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Rational design of HIV-1 fluorescent hydrolysis probes considering phylogenetic variation and probe performance

机译:考虑系统发育变异和探针性能的HIV-1荧光水解探针的合理设计

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摘要

Quantitative PCR (qPCR) using fluorescent hydrolysis probes (FH-probes; TaqMan®-probes) of variable genomes, such as HIV-1, can result in underestimation of viral copy numbers due to mismatches in the FH-probe's target sequences. Therefore both target conservation and physical properties of FH-probes, such as melting temperature, baseline fluorescence and secondary structure, should be considered in design of FH-probes.\ud\udAnalysis of a database of 1242 near full-length HIV-1 sequences with a novel computational tool revealed that the probability of target and FH-probe identity decreases exponentially with FH-probe length. In addition, this algorithm allowed for identification of continuous sequence stretches of high conservation, from which FH-probes with global HIV-1 clade coverage could be chosen. To revise the prerequisites of physical FH-probe function, properties of 30 DNA and 21 chimeric DNA locked nucleic acid (DLNA) HIV-1 FH-probes were correlated with their performance in qPCR. This identified the presence of stable secondary structures within FH-probes and the base composition and thermal stability of the 5′ proximal end as novel predictors of FH-probe performance.\ud\udThus, empirically validated novel principles of FH-probe design regarding conservation and qPCR-performance were identified, which complement and extend current rules for FH-probe design.
机译:使用可变基因组(例如HIV-1)的荧光水解探针(FH-probes;TaqMan®-probes)进行定量PCR(qPCR)可能会由于FH-probe的靶序列不匹配而导致病毒拷贝数低估。因此,在设计FH探针时,应同时考虑FH探针的目标保守性和物理特性,例如解链温度,基线荧光和二级结构。\ ud \ ud分析包含1242个全长HIV-1序列的数据库一个新颖的计算工具揭示了目标和FH探针同一性的概率随FH探针长度呈指数下降。此外,该算法可以识别高度保守的连续序列,从中可以选择具有全球HIV-1进化枝覆盖率的FH探针。为了修改物理FH探针功能的先决条件,将30个DNA和21个嵌合DNA锁定核酸(DLNA)HIV-1 FH探针的性质与其在qPCR中的性能相关。这确定了FH探针中是否存在稳定的二级结构以及5'近端的碱基组成和热稳定性是FH探针性能的新预测指标。\ ud \ ud因此,根据经验验证了FH探针设计中有关保护的新原理并确定了qPCR性能,补充并扩展了FH探针设计的现行规则。

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