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iFoldRNA: three-dimensional RNA structure prediction and folding

机译:iFoldRNA:三维RNA结构预测和折叠

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Three-dimensional RNA structure prediction and folding is of significant interest in the biological research community. Here, we present iFoldRNA, a novel web-based methodology for RNA structure prediction with near atomic resolution accuracy and analysis of RNA folding thermodynamics. iFoldRNA rapidly explores RNA conformations using discrete molecular dynamics simulations of input RNA sequences. Starting from simplified linear-chain conformations, RNA molecules (< 50 nt) fold to native-like structures within half an hour of simulation, facilitating rapid RNA structure prediction. All-atom reconstruction of energetically stable conformations generates iFoldRNA predicted RNA structures. The predicted RNA structures are within 25 root mean squre deviations (RMSDs) from corresponding experimentally derived structures. RNA folding parameters including specific heat, contact maps, simulation trajectories, gyration radii, RMSDs from native state, fraction of native-like contacts are accessible from iFoldRNA. We expect iFoldRNA will serve as a useful resource for RNA structure prediction and folding thermodynamic analyses.
机译:三维RNA结构的预测和折叠在生物学研究界引起了极大的兴趣。在这里,我们介绍iFoldRNA,这是一种新颖的基于网络的方法,用于以接近原子分辨率的精度预测RNA结构并分析RNA折叠热力学。 iFoldRNA使用输入RNA序列的离散分子动力学模拟快速探索RNA构象。从简化的线性链构象开始,RNA分子(<50 nt)在模拟的半小时内就会折叠成天然结构,从而有助于快速预测RNA结构。能量稳定构象的全原子重建产生iFoldRNA预测的RNA结构。预测的RNA结构与相应的实验衍生结构相距25个均方根偏差(RMSD)。可从iFoldRNA访问RNA折叠参数,包括比热,接触图,模拟轨迹,回转半径,RMSD(原始状态的RMSD)以及类似天然的接触部分。我们希望iFoldRNA将成为RNA结构预测和折叠热力学分析的有用资源。

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