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含咪唑和2-甲基咪唑的法尼基蛋白转移酶抑制剂的比较:与大鼠肝脏细胞色素P450的相互作用及代谢

Comparison of imidazole- and 2-methyl imidazole-containing farnesyl-protein transferase inhibitors: interaction with and metabolism by rat hepatic cytochrome P450s.

作者信息

Tang C, Chiba M, Nishime J, Hochman J H, Chen I, Williams T M, Lin J H

机构信息

Department of Drug Metabolism, Merck Research Laboratories, West Point, Pennsylvania, USA.

出版信息

Drug Metab Dispos. 2000 Jun;28(6):680-6.

Abstract

Methylation at the 2-position of the imidazole ring of IBN (I), a 1, 5-substituted imidazole-containing compound, was carried out to minimize its inhibition of rat cytochrome P450 (CYP)3A activity. The resulting analog 2-MIBN (II) exhibited an inhibitory potency 70-fold weaker (K(i) = 25 microM) than that of I (K(i) = 0.3 microM) toward CYP3A, the major rat liver microsomal P450 isoform(s) for the metabolism of I and II by rat liver microsomes in the presence of NADPH. The structural modification did not switch the major metabolic pathways for I and II, but significantly decreased the affinity of II to the metabolizing enzyme(s) as reflected by the difference in their K(i) values for CYP3A. Enzyme kinetic studies also demonstrated that I had a lower apparent K(m) (0.3 microM) than than II (18 microM), but an apparent V(max) 14 times lower than II. This finding indicates that methylation at the imidazole ring reduced the affinity of the compound to CYP3A, but increased the catalytic capacity, turning I as a substrate of low K(m) value but low capacity into a compound of high K(m) but high capacity for the metabolism. Our results suggest the significance of substrate concentration in comparing the metabolic stability of compounds with different kinetic parameters. Although higher intrinsic clearance is implied for I when the substrate concentration is below or close to its K(m) value, higher metabolic rate was constantly seen with II over micromolar range. The different kinetic parameters of I and II may also explain the observation that no significant difference in pharmacokinetic behavior was seen after an i.v. administration of I and II to the rat.

摘要

对含1,5 - 二取代咪唑的化合物IBN(I)咪唑环2位进行甲基化,以尽量减少其对大鼠细胞色素P450(CYP)3A活性的抑制。所得类似物2 - MIBN(II)对CYP3A的抑制效力比I(K(i) = 0.3 microM)弱70倍(K(i) = 25 microM),CYP3A是大鼠肝脏微粒体中参与I和II在NADPH存在下代谢的主要P450亚型。结构修饰并未改变I和II的主要代谢途径,但如它们对CYP3A的K(i)值差异所示,显著降低了II对代谢酶的亲和力。酶动力学研究还表明,I的表观K(m)(0.3 microM)低于II(18 microM),但表观V(max)比II低14倍。这一发现表明,咪唑环甲基化降低了化合物对CYP3A的亲和力,但增加了催化能力,使I从低K(m)值但低催化能力的底物转变为高K(m)但高催化能力的化合物。我们的结果表明,在比较具有不同动力学参数的化合物的代谢稳定性时,底物浓度具有重要意义。虽然当底物浓度低于或接近其K(m)值时,I的内在清除率较高,但在微摩尔范围内,II的代谢率始终较高。I和II不同的动力学参数也可以解释在大鼠静脉注射I和II后未观察到药代动力学行为有显著差异这一现象。

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