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Topological constraints are major determinants of tRNA tertiary structure and dynamics and provide basis for tertiary folding cooperativity

机译:拓扑约束是tRNA三级结构和动力学的主要决定因素,并为三级折叠合作性提供基础

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Recent studies have shown that basic steric and connectivity constraints encoded at the secondary structure level are key determinants of 3D structure and dynamics in simple two-way RNA junctions. However, the role of these topological constraints in higher order RNA junctions remains poorly understood. Here, we use a specialized coarse-grained molecular dynamics model to directly probe the thermodynamic contributions of topological constraints in defining the 3D architecture and dynamics of transfer RNA (tRNA). Topological constraints alone restrict tRNA's allowed conformational space by over an order of magnitude and strongly discriminate against formation of non-native tertiary contacts, providing a sequence independent source of folding specificity. Topological constraints also give rise to long-range correlations between the relative orientation of tRNA's helices, which in turn provides a mechanism for encoding thermodynamic cooperativity between distinct tertiary interactions. These aspects of topological constraints make it such that only several tertiary interactions are needed to confine tRNA to its native global structure and specify functionally important 3D dynamics. We further show that topological constraints are conserved across tRNA's different naturally occurring secondary structures. Taken together, our results emphasize the central role of secondary-structure-encoded topological constraints in defining RNA 3D structure, dynamics and folding.
机译:最近的研究表明,在二级结构水平编码的基本空间和连接性约束是简单双向RNA连接中3D结构和动力学的关键决定因素。但是,这些拓扑约束在高阶RNA连接中的作用仍然知之甚少。在这里,我们使用专门的粗粒度分子动力学模型来直接探测拓扑约束在定义3D架构和转移RNA(tRNA)动力学方面的热力学贡献。单独的拓扑约束将tRNA允许的构象空间限制了一个数量级,并强烈区分了非天然三级接触的形成,从而提供了与序列无关的折叠特异性来源。拓扑约束还导致tRNA螺旋的相对方向之间存在远距离相关性,这反过来又提供了一种机制,可用于编码不同三级相互作用之间的热力学合作性。这些方面的拓扑约束使得仅需几个三次相互作用即可将tRNA限制在其天然的整体结构中,并指定功能上重要的3D动力学。我们进一步表明,拓扑约束在tRNA的不同天然存在的二级结构中是保守的。综上所述,我们的结果强调了二级结构编码拓扑约束在定义RNA 3D结构,动力学和折叠中的核心作用。

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