Sakai Y, Yoshida N, Isogai A, Tani Y, Kato N
Department of Agricultural Chemistry, Faculty of Agriculture, Kyoto University, Japan.
Biosci Biotechnol Biochem. 1995 Mar;59(3):487-91. doi: 10.1271/bbb.59.487.
Fructosyl lysine oxidase (FLOD) was examined for its use in the enzymatic measurement of the level of glycated albumin in blood serum. To isolate microorganisms having such an enzyme activity, we used N epsilon-fructosyl N alpha-Z-lysine (epsilon-FL) as a sole nitrogen source in the enrichment culture medium. The isolated fungus, strain S-1F4, showed a high FLOD activity in the cell-free extract and was identified as Fusarium oxysporum. FLOD was purified to an apparent homogeneity on SDS-PAGE. The molecular mass of the subunit was 50 kDa on SDS-PAGE and seemed to exist in a monomeric form. The enzyme had an absorption spectrum characteristic of a flavoprotein and the flavin was found to be covalently bound to the enzyme. The enzyme acted against N epsilon-fructosyl N alpha-Z-lysine and N alpha-fructosyl N epsilon-Z-lysine and showed specificity for fructosyl lysine residues.
研究了果糖基赖氨酸氧化酶(FLOD)在酶法测定血清糖化白蛋白水平中的应用。为了分离具有这种酶活性的微生物,我们在富集培养基中使用Nε-果糖基Nα-Z-赖氨酸(ε-FL)作为唯一氮源。分离出的真菌菌株S-1F4在无细胞提取物中显示出高FLOD活性,并被鉴定为尖孢镰刀菌。FLOD在SDS-PAGE上纯化至表观均一性。SDS-PAGE上亚基的分子量为50 kDa,似乎以单体形式存在。该酶具有黄素蛋白的吸收光谱特征,并且发现黄素与酶共价结合。该酶作用于Nε-果糖基Nα-Z-赖氨酸和Nα-果糖基Nε-Z-赖氨酸,并对果糖基赖氨酸残基具有特异性。