Department of Biology, Boston College, Chestnut Hill, MA 02467, USA.
Nucleic Acids Res. 2013 Jul;41(Web Server issue):W465-70. doi: 10.1093/nar/gkt280. Epub 2013 May 21.
Synthetic biology and nanotechnology are poised to make revolutionary contributions to the 21st century. In this article, we describe a new web server to support in silico RNA molecular design. Given an input target RNA secondary structure, together with optional constraints, such as requiring GC-content to lie within a certain range, requiring the number of strong (GC), weak (AU) and wobble (GU) base pairs to lie in a certain range, the RNAiFold web server determines one or more RNA sequences, whose minimum free-energy secondary structure is the target structure. RNAiFold provides access to two servers: RNA-CPdesign, which applies constraint programming, and RNA-LNSdesign, which applies the large neighborhood search heuristic; hence, it is suitable for larger input structures. Both servers can also solve the RNA inverse hybridization problem, i.e. given a representation of the desired hybridization structure, RNAiFold returns two sequences, whose minimum free-energy hybridization is the input target structure. The web server is publicly accessible at http://bioinformatics.bc.edu/clotelab/RNAiFold, which provides access to two specialized servers: RNA-CPdesign and RNA-LNSdesign. Source code for the underlying algorithms, implemented in COMET and supported on linux, can be downloaded at the server website.
合成生物学和纳米技术有望为 21 世纪带来革命性的贡献。本文介绍了一个新的网络服务器,用于支持计算机 RNA 分子设计。给定一个输入目标 RNA 二级结构,并带有可选的约束条件,例如要求 GC 含量在一定范围内,要求强 (GC)、弱 (AU) 和摆动 (GU) 碱基对的数量在一定范围内,RNAiFold 网络服务器将确定一个或多个 RNA 序列,其最小自由能二级结构是目标结构。RNAiFold 提供对两个服务器的访问:RNA-CPdesign,它应用约束编程,和 RNA-LNSdesign,它应用大邻域搜索启发式算法;因此,它适用于更大的输入结构。两个服务器都可以解决 RNA 反向杂交问题,即给定所需杂交结构的表示,RNAiFold 返回两个序列,其最小自由能杂交是输入目标结构。该网络服务器可在 http://bioinformatics.bc.edu/clotelab/RNAiFold 上公开访问,该服务器提供对两个专用服务器的访问:RNA-CPdesign 和 RNA-LNSdesign。基础算法的 COMET 实现源代码在 Linux 上支持,并可在服务器网站上下载。