Department of Bioengineering, University of Pennsylvania, Philadelphia, PA 19104, USA.
Department of Biomedical Engineering, University of Minnesota, Minneapolis, MN 55455, USA.
J Mol Biol. 2014 Apr 17;426(8):1861-9. doi: 10.1016/j.jmb.2014.02.003. Epub 2014 Feb 9.
High-efficiency DNA ligation is vital for many molecular biology experiments, and it is best achieved using reactants with non-palindromic sticky ends to maximize specificity. However, optimizing such multi-parametric ligation reactions often involves extensive trial and error. We have developed a freely available Web-based ligation calculator, NP-Sticky (http://sarkarlab.umn.edu/npsticky/), that predicts product distribution for given reactant concentrations, thus enabling straightforward computational optimization of these reactions. Built-in schemes include two-piece and three-piece linear ligation, as well as insert-vector circular ligation. The only parameters needed for the underlying thermodynamic model are the free energies of ligation for each sticky end, which can be estimated by the calculator from the overhang sequences or provided by the user from direct experimental measurement. Free energies of sticky-end mismatches are also calculated for determining the extent of byproduct formation. This ligation calculator allows rapid identification of the optimal conditions for maximizing incorporation, efficiency, and/or accuracy, based on specific needs.
高效的 DNA 连接对于许多分子生物学实验至关重要,而使用非回文粘性末端的反应物来最大限度地提高特异性是最佳选择。然而,优化这种多参数连接反应通常需要大量的反复试验。我们开发了一个免费的基于网络的连接计算器,NP-Sticky(http://sarkarlab.umn.edu/npsticky/),它可以预测给定反应物浓度下的产物分布,从而可以直接通过计算优化这些反应。内置方案包括两部分和三部分线性连接,以及插入载体的环状连接。该热力学模型所需的唯一参数是每个粘性末端的连接自由能,该计算器可以根据悬垂序列或用户直接从实验测量提供的值来估算。粘性末端错配的自由能也被计算出来,以确定副产物形成的程度。该连接计算器可以根据特定需求,快速确定最佳条件,以最大限度地提高掺入、效率和/或准确性。