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猫头鹰传感器:一种用于分析单核苷酸变异的“脆弱”DNA 纳米结构。

The owl sensor: a 'fragile' DNA nanostructure for the analysis of single nucleotide variations.

机构信息

Chemistry Department, University of Central Florida, Orlando, FL 32816, USA.

出版信息

Nanoscale. 2018 May 31;10(21):10116-10122. doi: 10.1039/c8nr01107a.

Abstract

Analysis of single nucleotide variations (SNVs) in DNA and RNA sequences is instrumental in healthcare for the detection of genetic and infectious diseases and drug-resistant pathogens. Here we took advantage of the developments in DNA nanotechnology to design a hybridization sensor, named the 'owl sensor', which produces a fluorescence signal only when it complexes with fully complementary DNA or RNA analytes. The novelty of the owl sensor operation is that the selectivity of analyte recognition is, at least in part, determined by the structural rigidity and stability of the entire DNA nanostructure rather than exclusively by the stability of the analyte-probe duplex, as is the case for conventional hybridization probes. Using two DNA and two RNA analytes we demonstrated that owl sensors differentiate SNVs in a wide temperature range of 5 °C-32 °C, a performance unachievable by conventional hybridization probes including the molecular beacon probe. The owl sensor reliably detects cognate analytes even in the presence of 100 times excess of single base mismatched sequences. The approach, therefore, promises to add to the toolbox for the diagnosis of SNVs at ambient temperatures.

摘要

分析 DNA 和 RNA 序列中的单核苷酸变异(SNVs)对于医疗保健至关重要,可用于检测遗传和传染病以及耐药病原体。在这里,我们利用 DNA 纳米技术的发展设计了一种杂交传感器,称为“猫头鹰传感器”,只有当它与完全互补的 DNA 或 RNA 分析物结合时才会产生荧光信号。猫头鹰传感器操作的新颖之处在于,分析物识别的选择性至少部分取决于整个 DNA 纳米结构的结构刚性和稳定性,而不是像传统杂交探针那样仅取决于分析物-探针双链体的稳定性。我们使用两种 DNA 和两种 RNA 分析物证明,猫头鹰传感器可以在 5°C-32°C 的宽温度范围内区分 SNVs,这是传统杂交探针(包括分子信标探针)无法实现的性能。即使存在 100 倍过量的单碱基错配序列,猫头鹰传感器也能可靠地检测到同源分析物。因此,该方法有望成为在环境温度下诊断 SNVs 的工具包的补充。

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