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七种用于实时PCR的新型探针系统可实现绝对的单碱基区分、更高的信号传导以及通用组件。

Seven novel probe systems for real-time PCR provide absolute single-base discrimination, higher signaling, and generic components.

作者信息

Murray James L, Hu Peixu, Shafer David A

机构信息

GeneTAG Technology, Inc., Atlanta, Georgia.

GeneTAG Technology, Inc., Atlanta, Georgia; Department of Psychiatry and Behavioral Sciences, Emory University School of Medicine, Atlanta, Georgia.

出版信息

J Mol Diagn. 2014 Nov;16(6):627-38. doi: 10.1016/j.jmoldx.2014.06.008.

Abstract

We have developed novel probe systems for real-time PCR that provide higher specificity, greater sensitivity, and lower cost relative to dual-labeled probes. The seven DNA Detection Switch (DDS)-probe systems reported here employ two interacting polynucleotide components: a fluorescently labeled probe and a quencher antiprobe. High-fidelity detection is achieved with three DDS designs: two internal probes (internal DDS and Flip probes) and a primer probe (ZIPR probe), wherein each probe is combined with a carefully engineered, slightly mismatched, error-checking antiprobe. The antiprobe blocks off-target detection over a wide range of temperatures and facilitates multiplexing. Other designs (Universal probe, Half-Universal probe, and MacMan probe) use generic components that enable low-cost detection. Finally, single-molecule G-Force probes employ guanine-mediated fluorescent quenching by forming a hairpin between adjacent C-rich and G-rich sequences. Examples provided show how these probe technologies discriminate drug-resistant Mycobacterium tuberculosis mutants, Escherichia coli O157:H7, oncogenic EGFR deletion mutations, hepatitis B virus, influenza A/B strains, and single-nucleotide polymorphisms in the human VKORC1 gene.

摘要

我们开发了用于实时聚合酶链反应(PCR)的新型探针系统,与双标记探针相比,该系统具有更高的特异性、更高的灵敏度和更低的成本。本文报道的七种DNA检测开关(DDS)探针系统采用了两个相互作用的多核苷酸组分:一个荧光标记探针和一个淬灭反探针。通过三种DDS设计实现了高保真检测:两种内部探针(内部DDS和翻转探针)和一种引物探针(ZIPR探针),其中每个探针都与精心设计的、略有错配的、用于错误检查的反探针相结合。该反探针可在很宽的温度范围内阻断非靶标检测,并有助于多重检测。其他设计(通用探针、半通用探针和MacMan探针)使用通用组分,可实现低成本检测。最后,单分子G力探针通过在相邻的富含C和富含G的序列之间形成发夹结构,利用鸟嘌呤介导的荧光淬灭。所提供的实例展示了这些探针技术如何区分耐药结核分枝杆菌突变体、大肠杆菌O157:H7、致癌性表皮生长因子受体(EGFR)缺失突变、乙型肝炎病毒、甲型/乙型流感病毒株以及人类维生素K环氧化物还原酶复合体亚单位1(VKORC1)基因中的单核苷酸多态性。

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