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首页> 外文期刊>Nucleic Acids Research >High-resolution NMR structure of an RNA model system: the 14-mer cUUCGg tetraloop hairpin RNA
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High-resolution NMR structure of an RNA model system: the 14-mer cUUCGg tetraloop hairpin RNA

机译:RNA模型系统的高分辨率NMR结构:14-mer cUUCGg四环发夹RNA

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摘要

We present a high-resolution nuclear magnetic resonance (NMR) solution structure of a 14-mer RNA hairpin capped by cUUCGg tetraloop. This short and very stable RNA presents an important model system for the study of RNA structure and dynamics using NMR spectroscopy, molecular dynamics (MD) simulations and RNA force-field development. The extraordinary high precision of the structure (root mean square deviation of 0.3 A) could be achieved by measuring and incorporating all currently accessible NMR parameters, including distances derived from nuclear Overhauser effect (NOE) intensities, torsion-angle dependent homonuclear and heteronuclear scalar coupling constants, projection-angle-dependent cross-correlated relaxation rates and residual dipolar couplings. The structure calculations were performed with the program CNS using the ARIA setup and protocols. The structure quality was further improved by a final refinement in explicit water using OPLS force field parameters for non-bonded interactions and charges. In addition, the 2'-hydroxyl groups have been assigned and their conformation has been analyzed based on NOE contacts. The structure currently defines a benchmark for the precision and accuracy amenable to RNA structure determination by NMR spectroscopy. Here, we discuss the impact of various NMR restraints on structure quality and discuss in detail the dynamics of this system as previously determined.
机译:我们提出了一个高密核磁共振(NMR)解决方案结构的14聚体RNA发夹的cUUCGg四环。这种短而稳定的RNA为使用NMR光谱,分子动力学(MD)模拟和RNA力场发展研究RNA结构和动力学提供了重要的模型系统。通过测量和合并所有当前可访问的NMR参数,包括从核Overhauser效应(NOE)强度得出的距离,依赖于扭转角的同核和异核标量耦合,可以实现结构的非凡高精度(均方根偏差为0.3 A)常数,与投影角相关的互相关弛豫率和残余偶极耦合。使用ARIA设置和协议,通过CNS程序执行结构计算。通过使用OPLS力场参数进行非键合相互作用和电荷的显式水中最终精制,进一步提高了结构质量。另外,已经分配了2'-羟基基团,并且已经基于NOE接触对它们的构象进行了分析。该结构目前为通过NMR光谱确定RNA结构的精确度和准确性定义了基准。在这里,我们讨论了各种NMR约束对结构质量的影响,并详细讨论了先前确定的该系统的动力学。

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