Lewis A S, Glantz M D
Biochemistry. 1976 Oct 5;15(20):4451-7. doi: 10.1021/bi00665a018.
Bovine brain purine-nucleoside phosphorylase (purine-nucleoside:orthophosphate ribosyltransferase, EC 2.4.2.1) was purified to homogeneity at a specific activity of 78 mumol min-1 mg of protein-1. A molecular weight of 78 000-80 000 was calculated for the native enzyme by fel filtration on Sephadex. Gel electrophoresis in the presence of sodium dodecyl sulfate indicated subunits of molecular weight of 38 000. Chemical and kinetic studies strongly implicated histidine and cysteine as catalytic groups at the active site of the enzyme. The pKa's determined for ionizable groups at the active site of the free enzyme were 5.8 and 8.2. Enzyme completely inactivated by p-chloromercuribenzoate was partially reactivated enzyme. A strong susceptibility to photooxidation in presence of methylene blue was observed. Photoinactivation was pH dependent, implicating histidine as the susceptible group at the active site. A rapid loss of catalytic activity upon incubation at 55 degrees C suggested heat lability. An activation energy of 9.6 kcal/mol was calculated. The nature of the catalytic mechanism of the enzyme was investigated, and initial velocity studies showed linear converging patterns of double-reciprocal plots of the data, consistent with a sequential catalytic mechanism. The product inhibition pattern was at variance with both the ordered Bi-Bi and random mechanisms. The observed competition between purine and nucleoside, and between inorganic orthophosphate and ribose 1-phosphate for this ordered mechanism, suggest a Theorell-Chance mechanism. Michaelis constants determined for substrates of the enzyme were 4.35 X 10(-5) M for guanosine, 3.00 X 10(-5) M for guanine, and 2.15 X 10(-2) M for inorganic orthophosphate.
牛脑嘌呤核苷磷酸化酶(嘌呤核苷:正磷酸核糖基转移酶,EC 2.4.2.1)被纯化至均一,比活性为78 μmol·min⁻¹·mg蛋白质⁻¹。通过在葡聚糖凝胶上的凝胶过滤计算出天然酶的分子量为78000 - 80000。在十二烷基硫酸钠存在下的凝胶电泳表明亚基分子量为38000。化学和动力学研究强烈表明组氨酸和半胱氨酸是该酶活性位点的催化基团。游离酶活性位点可电离基团的pKa值分别为5.8和8.2。被对氯汞苯甲酸完全灭活的酶部分被重新激活。在亚甲蓝存在下观察到对光氧化的强烈敏感性。光灭活依赖于pH值,表明组氨酸是活性位点的敏感基团。在55℃孵育时催化活性迅速丧失表明热不稳定性。计算出的活化能为9.6 kcal/mol。研究了该酶催化机制的性质,初始速度研究表明数据的双倒数图呈线性收敛模式,这与顺序催化机制一致。产物抑制模式与有序的双底物双产物机制和随机机制均不同。观察到嘌呤与核苷之间以及无机正磷酸盐与1 - 磷酸核糖之间对于这种有序机制的竞争,表明是一种Theorell - Chance机制。该酶底物的米氏常数分别为:鸟苷4.35×10⁻⁵ M、鸟嘌呤3.00×10⁻⁵ M、无机正磷酸盐2.15×10⁻² M。