Schwenn J D, Krone F A, Husmann K
Institut für Biochemie der Pflanzen, Ruhr Universität Bochum, Federal Republic of Germany.
Arch Microbiol. 1988;150(4):313-9. doi: 10.1007/BF00408300.
The enzymatic mechanism of sulphite formation in Saccharomyces cerevisiae was investigated using a purified 3'-phosphoadenylsulphate (PAPS) reductase and thioredoxin. The functionally active protein (MR 80-85 k) is represented by a dimer which reduces 3'-phosphoadenylyl sulphate to adenosine-3',5'-bisphosphate and free sulphite at a stoichiometry of 1:1. Reduced thioredoxin is required as cosubstrate. Examination of the reaction products showed that free anionic sulphite is formed with no evidence for "bound-sulphite(s)" as intermediate. Vmax of the enriched enzyme was 4-7 nmol sulphite.min-1.mg-1 using the homologous thioredoxin from yeast. The velocity of reaction decreased to 0.4 nmol sulphite.min-1.mg-1 when heterologous thioredoxin (from Escherichia coli) was used instead. The Km of homologous thioredoxin was 0.6.10(-6) M, for the heterologous cosubstrate it increased to 1.4.10(-6) M. The affinity for PAPS remained practically unaffected (Km PAPS: 19.10(-6) M in the homologous, and 21.10(-6) M in the heterologous system). From the kinetic data it is concluded that the enzyme followed an ordered mechanism with thioredoxin as first substrate followed by PAPS as the second. Parallel lines in the reciprocal and a common intersect in the Hanes-plots for thioredoxin were seen as indication of a ping-pong (with respect to thioredoxin) uni-bi (with respect to PAPS) mechanism.
利用纯化的3'-磷酸腺苷硫酸(PAPS)还原酶和硫氧还蛋白研究了酿酒酵母中亚硫酸盐形成的酶促机制。功能活性蛋白(分子量80 - 85k)以二聚体形式存在,它以1:1的化学计量比将3'-磷酸腺苷硫酸还原为腺苷-3',5'-二磷酸和游离亚硫酸盐。还原型硫氧还蛋白作为共底物是必需的。对反应产物的检测表明,形成了游离的阴离子亚硫酸盐,没有证据表明存在“结合亚硫酸盐”作为中间体。使用来自酵母的同源硫氧还蛋白时,富集酶的Vmax为4 - 7 nmol亚硫酸盐·分钟-1·毫克-1。当使用异源硫氧还蛋白(来自大肠杆菌)时,反应速度降至0.4 nmol亚硫酸盐·分钟-1·毫克-1。同源硫氧还蛋白的Km为0.6×10(-6) M,对于异源共底物,它增加到1.4×10(-6) M。对PAPS的亲和力几乎不受影响(PAPS的Km:同源系统中为19×10(-6) M,异源系统中为21×10(-6) M)。从动力学数据可以得出结论,该酶遵循有序机制,硫氧还蛋白作为第一个底物,随后是PAPS作为第二个底物。硫氧还蛋白的倒数图中的平行线和Hanes图中的共同交点表明是乒乓(相对于硫氧还蛋白)单双(相对于PAPS)机制。