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CYP3A5表达对长春新碱在人肝微粒体中代谢的影响。

Effect of CYP3A5 expression on vincristine metabolism with human liver microsomes.

作者信息

Dennison Jennifer B, Jones David R, Renbarger Jamie L, Hall Stephen D

机构信息

Division of Clinical Pharmacology, Department of Medicine, Indiana University School of Medicine, 1001 West 10th St., W7123, Indianapolis, IN 46202, USA.

出版信息

J Pharmacol Exp Ther. 2007 May;321(2):553-63. doi: 10.1124/jpet.106.118471. Epub 2007 Feb 1.

Abstract

Vincristine is preferentially metabolized to a secondary amine, M1, by CYP3A5 with a 9- to 14-fold higher intrinsic clearance than CYP3A4 using cDNA-expressed enzymes. The genetically polymorphic expression of CYP3A5 may contribute to interindividual variability in vincristine efficacy and toxicity. The current study quantifies the contribution of cytochromes P450 (P450s), including CYP3A4 and CYP3A5, to vincristine metabolism with a bank of human liver microsomes (HLMs). M1 was the major metabolite formed with HLMs, and selective chemical inhibition of P450s confirmed that CYP3A was the major metabolizing subfamily. The liver tissues were genotyped for low expression alleles, CYP3A5*3,*6, and 7, and the HLMs were phenotyped for CYP3A4 and CYP3A5 expression by Western blot. Testosterone 6beta-hydroxylation and itraconazole hydroxylation were used to quantify CYP3A4 activity in the HLMs. For each CYP3A5 high expresser (n=10), the rate of M1 formation from vincristine due to CYP3A5 was quantified by subtracting the CYP3A4 contribution as determined by linear regression with CYP3A53/*3 samples. For CYP3A5 high expressers, the contribution of CYP3A5 to the metabolism of vincristine was 54 to 95% of the total activity, and the rate of M1 formation mediated by CYP3A5 correlated with CYP3A5 protein content (r2=0.95). Selective inhibition of CYP3A4 demonstrated that the M1 formation rate with CYP3A5 high expressers was differentially inhibited based on CYP3A4 activity. Using median values, the estimated hepatic clearances were 5-fold higher for CYP3A5 high expressers than low expressers. We conclude that polymorphic expression of CYP3A5 may be a major determinant in the P450-mediated clearance of vincristine.

摘要

使用cDNA表达的酶时,长春新碱优先被CYP3A5代谢为仲胺M1,其内在清除率比CYP3A4高9至14倍。CYP3A5的基因多态性表达可能导致长春新碱疗效和毒性的个体间差异。本研究用人肝微粒体(HLM)库量化了包括CYP3A4和CYP3A5在内的细胞色素P450(P450)对长春新碱代谢的贡献。M1是HLM形成的主要代谢产物,对P450的选择性化学抑制证实CYP3A是主要的代谢亚家族。对肝组织进行低表达等位基因CYP3A53、6和7的基因分型,并通过蛋白质印迹法对HLM进行CYP3A4和CYP3A5表达的表型分析。睾酮6β-羟化和伊曲康唑羟化用于量化HLM中的CYP3A4活性。对于每个CYP3A5高表达者(n = 10),通过减去用CYP3A53/*3样本线性回归确定的CYP3A4贡献,来量化CYP3A5导致的长春新碱生成M1的速率。对于CYP3A5高表达者,CYP3A5对长春新碱代谢的贡献占总活性的54%至95%,且CYP3A5介导的M1生成速率与CYP3A5蛋白含量相关(r2 = 0.95)。对CYP3A4的选择性抑制表明,CYP3A5高表达者的M1生成速率根据CYP3A4活性受到不同程度的抑制。使用中位数,CYP3A5高表达者的估计肝清除率比低表达者高5倍。我们得出结论,CYP3A5的多态性表达可能是P450介导的长春新碱清除的主要决定因素。

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