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Locked nucleic acid (LNA) single nucleotide polymorphism (SNP) genotype analysis and validation using real-time PCR - art. no. e55

机译:使用实时PCR的锁核酸(LNA)单核苷酸多态性(SNP)基因型分析和验证-技术没有。 e55

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摘要

With an increased emphasis on genotyping of single nucleotide polymorphisms (SNPs) in disease association studies, the genotyping platform of choice is constantly evolving. In addition, the development of more specific SNP assays and appropriate genotype validation applications is becoming increasingly critical to elucidate ambiguous genotypes. In this study, we have used SNP specific Locked Nucleic Acid (LNA) hybridization probes on a real-time PCR platform to genotype an association cohort and propose three criteria to address ambiguous genotypes. Based on the kinetic properties of PCR amplification, the three criteria address PCR amplification efficiency, the net fluorescent difference between maximal and minimal fluorescent signals and the beginning of the exponential growth phase of the reaction. Initially observed SNP allelic discrimination curves were confirmed by DNA sequencing (n = 50) and application of our three genotype criteria corroborated both sequencing and observed real-time PCR results. In addition, the tested Caucasian association cohort was in Hardy-Weinberg equilibrium and observed allele frequencies were very similar to two independently tested Caucasian association cohorts for the same tested SNP. We present here a novel approach to effectively determine ambiguous genotypes generated from a real-time PCR platform. Application of our three novel criteria provides an easy to use semi-automated genotype confirmation protocol.
机译:随着疾病关联研究中对单核苷酸多态性(SNP)基因分型的日益重视,选择的基因分型平台也在不断发展。此外,开发更具体的SNP分析和适当的基因型验证应用对于阐明歧义基因型变得越来越重要。在这项研究中,我们在实时PCR平台上使用了SNP特异的锁核酸(LNA)杂交探针对关联队列进行基因分型,并提出了三个标准来解决歧义基因型。根据PCR扩增的动力学特性,这三个标准涉及PCR扩增效率,最大和最小荧光信号之间的净荧光差以及反应的指数生长期的开始。最初观察到的SNP等位基因辨别曲线通过DNA测序(n = 50)得到证实,我们三个基因型标准的应用证实了测序和观察到的实时PCR结果。此外,测试的白种人关联队列处于Hardy-Weinberg平衡状态,并且观察到的等位基因频率与两个独立测试的白种人关联队列对于相同的测试SNP非常相似。我们在这里提出一种新颖的方法来有效地确定从实时PCR平台生成的歧义基因型。我们三个新标准的应用提供了易于使用的半自动基因型确认方案。

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