Fujiwara Maki, Sumitani Jun-ichi, Koga Shinji, Yoshioka Issei, Kouzuma Takuji, Imamura Shigeyuki, Kawaguchi Takashi, Arai Motoo
Department of Applied Life Sciences, Graduate School of Life and Environmental Sciences, Osaka Prefecture University, Osaka, Japan.
Appl Microbiol Biotechnol. 2007 Mar;74(4):813-9. doi: 10.1007/s00253-006-0720-z. Epub 2006 Dec 9.
Fructosyl-amino acid oxidase (FOD-F) from Fusarium oxysporum f. sp. raphani (NBRC 9972) is the enzyme catalyzing the oxidative deglycation of fructosyl-amino acids such as N(epsilon)-fructosyl N(alpha)-benzyloxycarbonyl-lysine (FZK) and fructosyl valine (FV), which are model compounds of the glycated proteins in blood. Wild-type FOD-F has high activities toward both substrates. We obtained a mutant FOD-F, which reacts with FZK but not with FV by random mutagenesis. One amino-acid substitution (K373R) occurred in the mutant FOD-F. In addition to K373R, K373W, K373M, K373T, and K373V, which were selected for optimization of the substitution at position K373, were purified and characterized. Kinetic analysis showed that the catalytic turnover for FV greatly decreased, whereas that for FZK did not. In consequence, the specificities toward FZK were increased in the mutant FOD-Fs. The relation between the substrate specificity of the mutant FOD-Fs and the position of the carboxyl group of the substrates was demonstrated using a series of the substrates having the carboxyl group at the different position. The mutant FOD-Fs are attractive candidates for developing an enzymatic measurement method for glycated proteins such as glycated albumin in serum. This study will be helpful to establish an easier and rapid clinical assay system of glycated albumin.
来自萝卜尖镰孢菌(NBRC 9972)的果糖基氨基酸氧化酶(FOD - F)是一种催化果糖基氨基酸氧化脱糖基化反应的酶,这些果糖基氨基酸如N(ε)-果糖基 - N(α)-苄氧羰基赖氨酸(FZK)和果糖基缬氨酸(FV),它们是血液中糖化蛋白的模型化合物。野生型FOD - F对这两种底物都具有高活性。我们通过随机诱变获得了一种突变型FOD - F,它能与FZK反应,但不能与FV反应。在突变型FOD - F中发生了一个氨基酸取代(K373R)。除了K373R之外,还对K373W、K373M、K373T和K373V进行了纯化和表征,这些是为优化K373位点的取代而选择的。动力学分析表明,FV的催化周转率大幅下降,而FZK的催化周转率没有下降。因此,突变型FOD - F对FZK的特异性增加。使用一系列在不同位置具有羧基的底物,证明了突变型FOD - F的底物特异性与底物羧基位置之间的关系。突变型FOD - F是开发血清中糖化蛋白(如糖化白蛋白)酶促测量方法的有吸引力的候选物。这项研究将有助于建立一种更简便、快速的糖化白蛋白临床检测系统。