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Molecularly resolved label-free sensing of single nucleobase mismatches by interfacial LNA probes

机译:界面LNA探针对单个核碱基错配进行分子分辨的无标记感测

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摘要

So far, there has been no report on molecularly resolved discrimination of single nucleobase mismatches using surface-confined single stranded locked nucleic acid (ssLNA) probes. Herein, it is exemplified using a label-independent force-sensing approach that an optimal coverage of 12-mer ssLNA sensor probes formed onto gold(111) surface allows recognition of ssDNA targets with twice stronger force sensitivity than 12-mer ssDNA sensor probes. The force distributions are reproducible and the molecule-by-molecule force measurements are largely in agreement with ensemble on-surface melting temperature data. Importantly, the molecularly resolved detection is responsive to the presence of single nucleobase mismatches in target sequences. Since the labelling steps can be eliminated from protocol, and each force-based detection event occurs within milliseconds' time scale, the force-sensing assay is potentially capable of rapid detection. The LNA probe performance is indicative of versatility in terms of substrate choice - be it gold (for basic research and array-based applications) or silicon (for 'lab-on-a-chip' type devices). The nucleic acid microarray technologies could therefore be generally benefited by adopting the LNA films, in place of DNA. Since LNA is nuclease-resistant, unlike DNA, and the LNA-based assay is sensitive to single nucleobase mismatches, the possibilities for label-free in vitro rapid diagnostics based on the LNA probes may be explored.
机译:迄今为止,还没有关于使用表面限制的单链锁定核酸(ssLNA)探针对单个核碱基错配进行分子分辨识别的报道。在本文中,使用独立于标签的力感测方法来举例说明,形成在金(111)表面上的12-mer ssLNA传感器探针的最佳覆盖范围允许以比12-mer ssDNA传感器探针强两倍的力敏度识别ssDNA靶标。力分布是可重现的,分子间的力测量结果与整体表面熔化温度数据基本一致。重要的是,分子分辨的检测对靶序列中单个核碱基错配的存在有响应。由于可以从协议中省去标记步骤,并且每个基于力的检测事件都在毫秒级的时间范围内发生,因此力感测法具有快速检测的潜力。 LNA探针的性能表明了在基板选择方面的多功能性-无论是金(用于基础研究和基于阵列的应用)还是硅(用于“芯片实验室”类型的设备)。因此,通过采用LNA膜代替DNA,通常可以使核酸微阵列技术受益。由于LNA与DNA不同,因此LNA具有核酸酶抗性,并且基于LNA的测定法对单个核碱基错配敏感,因此,可以探索基于LNA探针进行无标记体外快速诊断的可能性。

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