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Divide and Control: Comparison of Split and Switch Hybridization Sensors

机译:分割和控制:分裂和开关杂交传感器的比较

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Hybridization probes have been intensively used for nucleic acid analysis in medicine, forensics and fundamental research. Instantaneous hybridization probes (IHPs) enable signalling immediately after binding to a targeted DNA or RNA sequences without the need to isolate the probe-target complex (e.g. by gel electrophoresis). The two most common strategies for IHP design are conformational switches and split approach. A conformational switch changes its conformation and produces signal upon hybridization to a target. Split approach uses two (or more) strands that independently or semi independently bind the target and produce an output signal only if all components associate. Here, we compared the performance of split vs switch designs for deoxyribozyme (Dz) hybridization probes under optimal conditions for each of them. The split design was represented by binary Dz (BiDz) probes; while catalytic molecular beacon (CMB) probes represented the switch design. It was found that BiDz were significantly more selective than CMBs in recognition of single base substitution. CMBs produced high background signal when operated at 55℃. An important advantage of BiDz over CMB is more straightforward design and simplicity of assay optimization.
机译:杂交探针已被密切用于医学,取证和基础研究中的核酸分析。瞬时杂交探针(IHP)在与靶向的DNA或RNA序列结合后立即启用信号传导,而无需隔离探针靶向复合物(例如,通过凝胶电泳)。 IHP设计最常见的两个策略是构象开关和分裂方法。构象开关会改变其构象,并在杂交与目标时产生信号。拆分方法使用两个(或更多)链,它们独立或半独立地绑定目标并仅在所有组件关联时就产生输出信号。在这里,我们比较了脱氧核酶(DZ)杂交探针在每一个中的最佳条件下的脱氧核酶(DZ)杂交探针的性能。拆分设计由二进制DZ(BIDZ)探针表示;而催化分子信标(CMB)探针代表开关设计。发现Bidz比CMB的选择性明显更高,以识别单碱基替代。 CMB在55℃下运行时产生高背景信号。比兹比CMB的重要优势是更直接的设计和测定优化的简单性。

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