Department of Biomedical Sciences, University of Padova, Padova 35131, Italy.
Nucleic Acids Res. 2022 Jul 5;50(W1):W651-W656. doi: 10.1093/nar/gkac365.
Residue interaction networks (RINs) are used to represent residue contacts in protein structures. Thanks to the advances in network theory, RINs have been proved effective as an alternative to coordinate data in the analysis of complex systems. The RING server calculates high quality and reliable non-covalent molecular interactions based on geometrical parameters. Here, we present the new RING 3.0 version extending the previous functionality in several ways. The underlying software library has been re-engineered to improve speed by an order of magnitude. RING now also supports the mmCIF format and provides typed interactions for the entire PDB chemical component dictionary, including nucleic acids. Moreover, RING now employs probabilistic graphs, where multiple conformations (e.g. NMR or molecular dynamics ensembles) are mapped as weighted edges, opening up new ways to analyze structural data. The web interface has been expanded to include a simultaneous view of the RIN alongside a structure viewer, with both synchronized and clickable. Contact evolution across models (or time) is displayed as a heatmap and can help in the discovery of correlating interaction patterns. The web server, together with an extensive help and tutorial, is available from URL: https://ring.biocomputingup.it/.
残基相互作用网络(RINs)用于表示蛋白质结构中的残基接触。由于网络理论的进步,RINs 已被证明是分析复杂系统时替代坐标数据的有效方法。RING 服务器基于几何参数计算高质量和可靠的非共价分子相互作用。在这里,我们介绍了新的 RING 3.0 版本,它在几个方面扩展了以前的功能。底层软件库经过重新设计,速度提高了一个数量级。RING 现在还支持 mmCIF 格式,并为整个 PDB 化学组件字典(包括核酸)提供了类型化的相互作用。此外,RING 现在采用概率图,其中多个构象(例如 NMR 或分子动力学集合)被映射为加权边,为分析结构数据开辟了新的途径。Web 界面已扩展,包括与结构查看器同时查看 RIN,两者均同步且可点击。跨模型(或时间)的接触演变显示为热图,并有助于发现相关的相互作用模式。该网络服务器以及广泛的帮助和教程可从以下网址获得:https://ring.biocomputingup.it/。