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药物代谢酶基因单核苷酸多态性综合基因分型检测试剂盒性能验证

Validation of the performance of a comprehensive genotyping assay panel of single nucleotide polymorphisms in drug metabolism enzyme genes.

作者信息

Welch Robert A, Lazaruk Katherine, Haque Kashif A, Hyland Fiona, Xiao Nianqing, Wronka Loni, Burdett Laura, Chanock Stephen J, Ingber Daniel, De La Vega Francisco M, Yeager Meredith

机构信息

Core Genotyping Facility, Division of Cancer Epidemiology and Genetics, National Cancer Institute, National Institutes of Health, Department of Health and Human Services, Bethesda, Maryland, USA.

出版信息

Hum Mutat. 2008 May;29(5):750-6. doi: 10.1002/humu.20703.

Abstract

A class of genes, known as drug metabolism enzymes (DMEs) are responsible for the metabolism and transport of drugs and other xenobiotics. Variation in DME genes most likely accounts for a proportion of the variability in drug response in humans, and may contribute to complex diseases such as cancer (Nebert DW, Dieter MZ. Pharmacology 2000;61:124-135). To date, assessing the extent of this variation has proven difficult, especially because of sequence paralogy issues that cause difficulty when attempting to genotype polymorphisms in very closely-related gene families (Murphy MP. Pharmacogenomics 2000;1:115-123; Ingelman-Sundberg M. Drug Metab Rev 1999;31:449-459). We have developed and genotyped a panel of N=2,325 individual TaqMan genotyping assays for polymorphisms in >200 DME genes; many of the variants in the panel are single nucleotide polymorphisms (SNPs) that are of known or putative function (e.g., missense, nonsense or frameshift). Using these assays, we have examined genetic variation among several groups of populations, including: 1) the two SNP500 Cancer population panels (http://snp500cancer.nci.nih.gov; last accessed: 11 December 2007); and 2) the panel used in the International HapMap Project panel (www.hapmap.org; last accessed: 11 December 2007). We have developed a comprehensive validation strategy to ensure reproducibility and accuracy of the assays and estimated minor allele frequencies. Here, we present the results of these analyses, which strongly suggest that this panel of DME assays are of extremely high quality and produce robust, accurate, and reproducible results.

摘要

一类被称为药物代谢酶(DMEs)的基因负责药物及其他异生物素的代谢和转运。DME基因的变异很可能是人类药物反应变异性的一部分原因,并且可能导致诸如癌症等复杂疾病(内伯特·D·W,迪特尔·M·Z。《药理学》2000年;61:124 - 135)。迄今为止,评估这种变异的程度已被证明是困难的,尤其是由于序列旁系同源性问题,在试图对非常密切相关的基因家族中的多态性进行基因分型时会造成困难(墨菲·M·P。《药物基因组学》2000年;1:115 - 123;英格尔曼 - 松德伯格·M。《药物代谢评论》1999年;31:449 - 459)。我们已经开发并对一组N = 2325个个体的TaqMan基因分型检测进行了基因分型,用于检测200多个DME基因中的多态性;该检测组中的许多变异是具有已知或推测功能的单核苷酸多态性(SNP)(例如,错义、无义或移码突变)。使用这些检测,我们研究了几组人群中的遗传变异,包括:1)两个SNP500癌症人群检测组(http://snp500cancer.nci.nih.gov;最后访问时间:2007年12月11日);以及2)国际人类基因组单体型图计划检测组中使用的检测组(www.hapmap.org;最后访问时间:2007年12月11日)。我们已经制定了全面的验证策略,以确保检测的可重复性和准确性以及估计次要等位基因频率。在此,我们展示这些分析的结果,这些结果强烈表明这组DME检测具有极高的质量,并能产生可靠、准确且可重复的结果。

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