Department of Chemistry. University of Central Florida, 4000 Central Florida Boulevard, Orlando, Fl 32816, USA.
Escuela Professional de Quimica, Facultad de Ciencias, Universidad Nacional Ingenieria, Av. Tupac 210, Lima, Peru.
Analyst. 2024 Jan 29;149(3):968-974. doi: 10.1039/d3an01707a.
DNA nanotechnology deals with the design of non-naturally occurring DNA nanostructures that can be used in biotechnology, medicine, and diagnostics. In this study, we introduced a nucleic acid five-way junction (5WJ) structure for direct electrochemical analysis of full-length biological RNAs. To the best of our knowledge, this is the first report on the interrogation of such long nucleic acid sequences by hybridization probes attached to a solid support. A hairpin-shaped electrode-bound oligonucleotide hybridizes with three adaptor strands, one of which is labeled with methylene blue (MB). The four strands are combined into a 5WJ structure only in the presence of specific DNA or RNA analytes. Upon interrogation of a full-size 16S rRNA in the total RNA sample, the electrode-bound MB-labeled 5WJ association produces a higher signal-to-noise ratio than electrochemical nucleic acid biosensors of alternative design. This advantage was attributed to the favorable geometry on the 5WJ nanostructure formed on the electrode's surface. The 5WJ biosensor is a cost-efficient alternative to the traditional electrochemical biosensors for the analysis of nucleic acids due to the universal nature of both the electrode-bound and MB-labeled DNA components.
DNA 纳米技术涉及非天然存在的 DNA 纳米结构的设计,这些结构可用于生物技术、医学和诊断。在这项研究中,我们引入了一种核酸五向连接(5WJ)结构,用于直接电化学分析全长生物 RNA。据我们所知,这是首次报道通过附着在固体支撑物上的杂交探针来检测如此长的核酸序列。发夹状的电极结合寡核苷酸与三个适配子链杂交,其中一个链标记有亚甲蓝(MB)。只有在存在特定的 DNA 或 RNA 分析物的情况下,这四个链才能组合成 5WJ 结构。在对总 RNA 样品中的全长 16S rRNA 进行检测时,与其他设计的电化学核酸生物传感器相比,电极结合的 MB 标记的 5WJ 缔合产生了更高的信噪比。这种优势归因于在电极表面形成的 5WJ 纳米结构上的有利几何形状。由于电极结合和 MB 标记的 DNA 组件的通用性,5WJ 生物传感器是传统电化学生物传感器分析核酸的一种具有成本效益的替代方案。