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通过评估伯氨喹5-羟化作用对50种CYP2D6等位基因变体进行功能表征。

Functional characterization of 50 CYP2D6 allelic variants by assessing primaquine 5-hydroxylation.

作者信息

Saito Takahiro, Gutiérrez Rico Evelyn Marie, Kikuchi Aoi, Kaneko Akira, Kumondai Masaki, Akai Fumika, Saigusa Daisuke, Oda Akifumi, Hirasawa Noriyasu, Hiratsuka Masahiro

机构信息

Laboratory of Pharmacotherapy of Life-Style Related Diseases, Graduate School of Pharmaceutical Sciences, Tohoku University, Sendai 980-8578, Japan.

Department of Parasitology and Research Center for Infectious Disease Sciences, Graduate School of Medicine, Osaka City University, Osaka 545-8585, Japan.

出版信息

Drug Metab Pharmacokinet. 2018 Dec;33(6):250-257. doi: 10.1016/j.dmpk.2018.08.004. Epub 2018 Aug 25.

Abstract

Cytochrome P450 2D6 (CYP2D6) is responsible for the metabolic activation of primaquine, an antimalarial drug. CYP2D6 is genetically polymorphic, and these polymorphisms are associated with interindividual variations observed in the therapeutic efficacy of primaquine. To further understand this association, we performed in vitro enzymatic analyses of the wild-type CYP2D6.1 and 49 CYP2D6 allelic variants, which were expressed in 293FT cells, using primaquine as a substrate. The concentrations of CYP2D6 variant holoenzymes were measured by using carbon monoxide (CO)-reduced difference spectroscopy, and the wild type and 27 variants showed a peak at 450 nm. The kinetic parameters K, V, and intrinsic clearance (V/K) of primaquine 5-hydroxylation were characterized. The kinetic parameters of the wild type and 16 variants were measured, but the values for the remaining 33 variants could not be determined because of low metabolite concentrations. Among the variants, six (i.e., CYP2D6.17, .18, .35, .39, .53, and .70) showed significantly reduced intrinsic clearance compared with that of CYP2D6.1. Three-dimensional structural modeling analysis was performed to elucidate the mechanism of changes in the kinetics of CYP2D6 variants. Our findings provide insights into the allele-specific activity of CYP2D6 for primaquine, which could be clinically useful for malaria treatment and eradication efforts.

摘要

细胞色素P450 2D6(CYP2D6)负责抗疟药物伯氨喹的代谢活化。CYP2D6具有基因多态性,这些多态性与伯氨喹治疗效果中观察到的个体间差异有关。为了进一步了解这种关联,我们以伯氨喹为底物,对在293FT细胞中表达的野生型CYP2D6.1和49种CYP2D6等位基因变体进行了体外酶分析。使用一氧化碳(CO)还原差光谱法测量CYP2D6变体全酶的浓度,野生型和27种变体在450nm处出现峰值。对伯氨喹5-羟化的动力学参数K、V和内在清除率(V/K)进行了表征。测量了野生型和16种变体的动力学参数,但由于代谢物浓度低,其余33种变体的值无法确定。在这些变体中,六种(即CYP2D6.17、.18、.35、.39、.53和.70)与CYP2D6.1相比,内在清除率显著降低。进行了三维结构建模分析,以阐明CYP2D6变体动力学变化的机制。我们的研究结果为CYP2D6对伯氨喹的等位基因特异性活性提供了见解,这在疟疾治疗和根除工作中可能具有临床应用价值。

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