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预测 RNA 发夹环三级结构接触。

Predicting loop-helix tertiary structural contacts in RNA pseudoknots.

机构信息

Department of Physics, University of Missouri, Columbia, Missouri 65211, USA.

出版信息

RNA. 2010 Mar;16(3):538-52. doi: 10.1261/rna.1800210. Epub 2010 Jan 25.

Abstract

Tertiary interactions between loops and helical stems play critical roles in the biological function of many RNA pseudoknots. However, quantitative predictions for RNA tertiary interactions remain elusive. Here we report a statistical mechanical model for the prediction of noncanonical loop-stem base-pairing interactions in RNA pseudoknots. Central to the model is the evaluation of the conformational entropy for the pseudoknotted folds with defined loop-stem tertiary structural contacts. We develop an RNA virtual bond-based conformational model (Vfold model), which permits a rigorous computation of the conformational entropy for a given fold that contains loop-stem tertiary contacts. With the entropy parameters predicted from the Vfold model and the energy parameters for the tertiary contacts as inserted parameters, we can then predict the RNA folding thermodynamics, from which we can extract the tertiary contact thermodynamic parameters from theory-experimental comparisons. These comparisons reveal a contact enthalpy (DeltaH) of -14 kcal/mol and a contact entropy (DeltaS) of -38 cal/mol/K for a protonated C(+)*(G-C) base triple at pH 7.0, and (DeltaH = -7 kcal/mol, DeltaS = -19 cal/mol/K) for an unprotonated base triple. Tests of the model for a series of pseudoknots show good theory-experiment agreement. Based on the extracted energy parameters for the tertiary structural contacts, the model enables predictions for the structure, stability, and folding pathways for RNA pseudoknots with known or postulated loop-stem tertiary contacts from the nucleotide sequence alone.

摘要

三级环与螺旋茎之间的相互作用在许多 RNA 假结的生物学功能中起着关键作用。然而,对 RNA 三级相互作用的定量预测仍然难以捉摸。在这里,我们报告了一个用于预测 RNA 假结中非规范环-茎碱基配对相互作用的统计力学模型。该模型的核心是评估具有定义的环-茎三级结构接触的假结折叠的构象熵。我们开发了一种基于 RNA 虚拟键的构象模型 (Vfold 模型),该模型允许对包含环-茎三级接触的给定折叠进行严格的构象熵计算。利用 Vfold 模型预测的熵参数和作为插入参数的三级接触能量参数,我们可以预测 RNA 折叠热力学,然后从理论-实验比较中提取三级接触热力学参数。这些比较揭示了在 pH 7.0 时质子化的 C(+)*(G-C)碱基三对的接触焓 (DeltaH) 为-14 kcal/mol,接触熵 (DeltaS) 为-38 cal/mol/K,而未质子化的碱基三对的接触焓 (DeltaH) 为-7 kcal/mol,接触熵 (DeltaS) 为-19 cal/mol/K)。对一系列假结的模型测试表明,理论与实验吻合良好。基于提取的三级结构接触能量参数,该模型能够仅从核苷酸序列预测具有已知或假设的环-茎三级接触的 RNA 假结的结构、稳定性和折叠途径。

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