School of Computing, University of Utah, Salt Lake City, UT 84112, USA.
Bioinformatics. 2011 Apr 1;27(7):1019-20. doi: 10.1093/bioinformatics/btr065. Epub 2011 Feb 7.
uMelt(SM) is a flexible web-based tool for predicting DNA melting curves and denaturation profiles of PCR products. The user defines an amplicon sequence and chooses a set of thermodynamic and experimental parameters that include nearest neighbor stacking energies, loop entropy effects, cation (monovalent and Mg(++)) concentrations and a temperature range. Using an accelerated partition function algorithm along with chosen parameter values, uMelt interactively calculates and visualizes the mean helicity and the dissociation probability at each sequence position at temperatures within the temperature range. Predicted curves display the mean helicity as a function of temperature or as derivative plots. Predicted profiles display stability as a function of sequence position either as 50% helicity temperatures or as the helicity probability at specific temperatures. The loss of helicity associated with increasing temperature may be viewed dynamically to visualize domain formation within the molecule. Results from fluorescent high-resolution melting experiments match the number of predicted melting domains and their relative temperatures. However, the absolute melting temperatures vary with the selected thermodynamic parameters and current libraries do not account for the rapid melting rates and helix stabilizing dyes used in fluorescent melting experiments. uMelt provides a convenient platform for simulation and design of high-resolution melting assays.
The application was developed in Actionscript and can be found online at http://www.dna.utah.edu/umelt/umelt.html. Adobe Flash is required to run in all browsers.
uMelt(SM)是一个灵活的基于网络的工具,用于预测 PCR 产物的 DNA 融解曲线和变性曲线。用户定义一个扩增子序列,并选择一组热力学和实验参数,包括最近邻堆积能、环熵效应、阳离子(单价和 Mg(++))浓度和温度范围。uMelt 使用加速分区函数算法以及所选参数值,在温度范围内的每个序列位置上交互式地计算和可视化平均螺旋度和解离概率。预测曲线显示温度作为平均螺旋度的函数,或作为导数图。预测曲线以 50%螺旋度温度或特定温度下的螺旋度概率作为序列位置的稳定性函数显示。与温度升高相关的螺旋度丧失可以动态观察,以可视化分子内的结构域形成。荧光高分辨率融解实验的结果与预测的融解域的数量及其相对温度相匹配。然而,绝对融解温度随所选热力学参数而变化,并且当前库不考虑荧光融解实验中使用的快速融解速率和螺旋稳定染料。uMelt 为高分辨率融解分析的模拟和设计提供了一个方便的平台。
该应用程序是用 Actionscript 开发的,可以在 http://www.dna.utah.edu/umelt/umelt.html 在线找到。所有浏览器都需要 Adobe Flash 才能运行。