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使用侵入者系统对细胞色素P450 2D6等位基因进行鉴定。

Characterization of cytochrome P450 2D6 alleles using the Invader system.

作者信息

Nevilie Matt, Selzer Rebecca, Aizenstein Brian, Maguire Megan, Hogan Kirk, Walton Robert, Welsh Ken, Neri Bruce, de Arruda Monika

机构信息

Third Wave Technologies, Madison, WI 53719-1256, USA.

出版信息

Biotechniques. 2002 Jun;Suppl:34-8, 40-3.

Abstract

The cytochrome p450 (CYP) superfamily comprises enzymes that play an essential role in the transformation of medically relevant compounds. Accurate genotyping of polymorphisms in members of this family is drawing increasing interest because certain allelic variants may result in either loss of efficacy or toxic accumulation of therapeutic agents. Debrisoquine 4-hydroxylase, or CYP2D6, is among the most widely studied of the CYPs. The complexity of the CYP2D6 genomic region, including pseudogenes, gene deletions, and gene duplications, has offered numerous challenges to developing a genotyping strategy. We describe a comprehensive CYP2D6 genotyping strategy that employs both a PCR/Invader genotyping assay system and an Invader genomic copy number assay The Invader system is a homogeneous, isothermal, highly specific, and robust signal amplification system. Resultsfrom II CYP2D6 assays in an alle frequency study compare well to published allele frequency values for Caucasians. Further, Invader assays provided unambiguous genotyping determinations for 100% of the 171 samples that yielded a visible PCR product on an agarose gel. A copy number assay yielded only one equivocal result in 205 samples. We identified 17 single-copy individuals and 17 three-copy (or more) individuals.

摘要

细胞色素P450(CYP)超家族包含在医学相关化合物转化过程中起关键作用的酶。该家族成员多态性的准确基因分型正引起越来越多的关注,因为某些等位基因变体可能导致治疗药物疗效丧失或毒性蓄积。异喹胍4-羟化酶,即CYP2D6,是研究最为广泛的CYP之一。CYP2D6基因组区域的复杂性,包括假基因、基因缺失和基因重复,给开发基因分型策略带来了诸多挑战。我们描述了一种全面的CYP2D6基因分型策略,该策略同时采用了PCR/侵入者基因分型检测系统和侵入者基因组拷贝数检测方法。侵入者系统是一种均相、等温、高度特异且稳健的信号放大系统。在一项等位基因频率研究中,11项CYP2D6检测结果与已发表的高加索人的等位基因频率值吻合良好。此外,侵入者检测对在琼脂糖凝胶上产生可见PCR产物的171个样本中的100%给出了明确的基因分型判定。在205个样本中,拷贝数检测仅产生了一个模棱两可的结果。我们鉴定出了17个单拷贝个体和17个三拷贝(或更多拷贝)个体。

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