Department of Computer Science, Ben Gurion University of the Negev, Beer Sheva 84105, Israel and Microsoft Research Israel, Herzliya 46733, Israel.
Bioinformatics. 2013 Nov 15;29(22):2938-40. doi: 10.1093/bioinformatics/btt494. Epub 2013 Aug 23.
In RNA design problems, it is plausible to assume that the user would be interested in preserving a particular RNA secondary structure motif, or fragment, for biological reasons. The preservation could be in structure or sequence, or both. Thus, the inverse RNA folding problem could benefit from considering fragment constraints. We have developed a new interactive Java application called RNA fragment-based inverse that allows users to insert an RNA secondary structure in dot-bracket notation. It then performs sequence design that conforms to the shape of the input secondary structure, the specified thermodynamic stability, the specified mutational robustness and the user-selected fragment after shape decomposition. In this shape-based design approach, specific RNA structural motifs with known biological functions are strictly enforced, while others can possess more flexibility in their structure in favor of preserving physical attributes and additional constraints.
RNAfbinv is freely available for download on the web at http://www.cs.bgu.ac.il/~RNAexinv/RNAfbinv. The site contains a help file with an explanation regarding the exact use.
在 RNA 设计问题中,假设用户出于生物学原因有兴趣保留特定的 RNA 二级结构模体或片段是合理的。这种保留可以是在结构或序列上,或者两者兼有。因此,反向 RNA 折叠问题可以受益于考虑片段约束。我们开发了一个名为 RNA fragment-based inverse 的新的交互式 Java 应用程序,允许用户以点括弧符号插入 RNA 二级结构。然后,它执行序列设计,以符合输入二级结构的形状、指定的热力学稳定性、指定的突变稳健性以及形状分解后用户选择的片段。在这种基于形状的设计方法中,具有已知生物学功能的特定 RNA 结构模体被严格执行,而其他模体在结构上可以具有更大的灵活性,以有利于保留物理属性和其他约束。
RNAfbinv 可在网上免费下载,网址是 http://www.cs.bgu.ac.il/~RNAexinv/RNAfbinv。该网站包含一个帮助文件,其中详细说明了确切的使用方法。