Institute of Computing Science and European Centre for Bioinformatics and Genomics, Poznan University of Technology, Piotrowo 2, 60-965 Poznan, Poland.
Institute of Bioorganic Chemistry, Polish Academy of Sciences, Noskowskiego 12/14, 61-704 Poznan, Poland.
Nucleic Acids Res. 2022 Jul 5;50(W1):W663-W669. doi: 10.1093/nar/gkac218.
Advances in experimental and computational techniques enable the exploration of large and complex RNA 3D structures. These, in turn, reveal previously unstudied properties and motifs not characteristic for small molecules with simple architectures. Examples include entanglements of structural elements in RNA molecules and knot-like folds discovered, among others, in the genomes of RNA viruses. Recently, we presented the first classification of entanglements, determined by their topology and the type of entangled structural elements. Here, we introduce RNAspider - a web server to automatically identify, classify, and visualize primary and higher-order entanglements in RNA tertiary structures. The program applies to evaluate RNA 3D models obtained experimentally or by computational prediction. It supports the analysis of uncommon topologies in the pseudoknotted RNA structures. RNAspider is implemented as a publicly available tool with a user-friendly interface and can be freely accessed at https://rnaspider.cs.put.poznan.pl/.
实验和计算技术的进步使人们能够探索大型和复杂的 RNA 三维结构。这些结构反过来又揭示了以前未研究过的性质和模式,这些性质和模式与具有简单结构的小分子没有特征。例如,在 RNA 分子的结构元件的缠绕,以及在 RNA 病毒基因组中发现的类似结的折叠。最近,我们提出了第一个通过拓扑和缠绕结构元件的类型来确定的缠绕的分类。在这里,我们引入了 RNAspider——一个网页服务器,可以自动识别、分类和可视化 RNA 三级结构中的主要和高级缠绕。该程序适用于评估通过实验或计算预测获得的 RNA 3D 模型。它支持分析伪结 RNA 结构中罕见的拓扑结构。RNAspider 作为一个具有用户友好界面的公共可用工具实现,并可在 https://rnaspider.cs.put.poznan.pl/ 免费访问。