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首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >A novel transversion in the intron 5 donor splice junction of CYP2C19 and a sequence polymorphism in exon 3 contribute to the poor metabolizer phenotype for the anticonvulsant drug S-mephenytoin.
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A novel transversion in the intron 5 donor splice junction of CYP2C19 and a sequence polymorphism in exon 3 contribute to the poor metabolizer phenotype for the anticonvulsant drug S-mephenytoin.

机译:CYP2C19的内含子5供体剪接连接处的新型颠换和外显子3的序列多态性导致抗惊厥药物S-美芬妥英的不良代谢者表型。

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摘要

Cytochrome P-450 (CYP) 2C19 is responsible for the metabolism of a number of therapeutic agents such as S-mephenytoin, omeprazole, proguanil, certain barbiturates, diazepam, propranolol, citalopram and imipramine. Genetic polymorphisms in this enzyme are responsible for the poor metabolizers (PM) of mephenytoin, which represent approximately 13-23% of Asians and 3-5% of Caucasians. Several polymorphisms contribute to this phenotype. We have isolated two new allelic variants that contribute to the PM phenotype in Caucasians. CYP2C19*7 contained a single T --> A nucleotide transversion in the invariant GT at the 5' donor splice site of intron 5. The second PM allele, CYP2C19*8, consisted of a T358C nucleotide transition in exon 3 that results in a Trp120Arg substitution. In a bacterial expression system, CYP2C198 protein exhibited a dramatic (approximately 90% and 70%) reduction in the metabolism of S-mephenytoin and tolbutamide, respectively, when compared with the wild-type CYP2C191B protein. Restriction fragment length polymerase chain reaction tests were developed to identify the new allelic variants.
机译:细胞色素P-450(CYP)2C19负责许多治疗剂的代谢,例如S-甲吩妥英,奥美拉唑,丙胍,某些巴比妥类药物,地西epa,普萘洛尔,西酞普兰和丙咪嗪。该酶的遗传多态性是造成甲苯妥英不良代谢者(PM)的原因,约占亚洲人的13-23%,白种人的3-5%。几种多态性有助于该表型。我们分离了两个新的等位基因变异,这些变异有助于高加索人的PM表型。 CYP2C19 * 7在内含子5的5'供体剪接位点的不变GT中包含单个T->核苷酸转化。第二个PM等位基因CYP2C19 * 8由外显子3中的T358C核苷酸过渡组成,导致Trp120Arg取代。在细菌表达系统中,与野生型CYP2C191B蛋白相比,CYP2C198蛋白的S-甲吩妥英和甲苯磺丁酰胺的代谢分别显着降低(约90%和70%)。开发了限制性片段长度聚合酶链反应测试以鉴定新的等位基因变体。

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