TY - JOUR
T1 - Isolation, enzyme production and characterization of d-aspartate oxidase from Fusarium sacchari var. elongatum Y-105
AU - Wakayama, Mamoru
AU - Nakashima, Sadatoshi
AU - Sakai, Kenji
AU - Moriguchi, Mitsuaki
PY - 1994
Y1 - 1994
N2 - A microorganism that produces d-aspartate-oxidizing enzyme by induction was isolated from soil, and identified as Fusarium sacchari var. elongatum Y-105. The enzyme catalyzed the oxidative deamination of d-aspartate (d-Asp) and produced oxaloacetate, ammonia, and hydrogen peroxide, stoichiometrically. The enzyme is designated "d-Asp oxidase" (EC 1.4.3.1). In addition to d-Asp, the enzyme oxidized d-glutamate (d-Glu) and N-methyl-d-aspartate (NMDA). N-Acetyl-d-Asp and other d- or l-amino acids, however, were inert as substrates. The optimum pH and temperature were 7.5 and 40°C, respectively. The enzyme was stable at pH 9.0 and temperature of 50°C, respectively. The enzyme activity was not inhibited by sodium benzoate which is a specific inhibitor of d-amino acid oxidase from mammals. The enzyme activity was also not affected by carboxylates such as meso- or d-tartarate, citrate, and fumarate which inhibit d-Asp oxidase from rabbits.
AB - A microorganism that produces d-aspartate-oxidizing enzyme by induction was isolated from soil, and identified as Fusarium sacchari var. elongatum Y-105. The enzyme catalyzed the oxidative deamination of d-aspartate (d-Asp) and produced oxaloacetate, ammonia, and hydrogen peroxide, stoichiometrically. The enzyme is designated "d-Asp oxidase" (EC 1.4.3.1). In addition to d-Asp, the enzyme oxidized d-glutamate (d-Glu) and N-methyl-d-aspartate (NMDA). N-Acetyl-d-Asp and other d- or l-amino acids, however, were inert as substrates. The optimum pH and temperature were 7.5 and 40°C, respectively. The enzyme was stable at pH 9.0 and temperature of 50°C, respectively. The enzyme activity was not inhibited by sodium benzoate which is a specific inhibitor of d-amino acid oxidase from mammals. The enzyme activity was also not affected by carboxylates such as meso- or d-tartarate, citrate, and fumarate which inhibit d-Asp oxidase from rabbits.
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U2 - 10.1016/0922-338X(94)90284-4
DO - 10.1016/0922-338X(94)90284-4
M3 - Article
AN - SCOPUS:0027946484
SN - 0922-338X
VL - 78
SP - 377
EP - 379
JO - Journal of Fermentation and Bioengineering
JF - Journal of Fermentation and Bioengineering
IS - 5
ER -