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Single-well genotyping of diallelic sequence variations by a two-color ELISA-based oligonucleotide ligation assay.

机译:通过基于双色ELISA的寡核苷酸连接测定法对直链序列变异进行单孔基因分型。

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摘要

Single nucleotide substitutions and unique insertions/deletions are the most common form of DNA sequence variation and disease-causing mutation in the human genome. Because of the biological and medical importance of these variations, a wide array of methods have been developed for their typing. We have applied an approach that combines the amplification of polymorphic regions by the polymerase chain reaction (PCR) with a system for typing diallelic variants using an oligonucleotide ligation assay (OLA). In this report, we describe a significant advance in this technology that permits the typing of two alleles in a single microtiter well. By marking each of the allele-specific primers with a unique hapten, i.e. digoxigenin and fluorescein, each OLA reaction can be detected by using hapten specific antibodies that are labeled with different enzyme reporters, alkaline phosphatase or horseradish peroxidase. This system permits the detection of the two alleles using a high throughput format that leads to the production of two different colors. We demonstrate the specificity, sensitivity and ease of data interpretation with this system. Furthermore, we show that multiplex PCR/OLA not only increases the throughput of DNA typing but also increases its accuracy in typing diallelic sequence variations using an approach that can be broadly applied for human genome analysis (in evaluating genotype/phenotype links), in typing infectious agents and in forensic analysis.
机译:单核苷酸取代和独特的插入/缺失是人类基因组中DNA序列变异和致病突变的最常见形式。由于这些变体的生物学和医学重要性,因此已经开发了各种各样的打字方法。我们已经应用了一种方法,该方法将通过聚合酶链反应(PCR)进行的多态性区域扩增与使用寡核苷酸连接测定法(OLA)键入Dialallic变体的系统相结合。在本报告中,我们描述了这项技术的重大进步,该技术允许在单个微量滴定孔中键入两个等位基因。通过用独特的半抗原,即洋地黄毒苷和荧光素标记每个等位基因特异性引物,可以通过使用标记有不同酶报道分子,碱性磷酸酶或辣根过氧化物酶的半抗原特异性抗体来检测每个OLA反应。该系统允许使用高通量格式检测两个等位基因,从而产生两种不同的颜色。我们证明了该系统的特异性,敏感性和数据解释的简便性。此外,我们显示多重PCR / OLA不仅增加了DNA分型的通量,而且还提高了其在使用广泛应用于人类基因组分析(评估基因型/表型链接)的方法中对二元序列变异进行分型的准确性。传染源和法医分析。

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