School of Life Science, Jiangsu Normal University, Xuzhou 221116, PR China.
Analyst. 2016 Oct 21;141(20):5829-5834. doi: 10.1039/c6an01145d. Epub 2016 Aug 10.
An ultrasensitive fluorescent platform for sequence-specific recognition of double-stranded DNA (dsDNA) based on the quenching of gold nanoparticles (AuNPs) to a fluorophore labeled DNA probe was developed. The target dsDNA could hybridize with the loop portion of the molecular beacon (MB) to form a triplex DNA structure and opened the "stem-loop" structure of the MB; such triplex DNA was used as an assistant probe (AP). Meanwhile, a fluorophore labeled DNA-AuNP probe that contained a specific enzyme cleavage site was introduced and its fluorescence signal was efficiently quenched due to the vicinity of the fluorophore to the AuNP surface. Such a DNA-AuNP probe could hybridize with the 5' stem portion of the MB in the AP to form duplex DNA strands that contained a specific enzyme cleavage site for the nicking enzyme assisted cleavage reaction, and resulted in the release of the fluorophore from the AuNP surface and the recovery of the fluorescence signal. Because the AP remains intact during such a cleavage process, it could be reused to hybridize with the next DNA-AuNP probe and trigger the nicking nuclease assisted signal amplification. Under optimal conditions, a low detection limit of 3.8 pM was obtained for dsDNA detection, and the assay has high sequence specificity for dsDNA detection.
开发了一种基于金纳米粒子(AuNPs)猝灭荧光标记 DNA 探针的、用于双链 DNA(dsDNA)序列特异性识别的超灵敏荧光平台。目标 dsDNA 可以与分子信标(MB)的环部分杂交,形成三链 DNA 结构并打开 MB 的“茎环”结构;这种三链 DNA 用作辅助探针(AP)。同时,引入了一种荧光标记的 DNA-AuNP 探针,其包含特定的酶切位点,由于荧光团靠近 AuNP 表面,其荧光信号被有效猝灭。这种 DNA-AuNP 探针可以与 AP 中的 MB 的 5'茎部分杂交,形成包含特定酶切位点的双链 DNA 链,用于 nicking 酶辅助切割反应,导致荧光团从 AuNP 表面释放,并恢复荧光信号。由于 AP 在这种切割过程中保持完整,它可以被重复用于与下一个 DNA-AuNP 探针杂交,并触发 nicking 核酸酶辅助的信号放大。在最佳条件下,获得了 dsDNA 检测的低检测限为 3.8 pM,并且该测定法对 dsDNA 检测具有高序列特异性。