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利用荧光测量 DNA 杂交的热力学细节。

Measuring thermodynamic details of DNA hybridization using fluorescence.

机构信息

Department of Molecular Genetics and Biophysics, Integrated DNA Technologies, Coralville, IA, USA.

出版信息

Biopolymers. 2011 Jul;95(7):472-86. doi: 10.1002/bip.21615. Epub 2011 Mar 7.

Abstract

Modern real-time PCR systems make it easy to monitor fluorescence while temperature is varied for hundreds of samples in parallel, permitting high-throughput studies. We employed such system to investigate melting transitions of ordered nucleic acid structures into disordered random coils. Fluorescent dye and quencher were attached to oligonucleotides in such a way that changes of fluorescence intensity with temperature indicated progression of denaturation. When fluorescence melting data were compared with traditional ultraviolet optical experiments, commonly used dye/quencher combinations, like fluorescein and tetramethylrhodamine, showed substantial discrepancies. We have therefore screened 22 commercially available fluorophores and quenchers for their ability to reliably report annealing and melting transitions. Dependence of fluorescence on temperature and pH was also investigated. The optimal performance was observed using Texas Red or ROX dyes with Iowa Black RQ or Black Hole quenchers. These labels did not alter two-state nature of duplex melting process and provided accurate melting temperatures, free energies, enthalpies, and entropies. We also suggest a new strategy for determination of DNA duplex thermodynamics where concentration of a dye-labeled strand is kept constant and its complementary strand modified with a quencher is added at increasing excess. These methodological improvements will help build predictive models of nucleic acid hybridization.

摘要

现代实时 PCR 系统使得在数百个样本平行进行温度变化的同时监测荧光变得容易,从而实现高通量研究。我们采用这样的系统来研究有序核酸结构熔解转变为无序随机卷曲。荧光染料和猝灭剂以这样的方式连接到寡核苷酸上,即荧光强度随温度的变化表明变性的进展。当荧光熔解数据与传统的紫外光实验进行比较时,常用的染料/猝灭剂组合,如荧光素和四甲基罗丹明,显示出明显的差异。因此,我们筛选了 22 种市售的荧光团和猝灭剂,以评估它们报告退火和熔解转变的能力。还研究了荧光对温度和 pH 的依赖性。使用 Texas Red 或 ROX 染料与 Iowa Black RQ 或 Black Hole 猝灭剂观察到最佳性能。这些标签不会改变双链熔解过程的两态性质,并提供准确的熔解温度、自由能、焓和熵。我们还提出了一种新的策略来确定 DNA 双链体热力学,其中保持染料标记的链的浓度恒定,并添加带有猝灭剂的互补链以增加过量。这些方法学的改进将有助于构建核酸杂交的预测模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2ad/3123748/44d4e7f931e7/bip0095-0472-f1.jpg

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