Kamataki T, Lee Lin M C, Belcher D H, Neal R A
Drug Metab Dispos. 1976 Mar-Apr;4(2):180-9.
The metabolism of parathion has been examined by use of a reconstituted mixed-function oxidase enzyme system isolated from the livers of phenobarbital-pretreated rabbits. The cytochrome P-450 used in these studies was apparently homogeneous as determined by sodium dodecyl sulfate polyacrylamide gel electrophoresis and by assay of the preparation for contaminating microsomal enzymes and enzyme activity. These studies revealed that the apparently homogeneous preparation of cytochrome P-450, in the presence of the appropriate cofactors, can catalyze the conversions of parathion to both paraoxon and diethyl phosphorothioic acid. The present studies have also shown that parathion is metabolized by the reconstituted mixed-function oxidase enzyme system to diethyl phosphoric acid, a product which, in previous studies with intact liver microsomes, had been thought to arise exclusively from the hydrolysis of paraoxon by a microsomal esterase(s). The available data suggest that all three of the products of the metabolism of parathion by the reconstituted mixed-function oxidase enzyme system, namely, paraoxon, diethyl phosphorothioic acid, and diethyl phosphoric acid, are formed nonenzymatically by breakdown by different pathways of a common enzymatically formed intermediate. This common intermediate is thought to be the sulfine derivative of parathion formed in the mixed-function oxidase-catalyzed addition of an oxygen atom to one of the unshared electron pairs of the thiono-sulfur atom.
已通过使用从苯巴比妥预处理的兔肝脏中分离出的重组混合功能氧化酶系统来研究对硫磷的代谢。通过十二烷基硫酸钠聚丙烯酰胺凝胶电泳以及对该制剂中微粒体酶和酶活性污染物的测定,确定这些研究中使用的细胞色素P - 450显然是纯一的。这些研究表明,在适当的辅因子存在下,细胞色素P - 450的纯一制剂可催化对硫磷转化为对氧磷和二乙基硫代磷酸。目前的研究还表明,对硫磷被重组混合功能氧化酶系统代谢为二乙基磷酸,在先前对完整肝微粒体的研究中,该产物被认为完全是由微粒体酯酶水解对氧磷产生的。现有数据表明,重组混合功能氧化酶系统代谢对硫磷的所有三种产物,即对氧磷、二乙基硫代磷酸和二乙基磷酸,是由一种共同的酶促形成的中间体通过不同途径分解而无酶形成的。这种共同的中间体被认为是在混合功能氧化酶催化下,一个氧原子加到硫代硫原子的一个未共享电子对上形成的对硫磷的亚砜衍生物。