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细胞色素P450(CYP)含量与从cDNA表达的CYPs到人类肝微粒体的相对活性缩放方法的比较:辅助蛋白比例作为方法间差异的来源

Comparison between cytochrome P450 (CYP) content and relative activity approaches to scaling from cDNA-expressed CYPs to human liver microsomes: ratios of accessory proteins as sources of discrepancies between the approaches.

作者信息

Venkatakrishnan K, von Moltke L L, Court M H, Harmatz J S, Crespi C L, Greenblatt D J

机构信息

Department of Pharmacology and Experimental Therapeutics, Tufts University School of Medicine, Boston, Massachusetts 02111, USA.

出版信息

Drug Metab Dispos. 2000 Dec;28(12):1493-504.

PMID:11095589
Abstract

Relative activity factors (RAFs) and immunoquantified levels of cytochrome P450 (CYP) isoforms both have been proposed as scaling factors for the prediction of hepatic drug metabolism from studies using cDNA-expressed CYPs. However, a systematic comparison of the two approaches, including possible mechanisms underlying differences, is not available. In this study, RAFs determined for CYPs 1A2, 2B6, 2C19, 2D6, and 3A4 in 12 human livers using lymphoblast-expressed enzymes were compared to immunoquantified protein levels. 2C19, 2D6, and 3A4 RAFs were similar to immunoquantified enzyme levels. In contrast, 1A2 RAFs were 5- to 20-fold higher than CYP1A2 content, and the RAF:content ratio was positively correlated with the molar ratio of NADPH:CYP oxidoreductase (OR) to CYP1A2. The OR:CYP1A2 ratio in lymphoblast microsomes was 92-fold lower than in human liver microsomes. Reconstitution experiments demonstrated a 10- to 20-fold lower activity at OR:CYP1A2 ratios similar to those in lymphoblasts, compared with those in human livers. CYP2B6-containing lymphoblast microsomes had 29- and 13-fold lower OR:CYP and cytochrome b(5):CYP ratios, respectively, than did liver microsomes and yielded RAFs that were 6-fold higher than CYP2B6 content. Use of metabolic rates from cDNA-expressed CYPs containing nonphysiologic concentrations of electron-transfer proteins (relative to human liver microsomes) in conjunction with hepatic CYP contents may lead to incorrect predictions of liver microsomal rates and relative contributions of individual isoforms. Scaling factors used in bridging the gap between expression systems and liver microsomes should not only incorporate relative hepatic abundance of individual CYPs but also account for differences in activity per unit enzyme in the two systems.

摘要

相对活性因子(RAFs)和细胞色素P450(CYP)同工酶的免疫定量水平均已被提议作为从使用cDNA表达的CYPs的研究中预测肝脏药物代谢的标度因子。然而,尚未有对这两种方法的系统比较,包括差异潜在的机制。在本研究中,使用淋巴细胞表达的酶测定了12个人类肝脏中CYP 1A2、2B6、2C19、2D6和3A4的RAFs,并与免疫定量的蛋白质水平进行了比较。2C19、2D6和3A4的RAFs与免疫定量的酶水平相似。相比之下,1A2的RAFs比CYP1A2含量高5至20倍,且RAF:含量比值与NADPH:CYP氧化还原酶(OR)与CYP1A2的摩尔比呈正相关。淋巴细胞微粒体中的OR:CYP1A2比值比人类肝脏微粒体中的低92倍。重组实验表明,与人类肝脏相比,在与淋巴细胞中相似的OR:CYP1A2比值下,活性低10至20倍。含CYP2B6的淋巴细胞微粒体的OR:CYP和细胞色素b5(55:CYP比值分别比肝脏微粒体低29倍和13倍,其产生的RAFs比CYP2B6含量高6倍。使用含有非生理浓度电子传递蛋白(相对于人类肝脏微粒体)的cDNA表达的CYPs的代谢率以及肝脏CYP含量可能会导致对肝脏微粒体速率和各个同工型相对贡献的错误预测。用于弥合表达系统与肝脏微粒体之间差距的标度因子不仅应纳入各个CYPs的相对肝脏丰度,还应考虑两个系统中每单位酶活性的差异。

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