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通过一组新型基因敲除和人源化小鼠系来模拟人类细胞色素 P450 2D6 代谢和药物相互作用。

Modeling human cytochrome P450 2D6 metabolism and drug-drug interaction by a novel panel of knockout and humanized mouse lines.

机构信息

TaconicArtemis, Köln, Germany.

出版信息

Mol Pharmacol. 2012 Jan;81(1):63-72. doi: 10.1124/mol.111.075192. Epub 2011 Oct 11.

Abstract

The highly polymorphic human cytochrome P450 2D6 enzyme is involved in the metabolism of up to 25% of all marketed drugs and accounts for significant individual differences in response to CYP2D6 substrates. Because of the differences in the multiplicity and substrate specificity of CYP2D family members among species, it is difficult to predict pathways of human CYP2D6-dependent drug metabolism on the basis of animal studies. To create animal models that reflect the human situation more closely and that allow an in vivo assessment of the consequences of differential CYP2D6 drug metabolism, we have developed a novel straightforward approach to delete the entire murine Cyp2d gene cluster and replace it with allelic variants of human CYP2D6. By using this approach, we have generated mouse lines expressing the two frequent human protein isoforms CYP2D6.1 and CYP2D6.2 and an as yet undescribed variant of this enzyme, as well as a Cyp2d cluster knockout mouse. We demonstrate that the various transgenic mouse lines cover a wide spectrum of different human CYP2D6 metabolizer phenotypes. The novel humanization strategy described here provides a robust approach for the expression of different CYP2D6 allelic variants in transgenic mice and thus can help to evaluate potential CYP2D6-dependent interindividual differences in drug response in the context of personalized medicine.

摘要

高度多态性的人类细胞色素 P450 2D6 酶参与代谢多达 25%的上市药物,并导致对 CYP2D6 底物反应的显著个体差异。由于物种间 CYP2D 家族成员的多样性和底物特异性存在差异,因此很难根据动物研究来预测人类 CYP2D6 依赖性药物代谢的途径。为了创建更能反映人类情况的动物模型,并允许对差异 CYP2D6 药物代谢的后果进行体内评估,我们开发了一种新颖的直接方法来删除整个小鼠 Cyp2d 基因簇,并用人 CYP2D6 的等位变体取代它。通过使用这种方法,我们生成了表达两种常见人类蛋白同工型 CYP2D6.1 和 CYP2D6.2 以及这种酶的一种尚未描述的变体的小鼠系,以及 Cyp2d 簇敲除小鼠。我们证明,各种转基因小鼠系涵盖了广泛的不同人类 CYP2D6 代谢表型。这里描述的新型人源化策略为在转基因小鼠中表达不同的 CYP2D6 等位变体提供了一种强大的方法,从而有助于评估在个性化医疗背景下潜在的 CYP2D6 依赖性药物反应个体间差异。

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