Ohnishi K, Niimura Y, Yokoyama K, Hidaka M, Masaki H, Uchimura T, Suzuki H, Uozumi T, Kozaki M, Komagata K, Nishino T
Department of Agricultural Chemistry, Tokyo University of Agriculture, Japan.
J Biol Chem. 1994 Dec 16;269(50):31418-23.
The gene encoding the Amphibacillus xylanus flavoprotein has been cloned into pTTQ18 and overexpressed in Escherichia coli. The recombinant enzyme has been purified to homogeneity yielding 15 mg of pure enzyme/liter of cell culture. Recombinant flavoprotein is fully active and has an absorption spectrum identical to that of the enzyme purified from A. xylanus. The N-terminal sequence analysis and analytical gel filtration data confirm the structural identity of recombinant and A. xylanus enzymes. The Km value for oxygen and the Km value for NADH are 1.7 mM and 33.3 microM, respectively. In the presence of free additional FAD, however, the Km value for oxygen decrease dramatically. The NADH oxidase activity is accelerated markedly in the presence of additional FAD. The intracellular free FAD concentration of A. xylanus is calculated about 13 microM. This FAD concentration would be enough to accelerate the NADH oxidase activity of flavoprotein in cells of A. xylanus. Two-electron reduction of the enzyme FAD by the strong reductant dithionite occurs during the total uptake of 6 electrons. Such behavior usually indicates the presence of non-flavin redox centers. The high degree of homology between this enzyme and alkyl hydroperoxide reductase F52a protein and thioredoxin reductase suggests that these centers are the redox-active disulfide adjacent to the FAD and another disulfide, which is able to slowly interchange with the redox-active disulfide. The presence of two disulfides has been demonstrated.
编码木聚糖两栖芽孢杆菌黄素蛋白的基因已被克隆到pTTQ18中,并在大肠杆菌中过表达。重组酶已被纯化至同质,每升细胞培养物可产生15毫克纯酶。重组黄素蛋白具有完全活性,其吸收光谱与从木聚糖两栖芽孢杆菌纯化的酶相同。N端序列分析和分析凝胶过滤数据证实了重组酶和木聚糖两栖芽孢杆菌酶的结构一致性。氧的Km值和NADH的Km值分别为1.7 mM和33.3 μM。然而,在存在游离额外FAD的情况下,氧的Km值急剧下降。在存在额外FAD的情况下,NADH氧化酶活性显著加快。计算得出木聚糖两栖芽孢杆菌的细胞内游离FAD浓度约为13 μM。该FAD浓度足以加速木聚糖两栖芽孢杆菌细胞中黄素蛋白的NADH氧化酶活性。在总共摄取6个电子的过程中,强还原剂连二亚硫酸盐对酶FAD进行了双电子还原。这种行为通常表明存在非黄素氧化还原中心。该酶与烷基过氧化氢还原酶F52a蛋白和硫氧还蛋白还原酶之间的高度同源性表明,这些中心是与FAD相邻的氧化还原活性二硫键和另一个二硫键,后者能够与氧化还原活性二硫键缓慢交换。已经证明存在两个二硫键。