Wick Lukas M, Rouillard Jean Marie, Whittam Thomas S, Gulari Erdogan, Tiedje James M, Hashsham Syed A
National Food Safety and Toxicology Center, Michigan State University, East Lansing, MI, USA.
Nucleic Acids Res. 2006 Feb 13;34(3):e26. doi: 10.1093/nar/gnj024.
Nucleic acid hybridization serves as backbone for many high-throughput systems for detection, expression analysis, comparative genomics and re-sequencing. Specificity of hybridization between probes and intended targets is always critical. Approaches to ensure and evaluate specificity include use of mismatch probes, obtaining dissociation curves rather than single temperature hybridizations, and comparative hybridizations. In this study, we quantify effects of mismatch type and position on intensity of hybridization signals and provide a new approach based on dissociation rate constants to evaluate specificity of hybridized signals in complex target mixtures. Using an extensive set of 18mer oligonucleotide probes on an in situ synthesized biochip platform, we demonstrate that mismatches in the center of the probe are more discriminating than mismatches toward the extremities of the probe and mismatches toward the attached end are less discriminating than those toward the loose end. The observed destabilizing effect of a mismatch type agreed in general with predictions using the nearest neighbor model. Use of a new parameter, specific dissociation temperature (T(d-w), temperature of maximum specific dissociation rate constant), obtained from probe-target duplex dissociation profiles considerably improved the evaluation of specificity. These results have broad implications for hybridization data obtained from complex mixtures of nucleic acids.
核酸杂交是许多用于检测、表达分析、比较基因组学和重测序的高通量系统的核心。探针与预期靶标之间杂交的特异性始终至关重要。确保和评估特异性的方法包括使用错配探针、获取解离曲线而非单一温度杂交以及比较杂交。在本研究中,我们量化了错配类型和位置对杂交信号强度的影响,并提供了一种基于解离速率常数的新方法来评估复杂靶标混合物中杂交信号的特异性。在原位合成生物芯片平台上使用大量18聚体寡核苷酸探针,我们证明探针中心的错配比探针末端的错配更具区分性,且与连接端的错配比与游离端的错配区分性更小。观察到的错配类型的去稳定作用总体上与使用最近邻模型的预测一致。使用从探针 - 靶标双链解离曲线获得的新参数——特异性解离温度(T(d-w),最大特异性解离速率常数对应的温度),显著改善了特异性评估。这些结果对从核酸复杂混合物中获得的杂交数据具有广泛影响。