Department of Applied Neuroscience, Faculty of Medicine, Central European Institute of Technology (CEITEC), Brno, Czech Republic.
Mol Biotechnol. 2013 Jan;53(1):29-40. doi: 10.1007/s12033-012-9510-2.
High-resolution melting curve analysis (HRM) of polymerase chain reaction (PCR) amplicons has been described as a fast, cheap, and reliable closed-tube method of genotyping with no need for labeled primers or labeled probes. We adapted this melting analysis assay for the detection of the most common nonfunctional alleles of cytochrome P-450 (CYP) 2D6 in the Caucasian population that affect the metabolism of many commonly used drugs. We used this method to genotype 91 patients under paroxetine therapy. The presence and the constitution of the most common single-nucleotide polymorphisms (1846G>A, 2988G>A, 100C>T, 2549delA, 2615_2617delAAG, and 1707delT) in poor and intermediate metabolizers from the Caucasian population were detected in short amplicons (≤148 bp). After fluorescence normalization, the wild-type, homozygous, and heterozygous samples were easily distinguishable from each other by their specific melting curve shape. A total of 92.6% of the 1846G>A heterozygotes, 96% of the 100C>T heterozygotes, and 100% of the 2988G>A, 2549delA, 2615_2617delAAG, and 1707delT heterozygotes have been correctly distinguished from the wild types. One hundred percent of all the homozygotes in this group of patients have been detected without any error. HRM of short amplicons is a simple tool for effective, rapid, and reliable CYP2D6 genotyping that does not require real-time PCR, labeled probes, processing or any separations after PCR. The reaction is performed in a closed-tube system and is highly specific and sensitive. We proved that this technique is highly reliable for use in routine diagnostics.
聚合酶链反应(PCR)扩增子的高分辨率熔解曲线分析(HRM)已被描述为一种快速、廉价、可靠的闭管基因分型方法,无需标记引物或标记探针。我们将这种熔解分析检测方法应用于检测影响许多常用药物代谢的最常见的高加索人群 CYP2D6 无功能等位基因。我们使用这种方法对 91 名接受帕罗西汀治疗的患者进行了基因分型。在短扩增子(≤148bp)中检测到高加索人群中不良和中间代谢者最常见的单核苷酸多态性(1846G>A、2988G>A、100C>T、2549delA、2615_2617delAAG 和 1707delT)的存在和构成。荧光归一化后,野生型、纯合子和杂合子样本通过其特定的熔解曲线形状很容易彼此区分开来。1846G>A 杂合子的 92.6%、100C>T 杂合子的 96%、2988G>A、2549delA、2615_2617delAAG 和 1707delT 杂合子已被正确地区别于野生型。该组患者的所有纯合子均未出现任何错误地被检测到。短扩增子的 HRM 是一种简单的工具,用于有效、快速和可靠的 CYP2D6 基因分型,不需要实时 PCR、标记探针、PCR 后的处理或任何分离。该反应在封闭管系统中进行,具有高度特异性和灵敏度。我们证明该技术在常规诊断中非常可靠。