Department of Biochemistry and Molecular Biophysics, University of Arizona, Tucson, Arizona, USA.
Analyst. 2009 Aug;134(8):1675-81. doi: 10.1039/b906077d. Epub 2009 May 22.
This study reports the hybridization kinetics of double-stranded DNA probes for rapid molecular analysis. Molecular binding schemes based on double-stranded DNA probes have been developed for quantitative detection of various biomolecules, such as nucleic acids and DNA binding proteins recently. The thermodynamic competition between the target and the competitor in binding to the probe provides a highly specific mechanism for molecular detection. The kinetics of the double-stranded DNA probe, on the other hand, represent another key aspect toward its general applicability for a wide set of biomedical applications. Herein we report a systematic investigation of the kinetics of double-stranded DNA probes. The signal-to-background ratio and assay time of the double-stranded DNA probes are optimized at a high ionic strength (over 100 mM NaCl). Both the donor probe and the quencher probe sequences are shown to be important in the hybridization kinetics. A long sticky end of the probe is able to dramatically accelerate the kinetics of the assay. To provide a quantitative description of the kinetics, a two-stage binding model is developed to describe the major features of the kinetics of the assay. The sensitivity of the kinetic model and the dominant affinity constants are studied. The study provides a general guideline for the design of the probes for reducing the total assay time. With an appropriate design of the probes, the assay can be finished within minutes at room temperature.
本研究报告了双链 DNA 探针的杂交动力学,用于快速分子分析。最近,基于双链 DNA 探针的分子结合方案已经被开发出来,用于定量检测各种生物分子,如核酸和 DNA 结合蛋白。目标物和竞争物与探针结合的热力学竞争为分子检测提供了一种高度特异的机制。另一方面,双链 DNA 探针的动力学是其在广泛的生物医学应用中普遍适用性的另一个关键方面。本文系统研究了双链 DNA 探针的动力学。在高离子强度(超过 100mM NaCl)下优化了双链 DNA 探针的信号背景比和分析时间。供体探针和淬灭探针序列都对杂交动力学很重要。探针的长粘性末端能够显著加速分析的动力学。为了对动力学进行定量描述,开发了一个两阶段结合模型来描述分析动力学的主要特征。研究了动力学模型的灵敏度和主要亲和常数。该研究为减少总分析时间的探针设计提供了一般性指导。通过适当的探针设计,室温下可在几分钟内完成分析。