Dwight Zachary L, Palais Robert, Kent Jana, Wittwer Carl T
Department of Pathology, University of Utah, Salt Lake City, Utah.
Hum Mutat. 2014 Mar;35(3):278-82. doi: 10.1002/humu.22494. Epub 2014 Jan 3.
Melting curve prediction of PCR products is limited to perfectly complementary strands. Multiple domains are calculated by recursive nearest neighbor thermodynamics. However, the melting curve of an amplicon containing a heterozygous single-nucleotide variant (SNV) after PCR is the composite of four duplexes: two matched homoduplexes and two mismatched heteroduplexes. To better predict the shape of composite heterozygote melting curves, 52 experimental curves were compared with brute force in silico predictions varying two parameters simultaneously: the relative contribution of heteroduplex products and an ionic scaling factor for mismatched tetrads. Heteroduplex products contributed 25.7 ± 6.7% to the composite melting curve, varying from 23%-28% for different SNV classes. The effect of ions on mismatch tetrads scaled to 76%-96% of normal (depending on SNV class) and averaged 88 ± 16.4%. Based on uMelt (www.dna.utah.edu/umelt/umelt.html) with an expanded nearest neighbor thermodynamic set that includes mismatched base pairs, uMelt HETS calculates helicity as a function of temperature for homoduplex and heteroduplex products, as well as the composite curve expected from heterozygotes. It is an interactive Web tool for efficient genotyping design, heterozygote melting curve prediction, and quality control of melting curve experiments. The application was developed in Actionscript and can be found online at http://www.dna.utah.edu/hets/.
PCR产物的熔解曲线预测仅限于完全互补的链。多个结构域通过递归最近邻热力学计算得出。然而,PCR后含有杂合单核苷酸变异(SNV)的扩增子的熔解曲线是四种双链体的组合:两条匹配的同源双链体和两条错配的异源双链体。为了更好地预测复合杂合子熔解曲线的形状,将52条实验曲线与通过同时改变两个参数进行的计算机蛮力预测进行了比较:异源双链体产物的相对贡献和错配四联体的离子缩放因子。异源双链体产物对复合熔解曲线的贡献为25.7±6.7%,不同SNV类别在23%-28%之间变化。离子对错配四联体的影响缩放至正常情况的76%-96%(取决于SNV类别),平均为88±16.4%。基于uMelt(www.dna.utah.edu/umelt/umelt.html),其扩展的最近邻热力学集包括错配碱基对,uMelt HETS计算同源双链体和异源双链体产物的螺旋度随温度的变化,以及杂合子预期的复合曲线。它是一个交互式网络工具,用于高效的基因分型设计、杂合子熔解曲线预测和熔解曲线实验的质量控制。该应用程序用Actionscript开发,可在http://www.dna.utah.edu/hets/在线获取。