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CYP2D亚家族在大鼠体内普萘洛尔与肝微粒体蛋白的代谢依赖性共价结合中的作用。

Role of the CYP2D subfamily in metabolism-dependent covalent binding of propranolol to liver microsomal protein in rats.

作者信息

Masubuchi Y, Narimatsu S, Hosokawa S, Suzuki T

机构信息

Laboratory of Biopharmaceutics, Faculty of Pharmaceutical Sciences, Chiba University, Japan.

出版信息

Biochem Pharmacol. 1994 Nov 16;48(10):1891-8. doi: 10.1016/0006-2952(94)90587-8.

Abstract

In vitro covalent binding of a chemically reactive metabolite of propranolol to microsomal macromolecules, which is presumed to cause inhibition of its own metabolism in rats, was diminished in liver microsomes from rats pretreated with propranolol. Covalent binding was suppressed by the addition of an antibody against P450BTL, which is a cytochrome P450 (P450) isozyme belonging to the CYP2D subfamily. SDS-PAGE of microsomal proteins after incubation with [3H]propranolol and NADPH indicated that the binding was non-selective but prominent at the molecular mass of approx. 50 kDa, corresponding to those of the P450 protein. The radioactivity peak was markedly but not completely diminished by the addition of reduced glutathione. In a reconstituted system containing P450BTL, NADPH-cytochrome P450 reductase (fp2) and dilauroylphosphatidylcholine, propranolol 4-, 5- and 7-hydroxylase activities decreased time dependently following preincubation with propranolol in the presence of NADPH, indicating time-dependent inactivation of P450BTL. The covalent binding of a reactive metabolite of [3H]propranolol to the proteins was also observed in this system. SDS-PAGE showed that among the three proteins in the reconstituted system, fp2 and P450BTL consisting of two polypeptides with molecular masses of 49 and 32 kDa, the binding was specific for a polypeptide corresponding to the P450 isozyme with a molecular mass of 49 kDa. In addition, the ratio of the amount of covalently bound radiolabelled materials to that of P450BTL which was estimated from each impaired propranolol hydroxylase activity under the same reconstitutional conditions was calculated to be approx. 1.0. These findings indicate that propranolol is a mechanism-based inactivator of a cytochrome P450 isozyme(s) belonging to the CYP2D subfamily.

摘要

普萘洛尔的化学反应性代谢物与微粒体大分子的体外共价结合,推测这会导致其在大鼠体内自身代谢受到抑制,而在用普萘洛尔预处理的大鼠肝脏微粒体中,这种结合作用减弱。添加针对P450BTL的抗体可抑制共价结合,P450BTL是属于CYP2D亚家族的一种细胞色素P450(P450)同工酶。用[3H]普萘洛尔和NADPH孵育后对微粒体蛋白进行SDS-PAGE分析表明,这种结合是非选择性的,但在大约50 kDa的分子量处较为明显,这与P450蛋白的分子量相对应。添加还原型谷胱甘肽后,放射性峰值显著降低,但并未完全消失。在含有P450BTL、NADPH-细胞色素P450还原酶(fp2)和二月桂酰磷脂酰胆碱的重组体系中,在NADPH存在的情况下,普萘洛尔与P450BTL预孵育后,普萘洛尔4-、5-和7-羟化酶活性随时间依赖性降低,表明P450BTL存在时间依赖性失活。在该体系中也观察到了[3H]普萘洛尔的反应性代谢物与蛋白质的共价结合。SDS-PAGE显示,在重组体系中的三种蛋白质中,由分子量为49 kDa和32 kDa的两种多肽组成的fp2和P450BTL,这种结合对分子量为49 kDa的与P450同工酶相对应的多肽具有特异性。此外,在相同重组条件下,根据每种受损的普萘洛尔羟化酶活性估算的共价结合放射性标记物的量与P450BTL的量之比计算约为1.0。这些发现表明,普萘洛尔是属于CYP2D亚家族的一种细胞色素P450同工酶的基于机制的失活剂。

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