Amino acids are the "wrong" enantiomers of amino acids as they are not used in proteins synthesis ...
The complete primary structure of the peroxisomal flavoenzyme D-aspartate oxidase from beef kidney h...
The flavoprotein D-aspartate oxidase (EC 1.4.3.1) has been purified to homogeneity from beef kidney ...
The isolation and sequencing of the complete cDNA coding for a D-aspartate oxidase, as well as the o...
The properties of d-aspartate oxidase from Octopus vulgaris (EC 1.4.3.1) have been investigated. The...
l-Aspartate oxidase is the first enzyme in the de novo biosynthesis of pyridinic coenzymes in facult...
The mechanism of action of the flavoprotein D-aspartate oxidase (EC 1.4.3.1) has been investigated b...
A partial characterization of the primary structure of D-amino-acid oxidase (D-Amino-acid:oxygen oxi...
A partial characterization of the primary structure of D-amino-acid oxidase (D-Amino-acid:oxygen oxi...
In order to obtain further information on the structure of D-amino acid oxidase (EC 1.4.3.3), limite...
D-Aspartate oxidase (EC 1.4.3.1) was purified 195-fold from pig kidney cortex. The purified preparat...
D-Aspartate oxidase (EC 1.4.3.1) was purified 195-fold from pig kidney cortex. The purified preparat...
D-Aspartate oxidase (EC 1.4.3.1) was purified 195-fold from pig kidney cortex. The purified preparat...
In order to obtain further information on the structure of D-amino acid oxidase (EC 1.4.3.3), limite...
d-Amino acids are the “wrong” enantiomers of amino acids as they are not used in proteins synthesis ...
d-Amino acids are the "wrong" enantiomers of amino acids as they are not used in proteins synthesis ...