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首页> 外文期刊>Analytical Biochemistry: An International Journal of Analytical and Preparative Methods >A single nucleotide polymorphism melt curve assay employing an intercalating dye probe fluorescence resonance energy transfer for forensic analysis
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A single nucleotide polymorphism melt curve assay employing an intercalating dye probe fluorescence resonance energy transfer for forensic analysis

机译:使用插入染料探针荧光共振能量转移进行法医分析的单核苷酸多态性熔解曲线测定

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The characterization and use of DNA sequence polymorphisms are an important aspect of forensic analysis. A number of approaches are being explored for single nucleotide polymorphism (SNP) genotyping, but current detection methods are subject to limitations that adversely impact their utility for forensic analysis. We have developed a novel method for genotyping both single and multiple SNPs that uses an intercalating dye and a probe labeled with a single fluorophore to affect a fluorescence energy transfer. Melting curve analysis is then used to distinguish true alleles from mismatched alleles. We term the new method dye probe fluorescence resonance energy transfer (dpFRET). In the current work, development proceeded at first with synthetic DNA template testing to establish proof of concept for the chemistry involved, followed by the design of polymerase chain reaction (PCR)-based genomic DNA assays to demonstrate potential forensic applications. The loci chosen for testing included both nuclear (MHC DRB) and mitochondrial DNA (cytochrome b) genes. A preliminary assessment of the sensitivity limits of the technology indicated that dpFRET was capable of accurately genotyping DNA from one single diploid cell equivalent. This technology could also potentially impact a wide range of nonforensic disciplines to aid in discovery, screening, and association of DNA sequence polymorphisms.
机译:DNA序列多态性的表征和使用是法医分析的重要方面。对于单核苷酸多态性(SNP)基因分型,正在探索许多方法,但是当前的检测方法受到限制,这不利地影响了其在法医分析中的效用。我们已经开发了一种用于对单个和多个SNP进行基因分型的新颖方法,该方法使用插入染料和一个标记有单个荧光团的探针来影响荧光能量转移。然后使用解链曲线分析将真实的等位基因与错配的等位基因区分开。我们称这种新方法为染料探针荧光共振能量转移(dpFRET)。在当前的工作中,首先进行合成DNA模板测试以建立所涉及化学的概念证明,然后进行基于聚合酶链反应(PCR)的基因组DNA分析设计,以证明潜在的法医学应用。选择进行测试的基因座包括核基因(MHC DRB)和线粒体DNA(细胞色素b)基因。对技术灵敏度极限的初步评估表明,dpFRET能够从一个单一的二倍体细胞当量中准确地对DNA进行基因分型。该技术还可能会影响广泛的非司法学科,以帮助发现,筛选和关联DNA序列多态性。

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