Meserve Daniel, Wang Zhaohui, Zhang Donna D, Wong Pak Kin
Department of Aerospace and Mechanical Engineering, University of Arizona, Tucson, Arizona, USA.
Analyst. 2008 Aug;133(8):1013-9. doi: 10.1039/b804853c. Epub 2008 Jun 6.
This paper reports the design and optimization of a double-stranded molecular probe for homogeneous detection of specific nucleotide sequences. The probes are labeled with either a fluorophore or a quencher such that the probe hybridization brings the two labels into close proximity, and this diminishes the fluorescence signal in the absence of a target. In the presence of a target, the fluorophore probe is thermodynamically driven to unzip from its hybridized form and bind with the target. An equilibrium analysis, which successfully describes all the major features of the assay without any fitting parameter, is performed to generalize the design of the probe. Several key parameters affecting the performance of the assay are examined. We show that the dynamic range and the signal-to-noise ratio of the assay can be optimized by the probe concentration, the quencher-to-fluorophore ratio, and the probe strand sequence. By proper design of the sequence, the probe discriminates single nucleotide mismatches in a single step without any separation step or measurement of melting profile.
本文报道了一种用于特异性核苷酸序列均相检测的双链分子探针的设计与优化。探针标记有荧光团或猝灭剂,使得探针杂交使两个标记物靠近,这在没有靶标的情况下会降低荧光信号。在有靶标的情况下,荧光团探针在热力学驱动下从其杂交形式解开并与靶标结合。进行了平衡分析,成功地描述了该检测方法的所有主要特征,无需任何拟合参数,以推广探针的设计。研究了几个影响检测性能的关键参数。我们表明,该检测方法的动态范围和信噪比可以通过探针浓度、猝灭剂与荧光团的比例以及探针链序列来优化。通过适当设计序列,探针无需任何分离步骤或熔解曲线测量,就能一步区分单核苷酸错配。