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Assembly mechanisms of RNA pseudoknots are determined by the stabilities of constituent secondary structures

机译:RNA假结的组装机制取决于组成二级结构的稳定性

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摘要

Understanding how RNA molecules navigate their rugged folding landscapes holds the key to describing their roles in a variety of cellular functions. To dissect RNA folding at the molecular level, we performed simulations of three pseudoknots (MMTV and SRV-1 from viral genomes and the hTR pseudoknot from human telomerase) using coarse-grained models. The melting temperatures from the specific heat profiles are in good agreement with the available experimental data for MMTV and hTR. The equilibrium free energy profiles, which predict the structural transitions that occur at each melting temperature, are used to propose that the relative stabilities of the isolated helices control their folding mechanisms. Kinetic simulations, which corroborate the inferences drawn from the free energy profiles, show that MMTV folds by a hierarchical mechanism with parallel paths, i.e., formation of one of the helices nucleates the assembly of the rest of the structure. The SRV-1 pseudoknot, which folds in a highly cooperative manner, assembles in a single step in which the preformed helices coalesce nearly simultaneously to form the tertiary structure. Folding occurs by multiple pathways in the hTR pseudoknot, the isolated structural elements of which have similar stabilities. In one of the paths, tertiary interactions are established before the formation of the secondary structures. Our work shows that there are significant sequence-dependent variations in the folding landscapes of RNA molecules with similar fold. We also establish that assembly mechanisms can be predicted using the stabilities of the isolated secondary structures.
机译:了解RNA分子如何在崎folding的折叠环境中导航,是描述其在多种细胞功能中的作用的关键。为了在分子水平上解析RNA折叠,我们使用粗粒模型对三个假结(来自病毒基因组的MMTV和SRV-1和来自人类端粒酶的hTR假结)进行了模拟。特定热曲线的熔融温度与MMTV和hTR的可用实验数据高度吻合。预测在每个熔化温度下发生的结构转变的平衡自由能曲线被用来建议孤立的螺旋的相对稳定性控制着它们的折叠机制。动力学模拟证实了从自由能剖面中得出的推论,表明MMTV通过具有平行路径的分层机制折叠,即,一个螺旋的形成使其余结构的组装成核。以高度协作方式折叠的SRV-1假结在一个步骤中组装在一起,在该步骤中,预成型的螺旋几乎同时聚结形成三级结构。折叠通过hTR假结中的多个途径发生,其分离的结构元件具有相似的稳定性。在其中一条路径中,三级相互作用是在二级结构形成之前建立的。我们的工作表明,在具有相似折叠的RNA分子折叠图中,存在明显的序列依赖性变异。我们还建立了可以使用孤立的二级结构的稳定性来预测组装机制。

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  • 作者单位

    Biophysics Program, Institute for Physical Science and Technology, and Department of Chemistry and Biochemistry, University of Maryland, College Park, MD 20742;

    Biophysics Program, Institute for Physical Science and Technology, and Department of Chemistry and Biochemistry, University of Maryland, College Park, MD 20742;

    Biophysics Program, Institute for Physical Science and Technology, and Department of Chemistry and Biochemistry, University of Maryland, College Park, MD 20742;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    kinetic partitioning mechanism; parallel pathways; ribosomal frameshifting; RNA folding;

    机译:动力学分配机理平行途径;核糖体移码;RNA折叠;
  • 入库时间 2022-08-18 00:42:06

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