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Heteropolymeric Triplex-Based Genomic Assay® to Detect Pathogens or Single-Nucleotide Polymorphisms in Human Genomic Samples

机译:基于异质三链体的GenomicAssay®,可检测人类基因组样品中的病原体或单核苷酸多态性

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摘要

Human genomic samples are complex and are considered difficult to assay directly without denaturation or PCR amplification. We report the use of a base-specific heteropolymeric triplex, formed by native duplex genomic target and an oligonucleotide third strand probe, to assay for low copy pathogen genomes present in a sample also containing human genomic duplex DNA, or to assay human genomic duplex DNA for Single Nucleotide Polymorphisms (SNP), without PCR amplification. Wild-type and mutant probes are used to identify triplexes containing FVL G1691A, MTHFR C677T and CFTR mutations. The specific triplex structure forms rapidly at room temperature in solution and may be detected without a separation step. YOYO-1, a fluorescent bis-intercalator, promotes and signals the formation of the specific triplex. Genomic duplexes may be assayed homogeneously with single base pair resolution. The specific triple-stranded structures of the assay may approximate homologous recombination intermediates, which various models suggest may form in either the major or minor groove of the duplex. The bases of the stable duplex target are rendered specifically reactive to the bases of the probe because of the activity of intercalated YOYO-1, which is known to decondense duplex locally 1.3 fold. This may approximate the local decondensation effected by recombination proteins such as RecA in vivo. Our assay, while involving triplex formation, is sui generis, as it is not homopurine sequence-dependent, as are “canonical triplexes”. Rather, the base pair-specific heteropolymeric triplex of the assay is conformation-dependent. The highly sensitive diagnostic assay we present allows for the direct detection of base sequence in genomic duplex samples, including those containing human genomic duplex DNA, thereby bypassing the inherent problems and cost associated with conventional PCR based diagnostic assays.
机译:人类基因组样本很复杂,如果不进行变性或PCR扩增,则很难直接测定。我们报告了使用由天然双链体基因组靶标和寡核苷酸第三链探针组成的碱基特异性杂多三链体的使用,以测定存在于也包含人类基因组双链体DNA的样品中的低拷贝病原体基因组,或测定人类基因组双链体DNA用于单核苷酸多态性(SNP),无需PCR扩增。野生型和突变探针用于鉴定含有FVL G1691A,MTHFR C677T和CFTR突变的三链体。特定的三链体结构在室温下在溶液中迅速形成,无需分离即可检测到。 YOYO-1是一种荧光双嵌入剂,可促进并标记特定三链体的形成。基因组双链体可以单一碱基对的分辨率进行均质分析。该测定法的特定三链结构可以近似于同源重组中间体,各种模型暗示该同源重组中间体可以在双链体的主要或次要凹槽中形成。由于插入的YOYO-1的活性,使稳定的双链体靶标的碱基对探针的碱基具特异性反应,已知该活性可以使双链体局部缩合1.3倍。这可能近似于由重组蛋白例如RecA在体内引起的局部解缩。我们的测定法虽然涉及三链体的形成,但它是专门的,因为它不是高嘌呤序列依赖性的,而“规范性三链体”则不是。而是,测定的碱基对特异性杂多三元组是构象依赖性的。我们目前提供的高度灵敏的诊断检测方法可直接检测基因组双链样品(包括含有人基因组双链DNA的样品)中的碱基序列,从而绕过与常规基于PCR的诊断检测相关的固有问题和成本。

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  • 年度 2007
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