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普萘洛尔和4'-羟基普萘洛尔的葡萄糖醛酸化。大鼠肝脏微粒体葡萄糖醛酸转移酶的底物特异性和立体选择性。

Glucuronidation of propranolol and 4'-hydroxypropranolol. Substrate specificity and stereoselectivity of rat liver microsomal glucuronyltransferases.

作者信息

Thompson J A, Hull J E, Norris K J

出版信息

Drug Metab Dispos. 1981 Sep-Oct;9(5):466-71.

PMID:6117447
Abstract

Liquid-chromatographic procedures were developed to assay the formation of diastereomeric glucuronides of propranolol (PG) and 4'-hydroxypropranolol (HPG) by rat liver microsomes, with identifications performed by GC/MS techniques. Propranolol was conjugated at a rate 10% of that determined for 4'-hydroxypropranolol. Glucuronyltransferase activity increased slightly (10-17%) in the presence of MgCl2. Inclusion of 0.04% Triton X-100 produced a 55% inhibition of PG formation, but increased HPG formation greater than 2-fold. Pretreatment of animals with phenobarbital resulted in a 4-fold increase in PG formation, but did not affect HPG formation unless MgCl2 was also present. Under these conditions, a 50-60% increase in HPG formation occurred. Pretreatment with 3-methylcholanthrene did not affect the formation of either glucuronide. (R)-(+)-Propranolol was glucuronidated 2-fold faster than the (S)-(-) enantiomer at substrate concentrations below 0.1 mM, and 1.3-fold faster at substrate concentrations above 2.0 mM. The estimated Vmax, 0.67 nmol/mg/min, was identical for both enantiomers. The dissociation constants were significantly different, however, being 0.57 mM for (R)-(+)-propranolol and 0.87 mM for (S)-(-)-propranolol. No stereoselectivity was observed in the formation of HPG when 4'-hydroxypropranolol was used as substrate, or when propranolol was incubated in the presence of an NADPH-generating system. Propranolol and 4'-hydroxypropranolol were used as substrate, or when propranolol was incubated in the presence of an NADPH-generating system. Propranolol and 4-hydroxypropranolol are apparently glucuronidated by different forms of rat liver glucuronyltransferase. Furthermore, propranolol glucuronidation occurs stereoselectively in vitro because of the different enzyme affinities for the enantiomers of the drug.

摘要

已开发出液相色谱法来测定大鼠肝微粒体中普萘洛尔(PG)和4'-羟基普萘洛尔(HPG)非对映体葡萄糖醛酸苷的形成,并通过气相色谱/质谱技术进行鉴定。普萘洛尔的结合速率为4'-羟基普萘洛尔测定速率的10%。在MgCl2存在的情况下,葡萄糖醛酸转移酶活性略有增加(10 - 17%)。加入0.04%的 Triton X - 100会导致PG形成受到55%的抑制,但HPG形成增加超过2倍。用苯巴比妥预处理动物会使PG形成增加4倍,但除非同时存在MgCl2,否则不会影响HPG形成。在这些条件下,HPG形成增加了50 - 60%。用3 - 甲基胆蒽预处理不会影响任何一种葡萄糖醛酸苷的形成。在底物浓度低于0.1 mM时,(R)-(+)-普萘洛尔的葡萄糖醛酸化速度比(S)-(-)对映体快2倍,在底物浓度高于2.0 mM时快1.3倍。两种对映体的估计Vmax均为0.67 nmol/mg/min。然而,解离常数有显著差异,(R)-(+)-普萘洛尔为0.57 mM,(S)-(-)-普萘洛尔为0.87 mM。当使用4'-羟基普萘洛尔作为底物时,或者当普萘洛尔在产生NADPH的系统存在下孵育时,在HPG形成过程中未观察到立体选择性。普萘洛尔和4'-羟基普萘洛尔被用作底物,或者当普萘洛尔在产生NADPH的系统存在下孵育时。普萘洛尔和4 - 羟基普萘洛尔显然是由大鼠肝葡萄糖醛酸转移酶的不同形式进行葡萄糖醛酸化的。此外,由于药物对映体与酶的亲和力不同,普萘洛尔的葡萄糖醛酸化在体外具有立体选择性。

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