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Operating Cooperatively (OC) Sensor for Highly Specific Recognition of Nucleic Acids

机译:协同操作(OC)传感器,用于核酸的高度特异性识别

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摘要

Molecular Beacon (MB) probes have been extensively used for nucleic acid analysis because of their ability to produce fluorescent signal in solution instantly after hybridization. The indirect binding of MB probe to a target analyte offers several advantages, including: improved genotyping accuracy and the possibility to analyse folded nucleic acids. Here we report on a new design for MB-based sensor, called ‘Operating Cooperatively’ (OC), which takes advantage of indirect binding of MB probe to a target analyte. The sensor consists of two unmodified DNA strands, which hybridize to a universal MB probe and a nucleic acid analyte to form a fluorescent complex. OC sensors were designed to analyze two human SNPs and E.coli 16S rRNA. High specificity of the approach was demonstrated by the detection of true analyte in over 100 times excess amount of single base substituted analytes. Taking into account the flexibility in the design and the simplicity in optimization, we conclude that OC sensors may become versatile and efficient tools for instant DNA and RNA analysis in homogeneous solution.
机译:分子信标(MB)探针已被广泛用于核酸分析,因为它们能够在杂交后立即在溶液中产生荧光信号。 MB探针与目标分析物的间接结合具有几个优势,包括:基因分型准确性提高以及分析折叠核酸的可能性。在这里,我们报告了一种基于MB的传感器的新设计,称为“合作操作(OC)”,该设计利用了MB探针与目标分析物的间接结合的优势。该传感器由两条未修饰的DNA链组成,它们与通用MB探针和核酸分析物杂交形成荧光复合物。 OC传感器旨在分析两个人类SNP和大肠杆菌16S rRNA。通过在超过100倍过量的单碱取代分析物中检测真实分析物,证明了该方法的高度特异性。考虑到设计的灵活性和优化的简便性,我们得出的结论是,OC传感器可能成为在均相溶液中进行即时DNA和RNA分析的通用和有效工具。

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